Gas, solar, and tech companies all want this bill. Will Congress pass it? – grist.org

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Senators are looking toward the Capitol doors as they prepare to head home and campaign for the midterms. Meanwhile, a group of them has been scrambling to reach a deal that some analysts believe is critical to meet the country’s energy needs. 
A bipartisan group of senators says it has come closer than ever before to reaching a long-desired permitting reform bill, which would make it easier to build new energy projects. Many consider the issue urgent as electricity demand surges across the country, partly because of the tech industry’s massive build-out of data centers. 

“America’s energy demand is surging due to advanced technology and manufacturing, but our outdated federal permitting process remains a massive barrier to building the infrastructure we need to stay competitive,” said Marsha Blackburn, a Republican senator from Tennessee, in an August press release.
But the bill’s reception among the public is uncertain due in part to a PR problem: Data centers are a “toxic” subject for voters, according to Alex Lundry, president of D.C.-based public opinion research firm Redbud Consulting. In recent polls, Democrats, Republicans, and independents strongly oppose data centers being built in their communities. 
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“If you phrase permitting reform as serving data centers, the polling results get way worse,” Lundry said. This is putting legislators, many of whom are up for reelection in November, in a bind: They want to make it easier to build more electrical infrastructure, which facilitates the data center boom, but don’t want voters to think it’s about data centers. 
The potential bill represents one of the few points of agreement for Republicans and Democrats in Washington, which is that energy permitting is broken.
Complicated studies on project impacts, lengthy reviews by different federal agencies, and legal battles from environmental groups and project opponents constantly delay all kinds of energy projects, industry leaders say.
Lawmakers have tried for years to reform the permitting process, most recently with the failed Energy Permitting Reform Act of 2024, which made it out of committee but never got a full Senate vote. Now, lawmakers from both parties say growing power demand has given the new attempt more momentum than any previous effort. The highest-ranking members of both parties in the Senate’s two energy-related committees are negotiating the bill’s language.
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President Donald Trump has signaled he would stop blocking renewable energy projects in order to entice Democrats toward a deal on the bill. Democrats have worried that even if they make it easier to build renewables in law, the White House could continue making it impossible in practice, with some Democrats indicating that these worries have stalled the bill’s progress. 
“I appreciate very much what the Trump administration has done to move in this direction, but in order to brief colleagues on what this really means, we need just a bit more clarity on exactly what return to regular order for wind and solar projects looks like,” Senator Sheldon Whitehouse, the top Democrat on the Senate Environment and Public Works Committee, told reporters this week. “So that’s still to be done, but that I think can happen in fairly short order.” 
Politico reported that the senators intend to finish hammering out the bill after the midterm elections, when it could compete with other legislation for attention, especially if Republicans lose control of Congress.
The draft bill’s contents are not public, but stakeholders expect it would make building energy projects easier by reducing the potential environmental and social effects of a project that government agencies must consider when issuing a permit; loosening Clean Water Act and Endangered Species Act requirements that slow down transmission line and pipeline permits; and making successfully obtained permits less vulnerable to lawsuits after they’re issued. 
Such a bill would ease the path to construction for renewable and fossil fuel projects alike — especially solar and natural gas, the power sources with the most momentum. Solar power and batteries account for almost 80 percent of the new power generation expected to be built in the United States in 2026, while natural gas was the largest single source of electricity used in 2025, with projections for continued growth. Natural gas in particular has become a go-to power source for data centers, which are projected to use a lot of it in the next decade. 
Unsurprisingly, both the solar and the gas industries support permitting reform. Tim Pawlenty, president of the Solar Energy Industry Association, has said the country would be “constipated” without it.
A colossal surge in electricity demand has long been expected in the United States, even before Big Tech started its data center build-out. Americans are “electrifying” their lives with heat pumps, electrical appliances, and electric vehicles, all important for reducing emissions. The country has also squeezed most of the benefits out of energy-saving lightbulbs and other fixtures, which had kept electricity use flat by reducing power needs as they spread during the 2010s. Added to all that, the United States aims to draw more manufacturing to its shores, which requires electricity if successful. But data centers are accelerating and intensifying the power-demand spike, and straining grids and supply chains. Data center developers like Google have helped lobby for permitting reform.
Environmental groups like the Natural Resources Defense Council want to speed up renewable energy development without weakening bedrock environmental laws; NRDC executives have called for land-use plans that make it easier to site renewable energy projects while protecting local ecosystems. But Democratic legislators are considering compromising on environmental protections to support renewable energy and keep grids reliable. Meanwhile, Republicans, many of whom deny the severity of climate change, want to power new economic growth.
There is another reason legislators in both parties are keen to build, build, build: Many are anxious that hobbling data centers, and the AI systems they enable, will allow China to become economically and militarily stronger than the United States. Trump administration officials, legislators from both parties, and energy industry leaders speaking at the Clean Energy Week conference in Washington, D.C., in mid-September called on America to be “competitive” and “dominant” through energy build-out. 
“While Communist China cuts corners to get ahead, a mountain of red tape has America fighting the energy war with one hand tied behind our backs,” said Senator Rick Scott, a Republican, in a statement last month.
But Lundry, the pollster, warned that these sentiments are losing popularity among voters. “Being competitive with China used to be an effective message, but it isn’t anymore,” Lundry said. 
Instead, Lundry recommended framing permitting reform as a boost for clean power. Lundry’s firm, Redbud, found in a September poll that 71 percent of respondents agreed that “making renewable energy a bigger part of the country’s energy supply is the right move.” Bringing down energy costs is also likely a big win with voters, the survey showed, with 70 percent of respondents saying their energy bills have gone up in the last year.
Action in the other house of Congress makes it clear that lawmakers are well aware of the public’s antipathy toward data centers and fear about rising energy costs. A few days before senators said they were nearly finished with their permitting draft, the House of Representatives passed a bill calling on states (but not requiring them) to force data centers to pay for their own electricity generation. The bill is meant to help shield regular people from rising bills as data centers gobble up power. That bill is now stalled in the Senate, where some Democrats say it’s too soft-handed.

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'Giving back to my country': Dubai teen uses birthday savings to build solar plant tackling arsenic in UP village – The Times of India

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EFL eyes farming under solar panels – fbcnews.com.fj

[File Photo]

The use of land for solar farms is coming under scrutiny, with calls for it to serve more than one purpose.
Energy Fiji Limited is exploring options that could allow crops or livestock to be kept beneath raised solar panels.
EFL CEO Fatiaki Gibson said the company was already exploring agro-PV technology in Ovalau. The solar panels are raised higher from the ground, allowing farming or livestock activities to continue underneath.
“The designs we intend to put into the solar farms basically it’ll be in the panel area because it covers such a vast area.”
The issue was raised by Committee Member Premila Kumar, who says EFL needs to consider multiple uses for land rather than using it only for energy generation.
Gibson explained that agro-PV is more expensive because of the raised foundations and structure. He says the added cost could eventually be reflected in the feed-in tariff paid to EFL.
Most independent power producers, according to Gibson are currently proposing conventional ground-mounted solar farms. He says EFL will consider agro-PV as another option.
The discussion also covered the risk of cyclones damaging solar farms and battery storage facilities.
Gibson states that solar farm designs will be built to withstand Category Five cyclones. He says battery systems will be housed in container-type structures, while the panels will be designed to withstand harsh weather conditions.
He adds that EFL is also requiring Tier One manufacturers and international standards for equipment used in its solar developments.
The team appeared before the Standing Committee on Economic Affairs to present its 2025 Annual Report.

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No Last-Minute Solar Import Rush: Commerce Moves to Block Polysilicon Stockpiling (via Passle) – ourtake.bakerbotts.com

Companies considering increased imports of polysilicon and certain solar-related products before new Section 232 tariffs and minimum import prices take effect on December 4 should carefully evaluate a recently issued Department of Commerce rule addressing potential stockpiling.
On September 22, the Department of Commerce’s Bureau of Industry and Security issued a temporary final rule implementing President Trump’s directive in Proclamation 11052.  The rule establishes a framework through which Commerce and U.S. Customs and Border Protection (CBP) may restrict certain imports that Commerce determines constitute stockpiling in advance of the December 4 implementation date.
The rule applies to both existing and newly established importers of record (IORs).  It also outlines compliance considerations for customs brokers involved in entries of covered merchandise.
Review of Increased Imports by Existing IORs
Commerce is monitoring imports of covered polysilicon and solar-related products and may determine that an existing IOR is engaged in stockpiling if its import volumes significantly exceed historical levels.
In evaluating an importer’s activity, Commerce may consider:
If Commerce determines that an IOR has engaged in stockpiling, it may direct CBP to prohibit that importer from making additional entries of covered products before December 4, unless Commerce grants a waiver.
CBP has clarified that an importer subject to such a restriction may continue to move covered merchandise into a bonded warehouse.  The merchandise, however, may not be entered for consumption before December 4.
Weekly Limits for Newly Established IORs
The rule also establishes weekly import limits for IORs registered with CBP on or after August 6.
Unless Commerce grants prior approval, these IORs are subject to the following limits:
A newly established IOR that exceeds the applicable weekly limit without Commerce approval may be prohibited from making further entries of covered merchandise before December 4.
Commerce states that these limits are based on historical import patterns.  According to Commerce, the limits are intended to allow legitimate new market participants to continue importing while reducing the possibility that newly established entities will be used to circumvent the stockpiling restrictions.
Compliance Considerations for Customs Brokers
The rule also addresses the potential use of multiple IORs, affiliated entities, or related parties to avoid applicable import restrictions.
Commerce and CBP have indicated that customs brokers may face enforcement consequences if they facilitate circumvention arrangements.  Brokers handling entries of covered merchandise therefore may need to consider:
CBP has indicated that brokers involved in circumvention schemes may be subject to enforcement measures, including monetary penalties and the potential suspension or revocation of broker licenses.
The rule therefore may require brokers to conduct additional diligence concerning ownership, affiliation, and end-user relationships when processing entries involving covered products.
Waiver Process
The rule establishes a waiver process for both existing and newly established IORs.
Commerce states that it intends to respond to waiver requests within 14 days.  The waiver process includes specified submission, certification, and information requirements.  Companies that anticipate seeking a waiver should review those requirements and allow sufficient time to prepare the necessary supporting information.
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Brazil's Distributed Generation Growth Outpaces Regulatory Framework – IndexBox

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Brazil’s distributed generation assets have the potential to play a larger role in balancing electricity supply and demand, but the regulatory environment has not kept pace with deployment, according to pv magazine. As of early 2026, approximately 67 GW of cumulative installed solar capacity was connected to Brazil’s grids, with roughly 47 GW of that total consisting of distributed generation capacity connected to distribution networks.
The scale of distributed generation on Brazilian distribution networks highlights both the opportunity and the challenge facing the country’s power system. While these assets could contribute more to smoothing supply and demand curves, the rules governing their operation and coordination have yet to catch up with the pace at which they have been deployed.
The source material does not specify the particular regulatory changes under consideration or the mechanisms by which distributed generation might be better integrated into system operations. It also does not detail the specific impacts of adding the full volume of distributed generation capacity to the grid.
The figures indicate that distributed generation represents the majority of Brazil’s installed solar capacity, underscoring the importance of distribution-connected resources in the country’s overall solar picture. The source does not provide a breakdown of how that capacity is distributed across regions or among different types of installations.
No timeline is given for when regulatory adjustments might be expected or how quickly coordination improvements could be implemented. The source likewise does not identify which authorities or market participants would be responsible for closing the gap between deployment and regulation.
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Photovoltaic solar power – Hydro-Québec

Hydro‑Québec is focusing on photovoltaic solar power development to strengthen Québec’s energy self‑sufficiency based on an evolving, rigorous and affordable approach.
As an energy source that is complementary to hydropower and wind power, solar power plays a role in the energy transition by helping us diversify the solutions we adopt to ensure Québec’s energy self‑sufficiency.
Although more than 99% of the electricity Hydro‑Québec generates is from renewable sources and therefore advantageous with regard to the resulting carbon footprint, solar power remains an interesting option because it helps reduce our reliance on fossil fuels.
It is nevertheless important to note that the carbon footprint associated with solar panels depends largely on where the components are manufactured and which energy source is used in the manufacturing process.
Solar power is expected to experience strong growth globally by 2050 and represent up to 40% of the world’s renewable energy generation, surpassing both hydropower and wind power.
This growth is due, in particular, to technological advances of new materials that make solar panels increasingly efficient while lowering manufacturing costs. As a result, in 2024, countries such as Germany, Japan and Denmark used the sun to generate between 10% and 12% of their electricity. In the state of Massachusetts, solar power generation was as high as 16%.
The cost of implementing solar power in Québec is comparable to that of countries such as Germany and France and remains competitive when compared with the implementation costs of renewable natural gas facilities.
Given the increasingly rapid pace of solar power integration, Hydro‑Québec must stay abreast of the changes in order to adapt and remain at the forefront of the energy transition.
Solar power has many advantages and can play a more important role in the energy transition alongside Québec’s existing energy sources.
Solar power complements hydropower, with our hydroelectric reservoirs storing energy while the sun’s variable energy outputs meets demand.
As part of procurement projects, solar panels are easy to install near consumption areas within relatively short timeframes (18 months to 5 years). For solar self‑generation projects, timelines may vary from a few weeks to a few months, depending on the installed capacity.
Solar power helps reduce fuel consumption related to powering remote off‑grid systems.
Generation costs have decreased worldwide in the past 15 years, making solar power increasingly affordable.
When it comes to equivalent sun hours, Québec’s solar potential is favourable to the development of solar power given that the amount of sunlight is greater than in certain countries, such as Germany, that have already integrated solar power.
What’s more, cold temperatures and the reflective quality of snow improve the performance of solar panels.
Reference: https://www.worlddata.info/climate-comparison.php
Hydro‑Québec has commissioned two solar farms located in La Prairie and in Varennes, which generate close to 16 GWh of solar power per year. This is equivalent to the electricity used by 1,000 households. These solar farms have shown that solar power is well suited to Québec’s climate and the transmission system.
The knowledge gained from this experience will enable us to move forward with our plan to develop larger‑scale solar farm projects.
By integrating solar panels and battery storage systems, the town of Lac‑Mégantic can meet the energy needs of its population.
With this approach, Hydro‑Québec is able to track technological advances, optimize costs and gain a better understanding of the solar power yield while maximizing economic spinoffs for Québec and host communities, including First Nations and Inuit communities.
This step will help us develop Québec’s new solar ecosystem in the short term while gathering additional market data with a view to more extensive development in the future.
For solar farms with capacities greater than 25 MW, Hydro‑Québec aims to develop projects in collaboration with industry developers, host communities and First Nations and Inuit communities.
Through a new grant, Hydro‑Québec wants to encourage residential and business customers to have solar panels installed on their buildings.
Learn more about the gradual rollout of Québec’s solar power sector
Solar power strategy – in French only [PDF 139 kB] kilobyte
Each project is carefully developed to ensure that the facilities blend into their host environments as much as possible. Throughout the process, we organize public consultations and apply a rigorous environmental approach designed to help us understand concerns, protect the environment and adapt the projects to local realities. For more information about our entire process, including the step‑by‑step progress of individual projects, click on the link below.
Key steps of a construction project
© Hydro-Québec, 1996– 2026. All rights reserved. * Website in French only | Who can consult this page 

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Ohio's largest solar project gets state approval — again – Ideastream Public Media

The state board that regulates energy infrastructure has given final approval to a Madison County solar project that is set to be Ohio’s largest to date.
Oak Run Solar will be built on about 6,000 acres north of London, near Plumwood. Project developers say the 800 megawatt plant could power up to 170,000 Ohio households. Sheep are expected to graze among solar panels on a large swath of the land.
The Ohio Power Siting Board initially approved Oak Run in March 2024, about two years after receiving the project application.
Madison County Board of Commissioners and the boards of trustees for Deercreek, Monroe and Somerford townships filed an appeal of that approval. They argued that the siting board accepted an incomplete application that also didn’t do enough to address its potential harm to wildlife and soil or the risk of fires from battery storage.
The Ohio Supreme Court heard oral arguments in October 2025 before ruling earlier this year that the state board must better address the visual impacts of the site.
The Ohio Power Siting Board decided on Sept. 17 that the developer fulfilled the court’s requirements.

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Queensland’s Bungaban wind-solar-BESS project gets enviro approval – renewablesnow.com

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Scientists generate solar power 10 metres beneath the sea – Euronews.com

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Ten metres beneath the South China Sea, scientists have found an unlikely place to generate power from the sun.
Last week, researchers announced that they had successfully tested solar panels at underwater depths previously considered impractical for the technology.
Designed to capture the wavelengths of sunlight that can pass through seawater, the panels could eventually keep underwater equipment running for longer without relying just on batteries, they argue.
During a two-hour trial near the Weizhou Islands, off the southern coast of mainland China, the panels generated power from sunlight at a depth of 10 metres. Lab tests suggest that they could operate continuously for years, too.
The research, published in the science journal Joule, takes underwater solar well beyond previous studies, which have focused on depths of just two metres or less.
One of the biggest obstacles to generating solar power underwater is that sunlight fades below the surface – and fast.
By a depth of 10 metres, much of the sun’s energy has already been absorbed or scattered by the water. But some types of light can reach deeper than others.
According to the researchers, enough blue and green light reaches these depths to generate electricity, so the team developed solar cells designed to make the most of it.
They used what are known as perovskites, an alternative to the silicon found in most solar panels, which can be adjusted to absorb different wavelengths of light.
In laboratory tests recreating conditions 10 metres underwater, the cells turned around 35 per cent of the sunlight that reached them into electricity.
The researchers then put bigger versions to the test in the South China Sea. At two metres deep, their 115 square centimetres of solar panels generated 1,416 milliwatt-hours over two hours, or about half the capacity of a rechargeable AA battery.
At 10 metres, they generated 324 milliwatt-hours over two hours – a small amount but still far beyond what the researchers expected.
Their panels also showed almost no loss in performance after 1,160 hours under simulated underwater conditions. Based on their tests, the researchers estimate they could operate continuously at 10 metres below the sea for around five and a half years.
“This work presents the first functional validation of submerged solar cells practically operating at a water depth of up to about 10 meters, greatly broadening their application scope,” says study author Wen-Hua Zhang, from China’s Yunnan University and Southwest United Graduate School in Kunming.
Once the sole domain of rooftops and wide open spaces, solar power continues to appear in places where electricity and fuel can be difficult to access.
Earlier this year, Dutch researchers unveiled the world’s first solar-powered ambulancein rural Kenya, designed to bring healthcare and medical equipment to hard-to-reach communities that lack reliable access to electricity or fuel.
In Norway’s Svalbard archipelago, solar has also begun to help power a remote former radio station, a site accessible only by boat or helicopter that previously relied on diesel-fuelled generators.
Other projects have found space for solar in existing infrastructure. In Switzerland, solar panels installed between railway tracks are generating electricity without taking up more land. The panels can also be removed for track maintenance, allowing railways to double as solar farms without disrupting services.
Underwater solar power could solve a different problem.
Ocean sensors, cameras and communication equipment can operate far from power supplies, but they must eventually be retrieved when their batteries run out.
The researchers believe the technology they studied could provide a lasting source of power for this kind of equipment.
First, however, they need to find out how well their solar panels work deeper undersea. They say their next step is to do just that and establish how far beneath the waves solar power can go.


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Solar panels work even 10 meters under the sea, scientists test new technology – cna.al

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Solar panels work even 10 meters under the sea, scientists test new technology
Scientists have managed to produce electricity from solar panels at a depth of 10 meters under the sea, opening up new possibilities for powering underwater devices.
The researchers tested the technology in the South China Sea, near the Weizhou Islands, where the panels managed to generate energy from sunlight even at depths where light is significantly weaker.
The secret lies in the use of perovskite, an alternative material to silicon, which can be tailored to absorb certain wavelengths of light. Although water absorbs and scatters most of the solar radiation, blue and green light can penetrate to greater depths.
In laboratory tests, the solar cells managed to convert about 35 percent of the light reaching them into electricity under simulated conditions 10 meters underwater.
Sea tests also showed measurable energy production. At a depth of two meters, a 115 square centimeter panel produced 1,416 milliwatt-hours over two hours. At 10 meters, the output was 324 milliwatt-hours in the same time.
The researchers also tested the durability of the cells in simulated underwater conditions. After 1,160 hours of testing, the panels showed almost no loss of performance. Based on these results, the team estimates that the technology could operate continuously for about five and a half years at a depth of 10 meters.
However, this figure is an estimate based on laboratory tests, and not the result of a real trial that lasted five and a half years at sea.
According to researchers, one of the most promising uses of this technology is to power ocean sensors, cameras, and communication devices that are located far from traditional power sources.
Currently, many of these devices rely on batteries and must be periodically pulled out of the water for maintenance or replacement. Underwater solar panels could help extend their operating time.
The researchers plan to test the technology at different depths in the next stages and determine how far below the sea surface solar energy can be effectively used.
If the results are confirmed in long-term tests in real marine conditions, this technology could create a new way to supply power to devices operating underwater./ CNA
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This Ohio solar farm is now home to 3 million honey bees across more than 50 hives, turning an energy sit – The Times of India

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Opportunities for international EPC firms in the Italian photovoltaic sector – RÖDL

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This development creates significant business opportunities for international EPC contractors with experience in delivering complex turnkey projects. However, it is important to be familiar with the relevant regulatory framework and to prepare accordingly.
A key issue for EPC contractors in Italy is health and safety. The relevant legislation, Legislative Decree 81/2008, applies to all employers operating in Italy, regardless of their nationality. The obligations that remain directly with the employer (and thus also with the EPC) and cannot be delegated include carrying out a formal risk assessment and appointing a person responsible for the occupational health and safety service (RSPP).
On construction sites where several companies are operating, the client – or, if appointed, the person responsible for the works – must appoint a safety coordinator for the planning phase (CSP) and a safety coordinator for the execution phase (CSE). These are responsible for drawing up, updating and monitoring the safety and coordination plan (PSC). The contractor or EPC contractor is obliged to draw up its own operational safety plan (POS) and to implement the instructions and coordination guidelines issued by the CSE. Responsibility for compliance with health and safety regulations remains entirely with the contractor’s own operational organisation.
International EPC contractors often opt for a model in which many construction works are subcontracted to local subcontractors and the EPC – acting as the general contractor – does not deploy its own personnel on site. However, this model does not reduce the EPC’s responsibility. Rather, the focus of its duties shifts to coordination, inspection and monitoring tasks. The EPC remains obliged to verify the technical and organisational suitability of the subcontractors, to ensure that safety costs are correctly itemised in the contracts, and to coordinate the cooperation between the various companies on site. Liability risks, for example in connection with accidents at work, can also be passed upwards along the entire contractual chain.
Since October 2024, under Decree-Law No. 19/2024, a so-called points-based construction site licence (patente a crediti) has generally applied in Italy to companies physically operating on construction sites. Its rules of application, as well as the control and sanction mechanisms, were most recently further clarified and, in some respects, tightened in 2025 by the so-called DL Sicurezza (Decree-Law No. 159/2025, converted into Law No. 198/2025).
The licence is issued in digital form by the Ispettorato Nazionale del Lavoro (INL) and operates on a points-based system. It starts with an initial balance of 30 points. In order to be permitted to operate on construction sites, the company must maintain a minimum of 15 points at all times. Points are deducted in the event of established breaches of labour and safety regulations, whilst it is possible to rebuild the points balance through compliant behaviour and certain preventive measures.
The obligation to hold the licence is expressly linked to a company or self-employed person carrying out physical work on the construction site. Companies that provide exclusively non-operational services – such as purely coordination, management or other activities of a predominantly intellectual nature – are therefore not subject to the licensing requirement, provided they do not themselves carry out any operational work on the construction site.
However, it is particularly relevant for international EPC contractors that the new regulation does not result in any reduction of responsibility within the supply chain. Even if the EPC acts as a general contractor without its own site personnel and is therefore not itself obliged to hold the ‘patente a crediti’, it remains legally bound to ensure, prior to the commencement of works, that all subcontractors and self-employed contractors deployed on the construction site hold either a valid construction site licence with at least 15 points or an equivalent qualification. In particular, an SOA qualification certificate of Class III or higher is considered such a substitute.
Failure to carry out this check constitutes a separate breach and may be punished with an administrative penalty.
Environmental law, and in particular the Italian Environmental Code (Legislative Decree 152/2006), is also a central element of project implementation. Construction works generate waste that must be documented, recorded and disposed of in a traceable manner. The EPC contractor is often regarded as the waste producer in this context, even if transport or disposal is carried out by third parties.
A particular issue concerns photovoltaic modules. Companies that import PV modules into Italy from abroad as contractors under a works contract are legally regarded as manufacturers of electrical and electronic equipment. They are therefore obliged to register with the national WEEE system, join a take-back consortium and pay the relevant environmental contributions.
These obligations arise even before the plant is commissioned and should be integrated into the project preparation at an early stage. In the case of revamping and repowering projects, it is also important that the disposal of old modules is clearly regulated between the operator, the EPC contractor and, where applicable, the O&M service provider.
The legal framework for the authorisation of the construction and operation of PV systems was most recently further harmonised by the Testo Unico Rinnovabili (Decree Law 190/2024). Depending on the size, location and type of PV system (ground-mounted systems, agrivoltaics, rooftop systems, etc.), different approval procedures apply, ranging from free construction (edilizia libera) to the certified notice of commencement of works (SCIA, segnalazione certificata di inizio attività) to the well-known single authorisation (Autorizzazione Unica), which is issued in a centralised procedure by the relevant competent authority – the region or the Ministry of Economy.
From the perspective of a contractor in a construction services agreement, a principle developed through case law in Italian construction law is relevant: the contractor has an independent duty to verify the existence, validity, and scope of the required permits before starting construction work. If construction work is carried out without a valid permit or in significant deviation from it, this can lead to independent criminal and administrative liability for the EPC contractor as well – regardless of the project owner’s responsibility.
As the main contractor, the EPC is responsible to the client for the proper execution of the works, including defects attributable to subcontractors. Italian civil law provides for liability for ordinary defects – for which, pursuant to Article 1667 of the Italian Civil Code, a liability period of 2 years from acceptance applies – as well as a stricter liability regime for serious structural defects, which can be invoked for up to 10 years from acceptance.
In parallel, EPC contracts in the photovoltaic sector provide for specific performance and availability guarantees, which are verified during the provisional and final acceptance (PAC and FAC). These contractual performance guarantees constitute a central component of international EPC standards and operate in addition to statutory liability for defects, without replacing it.
In addition to the contractor’s civil liability, Legislative Decree No. 276/2003 imposes joint and several liability for employees’ wages and social security contributions throughout the contractual chain. This liability applies for a period of two years from the termination of the relevant contractual relationship and is addressed in practice through the careful selection of subcontractors, ongoing compliance checks and contractual recourse clauses.
European regulations such as the Carbon Border Adjustment Mechanism (CBAM), which will be fully applicable from the start of 2026, are also becoming increasingly relevant. EPC companies sourcing steel or aluminium-containing components from non-EU countries must fulfil the relevant reporting and documentation obligations and also ensure these requirements are contractually secured throughout the supply chain.
The Italian photovoltaic market currently offers international EPC contractors a highly favourable environment. The combination of a growing number of approved new construction projects and additional impetus in the areas of revamping and repowering is creating many business opportunities in terms of renewable energy construction contracts. At the same time, the regulatory framework is demanding and requires careful legal and organisational preparation.
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Fujiyama Power Systems setting up 1.2 GW solar cell plant in Maha to strengthen value chain – BusinessLine

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Solar energy and power backup solutions provider Fujiyama Power Systems is setting up a 1.2 GW solar cell manufacturing facility in Madhya Pradesh as part of its 2030 vision to become an integrated renewable energy player, its MD Pawan Garg said.
The greenfield project is expected to start solar cell production using advanced TopCon technology by the end of the ongoing fiscal year, the official told PTI in an interaction.
Post start of the commercial operations, the company's total cell capacity will reach 2.3 GW. Fujiyama operates a 1.1 GW cell plant in Dadri, Uttar Pradesh.
Tunnel Oxide Passivated Contact (TOPCon) technology is more efficient than conventional solar cell architectures, specifically Passivated Emitter and Rear Cell (PERC).
"We are setting up a new 1.2 GW solar cell manufacturing plant at Ratlam in Madhya Pradesh. This backward integration project will strengthen our value chain, reducing dependence on the open market," Garg said.
The project is being set up with an investment of around Rs 350- 400 crore as part of the company's 2030 vision, which also includes setting up ingot and wafer lines going forward in line with government ALMM initiatives to promote the local solar value chain, he said, adding the move will help the company reduce input cost for solar module making, he said.
Fujiyama operates a total of 3.6 GW module capacity – 2 GW in Ratlam, 1.2 GW at Dadri, and 0.4 GW at Noida. Manufacturing of modules requires solar cells. Cell making requires wafers and ingots.
The Approved List of Models and Manufacturers (ALMM) Order, 2019 is a quality-and-reliability framework that ensures solar equipment used in the country's solar projects meets domestic manufacturing standards.
While ALMM I was for modules, ALMM II included cells and ALMM III, which is planned for 2028, has been extended to ingot and wafers as well to boost domestic production, reduce import dependence and enhance quality across the solar value chain, positioning India as a strong global player in renewable energy.
Fujiyama Power Systems is one of India's leading providers of rooftop solar solutions, offering an extensive portfolio across solar panels, solar inverters, lithium-ion and tubular batteries.
In FY26, the company reported a topline of Rs 2,654 crore, while EBITDA stood at Rs 490 crore and profit after tax was Rs 304 crore.
Published on September 27, 2026
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Weld County approves $1.7B green energy project across thousands of acres of active ranchland – The Colorado Sun

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Telling stories that matter in a dynamic, evolving state.
GREELEY — Weld County will get a $1.67 billion wind and solar energy facility in the region surrounding the Chalk Bluffs after county commissioners voted 3-2 to approve it following several hours of heated public comment Wednesday. 
The project, expected to begin construction in 2027 and be completed by 2029, will employ 2,200 acres of solar panels and 79 wind turbines to generate 805 megawatts of energy, enough to power 600,000 homes. It will span 25,000 acres between U.S. Highway 85 and Colorado State Highway 390 and extend from Weld County into southern Laramie County in Wyoming.  
Commissioners Kevin Ross, Lynette Peppler and Perry Buck voted for the facility and Scott James, chair of the commission, and Jason Maxey, chair pro-tem, voted against it. 
Enyo Energy, the developer, presented its plan to commissioners Wednesday. 
Enyo representatives have touted the project’s economic, infrastructural and regional advantages, including increased power generation and grid reliability. They’re taking an “all-of-the-above approach” to electricity generation, they said, and cited a $47 million property tax payout over the project’s 30-year timeline as well as a boost in construction jobs during the three years the facility is under construction. 
Enyo Energy says 97% of the project area is secured through long-term private land leases with local landowners. The remaining 3% consists of publicly owned state, federal or municipal land or easements, Enyo states. The developer also states current ranching and agricultural land uses can largely continue around the planned infrastructure. 
But the majority of people who gave public comments at the meeting were against the facility. 
They included several multigenerational ranching families whose properties fall just outside the project boundary, like Robert Wagner, who owns and manages a 6,000-acre ranch with his wife that shares a border with it on three sides. 
Enyo representatives told the commissioners they’d done extensive public outreach with residents who might be affected. But Wagner said “we’ve had virtually no contact from Chalk Bluffs Energy or anyone else, except early on in the process they wanted a lease across a corner.” 
“I’m a scientist,” he added. “I have a Ph.D. in biochemistry and molecular biology. And I’m also a fan of wind and solar.” 
But he asked commissioners not to approve the project because the turbines will block vistas around the Chalk Bluffs, a rare geological escarpment lined with ancient fossils, unique trees found in mountain environments and important bird habitat. Remnants of past energy projects had been abandoned on his property, he added. 
The topsoil in the region, which will be impacted by heavy machinery, “doesn’t recover quickly,” he said. “Maybe not for decades. 
“That’s a huge loss of grazing land, and I think that matters.” 
The one ranch entirely contained within the project boundary had a different take. 
The Salo family started ranching and farming in northern Weld County in 2014 after running a farm and feedlot in Wyoming for 15 years. According to Scott Salo they’d spent nearly a decade watching their neighbors collect oil checks from wells drilled from pads on his ranch. 
Over the years, ranching has become harder and more unpredictable, with drought, low cattle supply and fluctuating markets shaped by political decisions, like what happened when President Donald Trump announced in August he was easing tariffs on imported beef, which ranchers say flooded the market. 
One of the Salos’ daughters told commissioners Wednesday that she hopes to continue farming and ranching into adulthood. Rather than changing her family’s way of life, she said the project “represents an opportunity to strengthen the financial foundation of a ranch and create more certainty as we plan for the years ahead. 

“For me personally, that means the possibility of coming home to live alongside my parents, learning from them while I still have the opportunity, and preparing one day to leave our ranch with the same dedication they have shown throughout their lives.”
James Trosper, an Eastern Shoshone tribe member and Eastern Shoshone Sun Dance chief, asked the commissioners to deny the permit on a cultural basis, saying an archeological study conducted by Colorado State University “confirms our oral history and evidence that this is a sacred place and an important place to our people.” 
Commissioner Kevin Ross responded by asking how far from the project Trosper lived (a question he asked all speakers. Trosper said Fort Collins, around 50 miles away).  
On Sept. 9, Weld County commissioners unanimously voted to approve a permit for Global AI to build what could become the largest data center operation in Colorado. 
Republican state senator Byron Pelton, whose district includes Weld County, was neutral on the decision. 
“Local governments have to walk a fine line between private property rights and what’s best for the county as a whole!” he wrote in a text to The Colorado Sun Friday. “Land use decisions should always stay with the local governments because it’s the government closest to the people.” 
Wagner, the landowner adjacent to the project, said he believes “the die was cast before that meeting ever occurred.” 

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Waaree Enters Specialty Gases Market, Targets Semiconductor And Solar Cell Manufacturing – BW Businessworld

Waaree Enters Specialty Gases Market, Targets Semiconductor And Solar Cell Manufacturing  BW Businessworld
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Fujiyama Power Systems setting up 1.2 GW solar cell plant in MP to strengthen value chain – Moneycontrol.com

Fujiyama Power Systems setting up 1.2 GW solar cell plant in MP to strengthen value chain  Moneycontrol.com
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Solar farm construction to begin in November – BBC

Work to build a 43,000 panel solar farm is to begin in November, after a contract was signed with a carbon-neutral developer.
The farm will power 9,400 homes, and will be built on farmland to the south of Barkham, Berkshire, owned by Wokingham Borough Council.
The facility is expected to go live and start generating electricity in September 2027, with full connectivity expected by 2029.
Imogen Shepherd-DuBey, the council's executive member for finance and governance, said signing the contract with Equans was an "important step forward for the council".
She said the the project would also "bring new walking and cycling links, increased biodiversity and hundreds of new trees, creating a lasting legacy for local communities".
The farm is also set to generate more than £1m income for the council every year, according to the authority.
The authority has worked with local charity Freely Fruity to plant about 1,000 fruit trees on the site.
In January, the council said it expected the farm to be built 10 years ahead of schedule.
In 2021, a tenant cattle farmer who worked on the land was told to leave to make way for the solar farm.
Andrew Lake rented High Barn Farm from the council and kept 360 cows at the site.
The authority previously said the land would be returned to agricultural use after 25 years, at the end of the farm's lifecycle.
West Berkshire Council expects the solar farm to generate enough power for about 6,000 homes.
MPs and councillors among those objecting to solar farm spanning Rotherham and Doncaster.
Dan McGrail says the state-owned renewables investment firm is directly recruiting two people a week, and its funding is benefitting thousands more.
Texas is now the country's biggest producer of solar-farmed electricity.
A new pipeline along the Thames will use heat from industry and redistribute it to homes across London.
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Floating solar panels sharply reduce light reaching the seabed in French Polynesia while having no detect – timesofindia.indiatimes.com

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The challenges and opportunities of clean energy in rural America – canarymedia.com

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This analysis and news roundup come from the Canary Media Weekly newsletter. Sign up to get it every Friday.
The U.S. energy transition runs through rural America: As of last year, 87% of U.S. clean energy generation happened in areas far outside the country’s urban centers, per a Rural Climate Partnership analysis. That makes sense — wind, solar, and battery installations need a lot of open land.
But not everyone is welcoming new clean energy development with open arms. The number of counties with some kind of ban, moratorium, or barrier on renewable energy projects is growing nationwide. More than 60% of the counties that have such restrictions are rural, according to a Daily Yonder and Canary Media analysis of data from USA Today and the Sabin Center for Climate Change Law at Columbia University.
Meanwhile, at the federal level, rural clean energy development is under attack. The Trump administration has gutted the Rural Energy for America Program, which for more than a decade helped farmers pay for solar panels that slashed their power bills. U.S. Agriculture Secretary Brooke Rollins has crusaded against ​“subsidizing solar projects on prime farmland,” and Interior Secretary Doug Burgum has painted wind and solar as ​“environmentally damaging” and an inefficient use of land.
In reality, despite being by far the fastest-growing energy source in America, utility-scale solar takes up just 0.07% of the country’s farmland. The footprint of golf courses is almost three times bigger.
And these opponents miss — or ignore — an even more important point. Clean energy projects present a massive opportunity for rural America. By bringing in new tax dollars, they can be an economic lifeline for struggling rural communities as well as for farmers, who can earn a profit leasing their land to counter soaring operating costs and the impacts of climate change.
Many people in rural communities know this. Half of all Americans support solar and wind projects in their area, according to an April survey by the Yale Program on Climate Change Communication. Jeff Hough, a Republican county commissioner in Idaho, is one of them. He’s organizing to overturn a ban on solar and wind that he helped put into place a few short years ago. Dorothy Macy, a resident of Coles County, Illinois, is another. She spoke out in favor of a 300-megawatt wind development in her area that’s expected to generate $81 million in taxes over its 30-year lifetime.
The benefits of clean energy development bridge ideological divides. That’s a point Republican Tim Pawlenty made onstage at Canary Media’s Climate Week NYC summit on the energy transition in rural America.
A former two-term governor of Minnesota and now head of the Solar Energy Industry Association, Pawlenty is committed to building enduring bipartisan support for clean energy policies. In particular, he believes the solar industry can position itself as a defender of private property rights, advocating for letting farmers develop their own land as they see fit.
“I’m from a farm state — I’ve spent a lot of time in farm areas and with farmers,” he said. ​“From a conservative standpoint, land rights are pretty important.” 

A federal windfall for advanced grid technology
For more than a year and a half now, the Trump administration has been systemically dismantling as many Biden-era energy policies as it can (and a bunch that it can’t, at least not legally). Jeff St. John reports, however, that Thursday brought us a rare moment of alignment between the two administrations with the announcement that the U.S. Department of Energy is awarding $1.9 billion in grants to support deployment of advanced transmission technologies in 26 states.
Why advanced transmission technologies? Because building new grid infrastructure is difficult, rife with financial, regulatory, and logistical challenges. Advanced transmission technologies mitigate this problem with devices, strategies, software solutions, and materials that can help squeeze more out of the existing overburdened grid.
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The grant-winning projects, for example, include plans to replace transmission cables with higher-conductivity versions that can carry more energy, as well as to add devices and software that can route power more intelligently around the grid.
Fighting for the future of offshore wind
Last week, we reported that Revolution Wind, off the Rhode Island coast, completed installation of all 65 of its turbines, and will soon join South Fork Wind and Vineyard Wind in commercial operations. Empire Wind and Sunrise Wind are both in progress off New York.
This week, Maria Gallucci tells us, nine states took steps to preserve the momentum. A coalition of eight eastern states filed a lawsuit attempting to block two deals in which the U.S. Department of the Interior agreed to pay out almost $4 billion to developers who gave up their offshore wind leases. California is pushing its own suit. These legal challenges come on top of cases filed earlier this year against what California Attorney General Rob Bonta called the ​“blatantly unlawful” buyout plans.
Meanwhile, the case for offshore remains strong. It showed up big during winter storms, helped stave off power outages during a New England heat wave this summer, and could have important national security implications.
Solar for All reinstated: A Trump-appointed judge rules that the administration acted illegally when it terminated the $7 billion Solar for All program meant to support solar projects serving lower-income communities. (Canary Media)

Electric school buses hit NYC: Fifty new plug-in electric school buses in New York City are slated to transport students and store energy to share with the grid. (Canary Media)

New York’s big battery battle: New York utility Con Edison and battery developers are locked in conflict over how community-scale storage projects should be managed and who should reap the financial benefits. (Canary Media)

Cleaner cooking: Induction-stove startup Copper partners with appliance giant Miele to produce a more versatile and powerful version of its superefficient, fume-free range. (Canary Media)

Solar set free: After years of delay, Ohio regulators green-light a project that will be the state’s largest solar and battery installation — and provide grazing land for some 1,000 sheep. (Canary Media)

Dirtier than ever: Many major U.S. utilities are making less progress cleaning up their power supply than in past years, with several taking steps backward, the Sierra Club’s annual report finds. (Canary Media)

Gas plant sidelined: North Carolina regulators reject plans for a gas-fired power plant, saying the risk to consumers is too great when it’s unclear if data center demand will actually surge in coming years. (Canary Media)

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Dan McCarthy is a senior editor at Canary Media.
Wendy Becktold is managing editor at Canary Media. She was formerly story editor at Sierra magazine, where she edited articles on everything from the circular economy to agriculture in Iowa, and wrote stories at the intersection of activism, gender equity, and climate change.
Sarah Shemkus is a reporter at Canary Media who is based in Gloucester, Massachusetts, and covers New England.
Fossil fuels
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L-G Vinai Kumar Saxena approves installation of 500KWp Solar Photovoltaic Plant at NDS Ice Hockey Rink in Leh. – Administration of Union Territory of Ladakh

L-G Vinai Kumar Saxena approves installation of 500KWp Solar Photovoltaic Plant at NDS Ice Hockey Rink in Leh L-G says project will strengthen Ladakh’s green energy goals and support development of world-class winter sports infrastructure.
Leh, May 10: The UT of Ladakh is all set to achieve a unique fusion of renewable energy generation and modern sporting infrastructure, with Lt. Governor, Shri Vinai Kumar Saxena, giving approval for the installation of a solar plant atop the famous Ice-Hockey Rink in Leh.
The 500 KWp on-grid Solar Photovoltaic (SPV) Plant on the rooftop of the NDS Ice Hockey Rink in Leh will be installed at an estimated cost of Rs 2.38 crore. It is a significant step towards promoting renewable energy and sustainable sports infrastructure in Ladakh. The project will be developed under the Special Development Package (SDP) of the Youth Services and Sports Department, UT Ladakh.
The project will serve as a model for integrating renewable energy solutions into public infrastructure projects across the Union Territory. Under the guidance of Lieutenant Governor Shri Vinai Kumar Saxena, efforts are ongoing to actively promote solar energy and other sustainable initiatives in line with its broader objective of environmental protection, clean energy transition and sustainable development in Ladakh.
“The installation of the rooftop solar plant at the NDS Ice Hockey Rink is an important step towards integrating clean energy solutions with modern sports infrastructure. As Ladakh moves towards becoming a carbon-neutral and environmentally sustainable region, such initiatives will help reduce the carbon footprint while promoting green and energy-efficient development. At the same time, the project reflects our commitment to strengthening sports infrastructure and creating world-class facilities for the youth of Ladakh,” said Lieutenant Governor Shri Saxena.
Ladakh, being an ecologically sensitive Himalayan region, requires sustainable and climate-responsive infrastructure development. The installation of the Solar Photovoltaic Plant at the NDS Ice Hockey Rink, apart from harnessing the abundance of sunlight, would also contribute towards reducing carbon emissions and further strengthen Ladakh’s efforts to emerge as a carbon-neutral region.
The initiative forms part of the UT Administration’s broader vision to develop environmentally sustainable and modern infrastructure in Ladakh while reducing dependence on conventional energy sources. The rooftop SPV plant is expected to significantly reduce electricity consumption costs and promote clean energy usage at the state-of-the-art ice hockey facility.
The Ice Hockey Rink at Leh has already emerged as a major venue for national-level winter sporting events and has successfully hosted the prestigious Khelo India Winter Games for three consecutive years. Plans are afoot to make this facility operational round-the-year.
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Solar revolution transforms rooftop life, reshapes family traditions – | Associated Press Of Pakistan

Muhammad Atif Ismail MULTAN, Sep 27 (APP)::For generations, rooftops remained a cherished part of family life, particularly in Multan, where the fierce summer heat sent families upstairs at dusk to welcome the cooling breeze, gather under the fading light and in many homes, surrender to sleep beneath the vast, star-studded sky.           But that cherished summer ritual is now quietly giving way to a new rooftop …
Serving the nation since 1947, the national news service is transforming its operations into APP Digital to deliver accurate, objective, and uninterrupted news for a diverse audience.

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Solar energy powers ahead as America’s strongest industry for career growth – Digital Journal

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Solar electric power generation offers the strongest career outlook in the United States, according to an August 2026 analysis attributed to software talent marketplace Lemon.io. The findings point to a labour market increasingly shaped by renewable energy, digital technologies and the care requirements of an ageing population.
For Canadians looking across the border, the research provides a useful picture of the economic forces likely to influence employment throughout North America. Renewable power is expanding rapidly, digital services continue to require specialist skills, and the number of older people worldwide is increasing. The World Health Organization says that every country is experiencing growth in both the number and proportion of older people.
The Lemon.io research assessed up to 40 US industries using employment growth between 2022 and 2024, projected job creation through 2034, anticipated percentage growth and median annual wages. It combined these measures into a Career Outlook Score intended to show which industries offer the most attractive balance of job availability and remuneration.
The resulting top 10 comprises solar electric power generation, computer systems design, software publishing, wind electric power generation, scientific research and development, cloud computing and data hosting, management consulting, assisted-living facilities, elderly and disability services, and corporate management. These are recognised industry categories within the US Bureau of Labor Statistics National Employment Matrix, which includes separate entries for solar and wind electric power generation.
In the Lemon.io analysis, solar electric power generation receives a Career Outlook Score of 99, the highest result among the industries examined. The study reports that employment in the sector increased by 78.89 per cent between 2022 and 2024. It projects the creation of 30,300 additional positions by 2034 and an overall employment increase of 179.29 per cent between 2024 and 2034. According to the supplied dataset, this would take the industry’s workforce to approximately 47,200 people by the end of the projection period. The reported median annual wage is US$77,630, or 56.83 per cent above the US median used in the analysis.
Separate occupational projections from the US Bureau of Labor Statistics support the conclusion that solar skills will remain in demand. The agency ranks solar photovoltaic installers as the second-fastest-growing US occupation for 2025 to 2035, projecting employment growth of 37 per cent and listing median pay of US$53,140 in 2025.
Industry expansion is also visible in generating capacity. In September 2026, the SEIA reported that operating US solar capacity had become sufficient to power more than 50 million American homes, equivalent to more than one-third of US households.  Public research remains part of this development. The US Department of Energy’s Integrated Energy Systems Office supports work on advanced photovoltaics, energy-system integration, grid resilience and lower-cost solar thermal systems.
Computer systems design ranks second in the Lemon.io table with a Career Outlook Score of 73. Although the dataset records a 1.62 per cent reduction in employment between 2022 and 2024, it projects 386,800 additional jobs by 2034 and employment growth of 15.82 per cent.
The industry also offers relatively high remuneration. Its reported median annual wage is US$109,990, which the study calculates as 122.20 per cent above the national median used for comparison. Software publishing occupies third place with a score of 72. The research records recent employment growth of 2.15 per cent and projects 124,600 additional positions by 2034, representing growth of 19.30 per cent. At US$131,390, software publishing has the highest median annual wage among the 10 industries in the supplied ranking. This is 165.43 per cent above the US median applied by the researchers.
Cloud computing and data hosting ranks sixth. The study reports recent employment growth of 2.25 per cent, a possible 97,900 new positions by 2034 and projected expansion of 20.29 per cent. Its median annual wage is listed as US$107,510.
The occupational picture also indicates continuing demand for digital expertise. The US Bureau of Labor Statistics projects 35 per cent growth for data scientists, 22 per cent for computer and information research scientists and 21 per cent for information security analysts between 2025 and 2035.
Wind electric power generation ranks fourth in the Lemon.io study, receiving a Career Outlook Score of 67. Employment reportedly rose by 34.97 per cent between 2022 and 2024. The researchers anticipate another 9,200 positions by 2034, together with industry-wide employment growth of 82.14 per cent. The sector’s reported median annual wage is US$80,010, or 61.64 per cent higher than the American median used in the comparison.
Occupational data provide a separate indicator of demand. The US Bureau of Labor Statistics ranks wind turbine service technicians as the fourth-fastest-growing occupation for 2025 to 2035, with projected growth of 30 per cent and 2025 median pay of US$64,120.
The distinction between occupational and industry figures is important. A projection for wind turbine technicians covers one occupation, whereas the Lemon.io figure concerns employment across the wind electric power generation industry. The figures therefore describe related, but not identical, sections of the labour market.
Scientific research and development completes the top five, achieving a Career Outlook Score of 64 in the supplied study. The sector experienced a reported employment contraction of 4.40 per cent between 2022 and 2024. Nevertheless, the analysis projects 75,800 new positions and employment growth of 8.75 per cent by 2034.
Its median annual wage is listed as US$127,250. This places earnings 157.07 per cent above the national median used by the researchers and makes scientific research and development the second-highest-paid industry in the top 10, behind software publishing. The juxtaposition of recent contraction and projected expansion shows why short-term hiring figures should not be considered in isolation. In the Lemon.io methodology, recent performance is assessed alongside future job creation, projected percentage growth and pay.
The healthcare and social-assistance results reveal a different type of employment opportunity. Assisted-living facilities rank eighth, while elderly and disability services take ninth place. According to the Lemon.io dataset, assisted-living employment increased by 121.54 per cent between 2022 and 2024. The industry is projected to add 103,900 positions by 2034, with employment growing by 10.51 per cent. However, its median annual wage of US$38,690 is 21.84 per cent below the study’s US benchmark.
Elderly and disability services could generate a much larger number of positions. The analysis projects 528,500 additional jobs by 2034 and employment growth of 21.04 per cent. Its median annual wage is reported as US$35,630, or 28.02 per cent below the comparative median.
The demographic basis for this demand is considerable. The World Health Organization projects that, by 2030, one person in six worldwide will be aged 60 or older. It expects the global population in this age group to increase from one billion in 2020 to 1.4 billion in 2030, before reaching 2.1 billion in 2050.   The organisation also states that health and social systems in every country face substantial challenges in preparing for this demographic transition. Common conditions associated with older age include hearing loss, osteoarthritis, diabetes, depression and dementia, while some older people experience several conditions simultaneously.  
The Lemon.io ranking applies to the United States, so its numerical projections should not be treated as Canadian forecasts. However, the forces captured by the research are not confined to one country.
For Canadian workers and educators, the results identify skills areas worth monitoring: photovoltaic installation, electrical engineering, wind-system maintenance, software development, data science, cybersecurity, scientific research and personal care.
The clearest conclusion is that rapid employment growth will not necessarily produce similar financial outcomes in every sector. Renewable energy, software and scientific research combine projected expansion with above-median wages in the supplied analysis. Care services promise far greater job volumes, but their reported wages remain below the national benchmark.
America’s emerging employment map consequently tells two parallel stories. The transition to cleaner energy and more advanced digital systems is creating technically specialised, comparatively well-paid work. At the same time, population ageing is generating an urgent requirement for care workers whose economic value is not yet reflected in equivalent wage levels.

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Written by
Dr. Tim Sandle is Digital Journal’s Editor-at-Large for science news.
Tim specializes in science, technology, environmental, business, and health journalism. He is additionally a practising microbiologist; and an author. He is also interested in history, politics and current affairs.
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Achieving efficient optimal power extraction of centralized photovoltaic array by migranting whale algorithm under partial shading conditions – frontiersin.org

Achieving efficient optimal power extraction of centralized photovoltaic array by migranting whale algorithm under partial shading conditions  frontiersin.org
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Promise seen in mixing farming, solar energy production projects – The Arkansas Democrat-Gazette




Winifred Sylvah picked a handful of plump cucumbers on a cold, wet September morning as raindrops trickled off rows of solar panels in the background.
They’ve been a productive plant for Sylvah on a new plot of land at a solar farm in Big Lake, Minn. She’s already harvested about 140 pounds of cucumbers, with rows more waiting to be picked. Sylvah is one of three farmers working the land in between and outside the rows of a 1-megawatt solar array in Big Lake.
The Big Lake Farm is an example of agrivoltaics, a technique of mixing farming and solar power generation. The two interests are often pitted against each other in rural areas, but the rows of flourishing crops between rows of solar panels shows there’s enough sun to go around.
The farm is a partnership between The Food Group — a Minnesota-based nonprofit organization that helps emerging farmers and fights hunger — U.S. Solar and Conexus Energy. It allows farmers like Sylvah to affordably lease farmland while providing an additional use for land that would otherwise be fenced-in rows of panels.
The project started as a pilot in 2023, but this year was made permanent with Sylvah and two other farmers entering 10-year leases on the land. She wasn’t sure what to make of farming between panels, but after hearing from pilot project farmers and seeing new infrastructure like irrigation systems and a walk-in cooler to store freshly picked produce come to the land, Sylvah was up for the challenge.
“I decided to take a chance,” Sylvah said.
The program expansion comes as federal officials slash support for emerging farmers. In March, the U.S. Department of Agriculture announced $300 million in cuts for a grant program focused on supporting land and market access for new farmers, defunding three programs aimed at helping farmers of color in Minnesota, MPR News reported. The cuts are part of the Trump administration’s eradication of federal spending aimed at diversity, equity and inclusion efforts.
“Because racial equity is a core value for our organization and how we’ve set up our programming, we aren’t going to actively pursue federal grants for the next couple years,” Food Group Executive Director Sophia Lenarz-Coy told Sahan Journal.
Accessing land is a challenge for emerging farmers. The Food Group’s Big River Farms in Marine on St. Croix, Minn., is a popular incubator program for emerging farmers, many of whom are immigrants. But once they leave, farmers who can’t afford to buy land often lease plots for a year at a time, which doesn’t allow them the certainty to become certified organic or the chance to adapt to the soil over the years.
“What’s nice about people having longer term leases is they’ll have a little more time to experiment,” Lenarz-Coy said.
Growing between rows of solar panels offers similar yields to standard farming, according to Iowa State University Professor Ajay Nair. Nair has helped lead research on agrivoltaics in Ames, where a partnership with utility firm Alliant Energy led to a 10-acre solar garden lined with rows of crops.
Iowa State researchers have tried various fruits and vegetables in the solar garden, and for the most part are seeing the same yield as in comparison plots.
“Any grower can commercially grow their produce within an agrivoltaic system,” Nair told Sahan Journal.
There’s more space between solar rows than many assume, Nair said. Wires are deep underground and typically don’t prohibit tilling the land, and some plants benefit from rotating shade. As long as irrigation is in place, it’s a perfectly viable place to farm, he said.
There are co-benefits between farmers and solar firms, Nair said. Solar companies build large fences around their projects, which is useful for farmers. Farmers are on the land consistently and can tell the company right away if a panel has been damaged in a storm or if anything is amiss on the property. It also helps ease rural land politics by allowing solar and agriculture to co-exist.
“Having some sort of an agriculture system in there gives them the social license to operate,” Nair said.
Most agrivoltaic projects in the United States focus on livestock grazing, not produce farming. In western Minnesota, researchers at the University of Minnesota-Morris have run a successful cattle agrivoltaics plot for the past eight years.
Some 275 cows munch grass in between rows of a 500-kilowatt solar array in Morris, Minn., said animal science Professor Brad Heins. The cows benefit from the solar panels’ shade, with researchers finding less heat stress in the herd. That helps keep the cows healthier and more productive, Heins said.
“I think it’s garnered a lot of interest in Minnesota and around the world,” Heins said.
Sylvah came to Minnesota from Sierra Leone as a student in the 1980s. She worked in banking for more than 30 years before retirement. But she always loved growing food and has fond memories of tending the family vegetable garden with her grandmother.
She grew vegetables at home and got involved in a community garden, but when she retired she decided to make farming her profession. She got involved with The Food Group and worked a plot at Big River Farms.
The Big Lake farm is much closer to her home in Otsego. And it gives her the chance to get to know the land. She has about an acre and a half total: one acre in the solar garden and half an acre in an adjacent plot.
Sylvah has a large mix of crops. In the solar garden she planted vegetables that benefit from shade: onions, collard greens, green beans and scallions. They all did well, she said.
She’s learned from this season. She didn’t put down fabric to discourage weeds, but she will next year after spending too much time maintaining her beds.
Her banking background shines through: Sylvah is always thinking about the market for anything she grows. She’s developed a following for her West African crops. Her okra, sweet potato greens, collard greens and eggplant are in high demand, she said.
“I make sure I know people are interested in what I’m growing,” Sylvah said.
She has some bitter balls, a West African eggplant that Sylvah said is popular in Minnesota’s Liberian community, but she’s not selling any this year and instead hopes to get seeds for a larger haul next season. In late August, she put down new rows of green beans, planning a late fall harvest.
“I always will do my last harvest for Thanksgiving,” she said.
Sylvah sells her food through a Community Support Agriculture program and to local public school districts in Albertville, Minn., and Buffalo, Minn., harvesting and delivering to the schools herself this fall.

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This Ohio solar farm is now home to 3 million honey bees across more than 50 hives, turning an energy sit – timesofindia.indiatimes.com

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Florida Army veteran was promised 'zero' electric bills. Instead, she says solar doubled costs – thecooldown.com

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“They’re selling not just the panels; they’re selling a financial product.”
Photo Credit: iStock
A disabled Florida Army veteran says a solar purchase marketed as a way to cut her utility costs ended up adding another monthly payment — and made it difficult to sell her home.
Her story is also fueling concern about a separate solar-financing problem: borrowers may still owe money even after the lender behind the deal goes bankrupt, according to WKMG.
Kia Love, a disabled Army veteran and Florida homeowner, agreed to install solar panels in 2016 after a door-to-door salesperson told her the system could reduce her electric bill to zero.
Love said the promise never materialized.
“After I got the panels on the roof, there was no drop in the bill,” Love explained. “The bill was exactly the same … I went from a high electricity bill to paying a high electricity bill plus the $175 for the solar panels.”
She recalled that the sales pitch depended on a federal tax benefit that she later learned she could not use because her income as a disabled veteran did not qualify.
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“The salesman said, first two years it will be $80 a month, and that would give me two years to apply the government kickback. But in actuality, that was false; I found out I was ineligible because my disabled veteran income didn’t qualify,” she told WKMG.
Love said it took paying to have the panels cleaned before a technician found the system had been installed improperly and wasn’t working correctly. 
Her loan jumped to more than $24,000 from about $16,000 after the first two years, and her monthly payment climbed to $175.
Attorney Joshua Horton said the problem often involves more than the solar equipment itself.
“They’re selling not just the panels; they’re selling a financial product. It’s two different agreements, but it’s all the same iPad [and] nobody reads the disclaimers,” Horton observed.
Love’s debt was transferred from Mosaic Solar to Solar Servicing, which Horton said commonly happens when lenders bundle and sell debt portfolios before filing for bankruptcy.
“The debt is then sold to third-party investors who will continue to collect on the debt, despite getting none of the benefits that they were promised,” he noted.
Horton cited another concern involving the UCC-1 filing attached to some solar loans.
While it is not a traditional lien, he said: “It operates as a lien. They can prevent you from refinancing, from selling your home; it clouds the title.”
Love believes that filing may be one reason her house has remained on the market.
Love felt that the best first step was to slow down. 
WKMG’s consumer checklist advised readers not to sign anything the same day, to ask for system-sizing details in writing, to compare multiple companies, and to have a qualified tax professional verify whether you can truly claim any advertised federal credit.
The checklist also recommended looking into whether the agreement is a loan, a lease, or another type of contract — and whether a UCC-1 filing will be placed on the property. 
Homeowners should also get warranty and service terms in writing, including what happens if the installer goes out of business.
Horton said consumers can file complaints with the Florida Attorney General’s Office Consumer Division.
He also pointed out that veterans like Love may have help available through a military consumer protection organization at the Department of Agriculture, and that some homeowners may need to dispute the debt or pursue legal action.
Love’s advice was direct.
“Definitely don’t believe everything that the salesperson is telling you. Read up on regulations, tax credits, figure out if you’re eligible, read all of the fine print and don’t let them rush you.”
For more on solar sales pitches, contract terms, and bill surprises like the ones in Love’s case, start with these articles. They look at zero-cost lease claims, financing misinformation, and net-metering shortfalls.
• A homeowner considering a zero-cost solar lease was warned it looked too good to be true.
• A solar expert challenged misinformation about leasing panels as homeowners sorted through savings claims.
• An Ohio homeowner learned net metering may leave much of the electric bill behind.
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'Giving back to my country': Dubai teen uses birthday savings to build solar plant tackling arsenic in UP village – timesofindia.indiatimes.com

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Anza expects at least a 40% spike in solar module prices after Section 232 – pv-magazine-usa.com

The new issue of pv magazine Global is out now!
Available in print and digital – get your copy today!
Monday, October 26, 2026
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Thursday, October 7, 2026
11:00 am – 12:30 pm CEST, Berlin, Paris, Madrid
pv magazine USA hosts its multi-day virtual event on U.S. solar and energy storage, covering domestic manufacturing, distributed energy and the growing role of solar-plus-storage in meeting AI-driven power demand.

The new issue of pv magazine Global is out now!
Available in print and digital – get your copy today!
Monday, October 26, 2026
10:30 am – 11:30 am CEST, Berlin, Paris, Madrid
Thursday, October 7, 2026
11:00 am – 12:30 pm CEST, Berlin, Paris, Madrid
pv magazine USA hosts its multi-day virtual event on U.S. solar and energy storage, covering domestic manufacturing, distributed energy and the growing role of solar-plus-storage in meeting AI-driven power demand.

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Indonesia's 'Snake Island' is now 'Rat Island," and its reef life could pay the price – thecooldown.com

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The ecological decline occurring above the waterline seems to be affecting nearby marine habitats as well.
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An invasive species has turned Indonesia’s “Snake Island” into “Rat Island,” with devastating consequences above and below the waterline.
Indonesia’s Manuk Island is the Banda Sea’s largest seabird breeding colony, best known among divers for its volcanic setting, reef life, and unusually large numbers of sea snakes. Rats, however, have wreaked havoc across the island, and a community-led conservation push now hopes to restore it to its natural state, according to Divernet.
The grassroots effort is being led by Edi Frommenwiler, an underwater videographer, pioneering Indonesian liveaboard operator, and owner of the Pindito. He said that when he first dived Manuk in 1992, he was struck by the sheer number of red-tailed tropicbirds, frigatebirds, boobies, and sea snakes.
About 40 liveaboards still visit the uninhabited volcanic island each year, but the ecological decline occurring above the waterline seems to be affecting nearby marine habitats as well.
Divernet reported seabird numbers fell from roughly 90,000 in the early 1970s to about 7,000 a decade later, and by 2009 had dropped by half again, while rats — believed to have arrived via fishing boats — took over the island.
“If you walk 20m along the beach you’re likely to see as many as 30 rats,” Frommenwiler told Divernet.
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The island itself covers about 100 hectares and rises 925 feet (282 meters) above sea level. It has no harbor or land-based dive operation, and currents can change unpredictably. Even so, divers continue to seek it out for hard corals, sponges, gorgonians, geothermal bubbles, and encounters with tuna, barracuda, reef sharks, rays, and occasional scalloped hammerheads.
Frommenwiler said Manuk once benefited from a “guano engine,” in which seabirds fed offshore and then returned to roost, leaving droppings rich in nitrogen and phosphorus. As those nutrients move into surrounding waters, they help nourish reef ecosystems. 
Divernet reported that studies on tropical islands suggest reefs alongside strong seabird colonies can have up to four times the fish biomass, along with faster coral growth and greater resilience.
Frommenwiler is trying to raise an initial $25,000 for a first-stage eradication project, hoping Indonesian authorities will support it at the million-dollar level.
That funding would go toward feasibility work, carefully designed baiting plans intended to avoid harming species such as native reptiles and land crabs, and coordination with government agencies, Banda communities, and conservation experts on long-term biosecurity.
He has provided seed money and is urging other liveaboard operators to contribute. He has also been working with New Zealand-based Island Conservation and the Ocean Earth Foundation, which Divernet said could conduct the operation using helicopters or drones without damaging Manuk’s ecosystem.
“The fact that there are no people or domestic animals on the island should make it easier,” says Frommenwiler. “I don’t want to have something halfway – I want to have a proper job done. By being part of this project, I want to give back to the ocean.”
Here are more stories from other islands that have gone through similar issues, showing what invasive species removal can do for local ecosystems. 
• On Tromelin Island, seabirds rebounded dramatically after invasive rats were removed.
• On Lord Howe Island, NSW, nearly extinct wildlife returned after a rodent eradication campaign.
• In French Polynesia, storm petrels returned to an island after a century-long absence.
• Across Orkney, Scotland, thousands of invasive stoats were eradicated to restore native wildlife.
• On Orkney, the signs are really promising, as curlews benefit from stoat control.
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No 10 considering Dale Vince plan to put solar panels on council house roofs – The Telegraph

No 10 considering Dale Vince plan to put solar panels on council house roofs  The Telegraph
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Energiequelle Sells French Subsidiary to H2air: 500MW Solar & Wind Pipeline Transferred – News and Statistics – IndexBox

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Energiequelle, a German renewables developer, has sold its French subsidiary to H2air, a French independent power producer, according to pv-tech. The transaction transfers the subsidiary’s employees along with its existing project pipeline, which consists of nearly 500MW of solar PV and wind projects.
The deal also covers 60MW of operational projects and projects that are already in the pre-construction phase, all of which H2air will take over. The French subsidiary had been part of Energiequelle since 2010, and over that period it developed and commissioned more than 27 solar PV and wind parks with a combined capacity of 266MW.
Energiequelle described the sale as part of a strategic realignment in response to challenging market conditions in the renewables sector. The report pointed to German solar developer Enerparc filing for insolvency earlier in the month as a notable recent example of those difficulties.
Roy Mahfouz, Founder and President of H2air, commented that the acquisition supports the company’s strategy of strengthening its position in renewable energy in France, particularly in the wind energy sector.
Interactive table based on the Store Companies dataset for this report.
Report Scope and Analytical Framing
Concise View of Market Direction
Market Size, Growth and Scenario Framing
Commercial and Technical Scope
How the Market Splits Into Decision-Relevant Buckets
Where Demand Comes From and How It Behaves
Supply Footprint and Value Capture
Trade Flows and External Dependence
Price Formation and Revenue Logic
Who Wins and Why
How the Domestic Market Works
Commercial Entry and Scaling Priorities
Where the Best Expansion Logic Sits
Leading Players and Strategic Archetypes
How the Report Was Built
Specialist in hybrid and resilient systems
Subsidiary of EDF, industrial operator
Acquired by Shell, remains French HQ
Independent developer and operator
INCORRECT – HQ Canada, major ops in France
Now part of TotalEnergies Renouvelables
Manufacturer of 'Ventura' wind turbines
Trade federation, not a manufacturer
Developer, limited manufacturing
Developer and asset manager
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Divested to GE, legacy French involvement
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Wind and solar project developer
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Solar farm construction to begin in November – aol.com

Solar farm construction to begin in November  aol.com
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Canadian province announces PV panel recycling fee – pv-magazine-usa.com

The government of Albert is introducing a new recycling system for end-of-life solar panels.
Beginning October 1, the province will apply an environmental fee of CAN 14 to each new solar panel supplied in Alberta. The fee will not be applied retroactively to already-installed panels.
According to details on the government’s website, a typical residential installation of 20 panels would raise a fee of CAN 280, equivalent to less than 1.5% of the overall installation cost.
The fee will go towards ensuring money is available to collect, transport and recycle panels once they reach end of life. The provincial government has committed to working with the Alberta Recycling Management Authority and wider industry to build reuse and recycling capacity in Alberta as volumes of recycled panels increase.
Additional figures on the government’s website says Alberta has the second-largest installed solar capacity in Canada, with 95% of currently-installed panels expected to reach their end of life by 2045, generating as much as 72,700 tonnes of material.
The province says its solar panel recycling program is the first of its kind in North America.
Grant Hunter, Alberta’s Minister of Environment and Protected Areas, said the region is putting the system in place now to recover valuable materials, attract private investment and build a new recycling industry here in Alberta.
“Alberta has never been afraid to lead,” Hunter said. “We will not wait until mountains of dead solar panels are piling up in our landfills before acting.”
RJ Sigurdson, Alberta’s Minister of Affordability and Utilities, added that the program will protect taxpayers from future clean up costs.
Writing on LinkedIn, Radha Rajagopalan, Director of Policy for Alberta at the Canadian Renewable Energy Association, noted that the CAN 14 fee is more than five times the highest fee charged under Alberta’s electronics recycling program and more than three times the cost indicated by the association’s independent analysis.
“Alberta needs stable, predictable policy to attract investment and build the affordable, reliable electricity the province needs,” Rajagopalan commented. “Adding unnecessary costs to new renewable energy projects sends the wrong signal at a time when Alberta needs more electricity in the system.”
Alberta’s latest update says it is also ruling out solar panels being sent to landfill sites across the province. Research published earlier this year found recycling a utility-scale solar module in the United States currently costs between $15 and $45, while sending it to landfill costs between $1 and $5.
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Elgin’s first solar farm now operating at Bowes and Nolan roads – dailyherald.com

A fence surrounded by landscaping shields hundreds of low-profile, flat-mounted solar panels at Cultivate Power’s Bowes Road facility.
Bowes Road is Elgin’s first solar farm, and it’s now fully operational.
City and company officials gathered Thursday for a ribbon-cutting event for the 30-acre enterprise at Bowes and Nolan roads.
“This is the first site we are both developing and operating. We’re really excited about the project,” said Kiera Gavin, director of development for Cultivate Power, based in Chicago.
The solar development company has been active in the state for four years. It’s been involved in close to 30 projects, said Noah Hyte, co-founder and managing director.
Bowes Road solar farm produces 11.2 megawatts of power to 500 commercial and residential customers. A solar farm captures sunlight, converts it to power and distributes the energy to the grid.
Customers subscribe to the farm to get electricity, which can save 10% to 20% over standard electricity rates, according to Gatby, a company that helps residents and business owners find ways to save on energy costs.
Bowes Road will provide “resilience to the local grid. If you have a big storm outage or other grid issues, this will continue to generate and provide power to the local area,” Hyte said.
The project started in 2022, but Cultivate Power took over a few years later. It’s the same footprint as originally planned, but they were able to add more capacity, he said.
“We were able to find the right approach,” Hyte said. “We found there were opportunities to directly engage and hear concerns and incorporate those in the design.”
Mayor Dave Kaptain, who attended the ribbon-cutting, said neighbors seem happy with the results.
There had been attempts to develop the property over the last two decades, including a residential subdivision. But a wetland area at the back of the site made it a challenging project.
“This is a good use of the land,” Kaptain said.
Elgin has been a leader in bringing solar to the community, with the city being among the first to have a community solar program, the mayor said. The program allows residents and small businesses to subscribe to local solar farms without the need for rooftop panels.
The city’s Sustainability Commission also has initiatives to encourage solar power usage.
“This is all starting to bear fruit,” Kaptain said.
As more people embrace solar power, he believes its use will grow, especially as the cost of electricity goes up, he said.
“Hopefully, Elgin will continue to be a leader,” Kaptain said.
Hyte said the farm “provides more than power and grid resilience; it provides support to communities.”
Its impact on the local community includes $575,000 in direct community investments, a fivefold increase in property tax revenues from the property and 75 construction jobs, company officials said.
The city will collect $64,000 in property taxes in the farm’s first year of operations, compared to the $12,000 collected in 2025.
Cultivate Power is also investing in the community through Elgin Community College, Food for Greater Elgin, Friends of the Fox River, Evolve Foundation and Sesenergy, which provides workforce training.
It also has a STEM program for local schools, Gavin said. Teachers have already visited the site and learned about the curriculum available surrounding solar power, she said.
“We are very focused on investing in local communities alongside the projects we develop,” Gavin said.
Gloria Casas is a freelance reporter for The (Elgin) Courier-News.

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Solar array rises at Little Falls high school – hometownsource.com

More than 500 solar panels have been installed on the east side of Little Falls Community High School. The $700,000 project is expected to generate more than $3 million in energy savings over the panels’ 40-year lifespan, with a $421,000 state grant covering most of the installation cost.

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More than 500 solar panels have been installed on the east side of Little Falls Community High School. The $700,000 project is expected to generate more than $3 million in energy savings over the panels’ 40-year lifespan, with a $421,000 state grant covering most of the installation cost.
LITTLE FALLS — More than 500 solar panels now sit on the east side of Little Falls Community High School, and while they aren’t generating power yet, district officials say they’ll pay for themselves several times over.
Superintendent Greg Johnson briefed the school board on the project during the Sept. 21 business meeting, raising it unprompted to explain the new addition passersby may have noticed. “Not sure if you’ve had any questions about the new addition on the east side of the high school,” he told the board, confirming the array is “up, not functional yet”
The installation carries a total cost of just over $700,000. Of that, $421,000 comes from a Solar for Schools grant through the Minnesota Department of Commerce — a program Johnson said a number of other districts across the state have also tapped, though he did not have a count on hand. The remaining share is covered by the energy savings the panels themselves generate.
Those savings are the long game. With a 40-year lifespan on the panels, Johnson said the district anticipates just over $3 million in energy savings across their service life.
Meanwhile, the high school’s $17.5 million indoor air quality project received Minnesota Department of Education approval on Sept. 10, Johnson reported, and the board voted to formally accept that approval. Consultants said the project addresses the majority of the high school’s high-priority deficiencies
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India homeowner's 5 kW solar makes 575 kWh a month, but power bill still passes $50 USD – tech.yahoo.com

India homeowner’s 5 kW solar makes 575 kWh a month, but power bill still passes $50 USD  tech.yahoo.com
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Cover glass from photovoltaic modules recycled into float glass – iom3.org

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NSG Group reports that it has successfully manufactured float glass using cover glass recovered from photovoltaic (PV) modules.
The trial was carried out at its Chiba Plant in Ichihara City, Japan. Glass was separated at Tokuyama Corporation’s PV panel, recycling demonstration facility in Hokkaido, Japan.
Historically, PV cover glass has been difficult to recycle due to its composition, which uses strong adhesives to maintain long-term durability. Tokuyama’s low-temperature thermal decomposition process pyrolyses the resin binding the module components, enabling glass, cells and interconnectors to be separated more precisely.
NSG says the trial confirms that the recovered material could be used under defined conditions, supporting the feasibility of ‘horizontal’ recycling into float glass.
The companies say the approach could reduce demand for raw materials such as silica sand and soda ash, increase cullet use, and lower CO₂ emissions from glass manufacturing.
A clear vision for recycling glass more efficiently.
Global minerals producer Minerali Industriali will help ResponsibleGlass develop sustainability certifications and standards.
The Glass Futures team has rolled the first glass from the furnace, to deliver a R&D asset for the global glass industry.
Anti-reflective coatings combined with recycled solar glass could boost sustainability in global shipping.
 

The proposed company will not replace existing energy suppliers or directly set household electricity prices.
Algal blooms may hasten microplastic formation, according to research in South Korea.
Circular economy firm Reconomy urges the UK Government to support materials recovery hubs.
Ploughshare will work with Leonardo UK Ltd to commercialise the latter’s technology in civilian applications.
TransPennine Express (TPE) has signed €1.2bln contracts with Alstom for supply and long-term maintenance of the fleet.
The research found low levels of undesirable substances in phosphorus recovered from incinerated sewage sludge.

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How one factory is surviving America’s solar policy whiplash – dailypress.com

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Inside the vast Qcells factory in Cartersville, Georgia, workers — and a bevy of robots — move ultra-thin slices of polysilicon through a lengthy series of machines and chemical baths to get what are known as cells.
“The $2.5 billion, the 3.5 million gallons of water, the 90 megawatts of power, the 60 tons of chemicals on site, and all of the football fields’ worth of infrastructure you’ve seen is to arrive at this,” said Scott Bell of Qcells, holding up one of the paper-thin blue cells.
It’s the basic building block of a solar panel.
In June, the plant, about an hour northwest of Atlanta, began its expansion from assembling the major components of solar panels to bringing the whole production process under one roof. It’s a major milestone for the U.S. solar industry. China has dominated solar panel manufacturing since the 2010s, flooding the global market with far cheaper panels than anyone else could make. For a host of reasons — national security, labor practices, job creation — the U.S. is trying to bring back domestic production, Grist reports.
In its latest move, the Trump administration plans to levy new tariffs and impose minimum import prices on polysilicon, the key ingredient for solar cells. The new measures go into effect in December.
“Having the full supply chain is critical,” said solar manufacturing expert Ben Damiani, chief technology officer at Atlanta-based solar developer Cherry Street Energy. Moving that supply chain to the U.S., he said, hasn’t been a smooth road. “Probably the biggest hindrance has been the constant change of our own policies.”
The Biden administration took a carrot approach to attracting solar panel makers: The 2022 Inflation Reduction Act included tax credit bonuses for solar projects that used U.S.-made panels. Qcells, a South Korean firm, has said those incentives were a major reason they built their Cartersville plant.
The Trump administration, by contrast, is taking a stick approach. While last year’s “One Big Beautiful Bill Act” revoked most of the tax credits, it also made solar equipment from certain countries — including China — ineligible for the few tax credits that remain. That, along with the new tariffs, may help a U.S. manufacturer like Qcells compete with Chinese imports, which are now more expensive.
The two policy approaches have the same ultimate goal, according to researcher Coco Zhang of the banking and investment firm ING. But it’s been whiplash for companies.
Following Trump’s latest executive actions, Qcells is still likely able to find a way to be successful, Zhang said. But Qcells has already made a multibillion-dollar investment in its brand new facility that took more than three years to come online. For other companies with less capital and poorer timing, the supply-side incentives for domestic production may not be enough — especially when the policies could completely change again.
As a part of the One Big Beautiful Bill Act, the Trump administration closed the Inflation Reduction Act loophole that had left room for China-based solar companies to simply set up shop in the U.S., which, according to Zhang, may go further still toward rooting out Chinese competition. In the long run, she’s optimistic that the U.S. solar panel industry can complete its shift to domestic production. But because the rules discouraging foreign ownership cut deeper into the supply chain, those restrictions and the policy back-and-forth could make things harder to navigate in the short term, she said.
The short-term outlook is complicated for those buying solar panels, too. The phaseout of federal clean energy tax credits removed a major incentive to develop new solar projects, and the Trump administration has taken steps to cancel federal funding for clean energy projects and add new hurdles for solar and wind installations on federal land. The courts have blocked or reversed some of those actions, but the delays add costs and uncertainties even for projects that do ultimately move forward.
In the first quarter of this year, clean energy advocacy group E2 tracked nearly $13 billion in abandoned investments in solar, wind, and battery projects. But some $18 billion in new projects were announced as companies scrambled to meet the deadline of the expiring tax credits. While the new tariffs and price controls on polysilicon could help U.S. manufacturers compete to supply the solar developments that remain, they could also drive up costs for developers, Zhang said, and “limited U.S. supply means many will still depend on imports and face higher costs.”
But industry experts maintain that solar isn’t going anywhere. It’s still one of the cheapest sources of electricity at a time when energy demand is growing fast. Solar panels are also readily available, while gas turbines are backordered for years. Solar and storage made up 90 percent of new power added to the U.S. grid in the first quarter of the year, according to the Solar Energy Industries Association.
“We absolutely should make solar, right? Like, it is the fastest deployed, lowest cost foreseeable,” said Damiani. “Solar will be, for the next hundred years, a good portion of our energy.”
The questions, experts agreed, aren’t whether solar development will keep happening, but how quickly, how much it will cost, and who — and where — will make the solar panels.
This coverage is made possible through a partnership between Grist and WABE, Atlanta’s NPR station.​
This story was produced by Grist and reviewed and distributed by Stacker.
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Renter blames allergies on the season, then checks a vent and finds 'move out immediately' mold – thecooldown.com

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The photos drew swift concern from other users on the subreddit.
Photo Credit: Reddit
After inspecting a vent, a renter found what appeared to be heavy growth and began to suspect their worsening allergies were not just a seasonal issue after all.
The photos drew swift concern from other users on the r/hvacadvice subreddit, who urged the renter to get the material tested and push the landlord to respond quickly.
The renter posted images of a floor register with substantial visible buildup in a Reddit thread. 
They wrote that their “allergies have been bothering me sooooo much lately, but I thought it was just the changing of the season.” After looking at the vent, they added: “Holy Moldy.” Responses in the thread ranged from worried to outright horrified. 
“That is, move out immediately amounts of mold,” one user wrote.  
Another said: “Yes in fact cooked. You need to get that tested asap. That is a lot of growth for a floor register.” 
The original poster said the filter appeared normal, which is why they had not thought to inspect the vent. But even when an HVAC filter looks clean, that does not mean the rest of the system is free of problems, since filters are designed mainly to protect the equipment.
For homeowners, this is also a reminder that upgrading heating and cooling equipment is one of the best ways to save money on utility bills and protect against rising energy prices. If you’re exploring options, Palmetto’s Comfort Plan network can help you find efficient heating and cooling solutions for your home and connect you with vetted installers.
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To get started, just answer a few questions about your home — no phone number required. Within a day or two, EnergySage will email you the best options for your needs, and their expert advisers can help you compare quotes and pick a winner.
Solar panels can save you more than $50k over their 25-year lifespan, and EnergySage can help you save as much as $10k on installation. Which begs the question — isn’t that worth an email or two?
When visible buildup appears around a vent, it can indicate a broader issue, such as high humidity, a leak, or HVAC equipment that isn’t functioning correctly.
Indoor air problems can seriously affect day-to-day life, especially for people already dealing with allergies or asthma. Even if the exact substance hasn’t been lab-tested, heavy buildup around an air register signals that something in the home environment needs attention.
Renters often have limited control over solutions like duct replacement, mold remediation, or HVAC upgrades, and many depend on landlords to act.
Efficient heating and cooling systems can make a major difference, not only for comfort but also for energy costs. In many homes, older or poorly maintained HVAC systems waste power, struggle with humidity, and leave residents paying more for worse performance.
For renters who spot suspicious buildup, the most practical first steps are to document it, notify the landlord in writing, and request a professional inspection and test. Users in the thread also recommended checking for leaks and excess moisture.
For homeowners, upgrading to an efficient HVAC or heat pump can reduce both energy waste and indoor comfort issues. Palmetto can help here, too. If you’re not ready to spend up front, the Comfort Plan includes $0-down options that can lower your heating and cooling costs by up to 50%, and Palmetto Comfort Plans include 12 years of free maintenance.
Homeowners can also pair solar panels with electric appliances, like efficient HVACs, to drive their utility costs even lower. EnergySage makes it easy to find the best solar system and installer for your home and budget, saving you up to $10,000 on installations.
That vent discovery reminds us that indoor air and HVAC problems can escalate quickly for renters and homeowners.
• One tenant found black mold spreading inside a neglected air conditioner after a landlord ignored complaints.
• In a 30-year-old house, one homeowner pulled a vent cover and uncovered decades of dust, hair, and grime.
• One renter kept having asthma symptoms after a landlord relied on concerning wildfire smoke mitigation indoors.
Get TCD’s free newsletters for easy tips, smart advice, and a chance to earn $5,000 toward home upgrades. To see more stories like this one, change your Google preferences here.
© 2025 THE COOL DOWN COMPANY. All Rights Reserved. Do not sell or share my personal information. Reach us at hello@thecooldown.com.

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An unlikely power player in the fight over solar on farmland – politico.com

An unlikely power player in the fight over solar on farmland  politico.com
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ClearVue tests solar window glaze in Macau – The Australian

ClearVue tests solar window glaze in Macau  The Australian
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CESL Asia plans large-scale agro-photovoltaic pilot projects in Portugal – Macau Business

By LUSA
Macau-based infrastructure and investment company CESL Asia has announced plans to launch large-scale pilot projects in agro-photovoltaic (AgroPV) technology across Portugal, aiming to position the country’s agricultural regions at the forefront of the green and digital transition.
The intention was expressed during a visit by a high-level delegation from the Intermunicipal Council of the West Region of Portugal (OesteCIM) to the group’s Macau headquarters. The delegation was led by Hermínio José da Cruz Augusto Rodrigues, President of the Alcobaça Municipal Council and of the OesteCIM Intermunicipal Council.
The visiting delegation also included several regional mayors, the President of the Lisbon and Tagus Valley Regional Coordination and Development Commission (CCDR), Teresa Almeida, and Bernardo Pinho, representing AICEP Macau.
According to a press release issued by the company, the meeting focused on opportunities for cooperation in regional development, sustainable agriculture and energy. Group management highlighted the “transformative economic impact that AgroPV can bring to the Portuguese agricultural sector when accompanied by forward-looking policies”.
Agro-photovoltaic technology allows the dual use of land, combining agricultural or livestock production with photovoltaic solar power generation on the same site.
During the discussions, CESL Asia presented details of its AgroPV Demonstration Facility in the Alentejo region, emphasising that land-use optimisation “helps protect national food sovereignty while promoting the development of rural areas”.
The company noted that, given appropriate regulatory frameworks, the technology is estimated to “generate additional revenue of €1,500 to €3,000 per hectare per year for farmers, effectively more than doubling the economic value of rural land”.
To translate this vision into implementation, the group advocated the “urgent need to create a National Programme for AgroPV Pilot Projects within a regulatory sandbox environment”. This framework would allow public and private entities to jointly define “agri-tech models, operations and regulatory best practices suited to Portugal’s reality”.
Integrating AgroPV directly into national strategies for agriculture, energy and digitalisation represents a “strategic lever”, the company stated. Alignment with ongoing investments in the national power grid and data centre infrastructure will “boost regional development, particularly in agricultural regions like the West”.
Founded in 1987, CESL Asia specialises in consultancy services and the management and operation of critical public and private infrastructure.
While UNESCO strongly recommends banning smartphones in schools, not all scientific studies point in the same direction
A recent surge in juvenile delinquency across Macau is being closely linked by authorities to prolonged exposure to unmonitored online content.
A body was pulled from the rubble of a collapsed building on Saturday following an explosion in Athens’ historic Plaka district, the Greek press agency ANA reported, as rescuers searched for the missing.
For two years after he first arrived in Austria, Iraqi pupil Abdlrahman Aljanabi didn’t follow maths, science and other subjects like the rest of his peers.
Wellbeing is not an optional benefit added after business objectives are achieved. In a people-centred industry, it is part of the operating model. For Macao’s large resorts, independent restaurants and other tourism businesses, caring for employees is also a way of protecting service quality, reputation and long-term competitiveness.
As consumers spend more of their lives online, retailers are rethinking how they attract, engage, and retain customers
 UTM Comments is a partnership between Macau News Agency and Macao University of Tourism  By Marieta Wong, Lecturer Macau’s evolution into a global gastronomy powerhouse is the result of deliberate strategy, not chance. In fact, being designated a UNESCO Creative City of Gastronomy recognises that the city has built a distinctive culinary identity – one shaped by creativity, […]
n a time of an inflection point for how this industry will change, we need to re-set our understanding of AI. AI can mimic techniques, but it cannot counterfeit the human soul.
Leading business news and insights from Macau, covering gaming, finance, tourism, and economic developments.
© 2026 Macau Business. All rights reserved.

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Waaree Energies to acquire subsidiary Indosolar for US$99 million – PV Tech

Indian solar manufacturer Waaree Energies will merge group company Indosolar with itself in a transaction valued at about INR9.5 billion (US$99 million).
Indosolar, the solar manufacturer and subsidiary of Indian solar company Waaree Energies, will be fully amalgamated into Waaree Energies under the proposed merger, after which Indosolar will cease to exist as a separate corporate entity.

According to the filing, Indosolar shareholders will receive one Waaree Energies share for every 11 Indosolar shares held. The transaction remains subject to regulatory and shareholder approvals.
The merger will consolidate Waaree’s solar cell and module manufacturing operations with Indosolar’s module business. Indosolar operates a manufacturing facility in Greater Noida, Uttar Pradesh, with an annual module capacity of 1.3GW. The company is listed under India’s Approved List of Models and Manufacturers (ALMM), with an aggregate listed capacity of 1.5GW.
However, it currently has no active cell manufacturing capacity and relies on Waaree Energies or third-party suppliers for cells used in its modules.
Waaree said the merger will create a backward-integrated manufacturing business, enabling consolidated production planning, inventory optimisation and improved domestic-content traceability. It will also eliminate ongoing related-party transactions linked to cell supplies.
The companies said the merger will simplify Waaree’s group structure and remove duplicate compliance and administrative costs. Indosolar’s public shareholders will receive shares in Waaree, providing exposure to the larger listed entity.
As of 30 June 2026, Indosolar had total assets of INR4.05 billion, net worth of INR3.24 billion and turnover of INR683.6 million.
Originally incorporated as Robin Garments Private Limited in 2005, the company shifted its focus to solar cells and was renamed Indosolar in 2009. After enduring financial challenges and halting operations in 2018, Indosolar was acquired by Waaree Energies through insolvency resolution proceedings in April 2022 and resumed commercial operations in July 2024.
The Indosolar merger is the latest in a series of acquisitions and investments by Waaree Energies as it expands beyond solar manufacturing.
In June 2026, Waaree acquired a 55% stake in engineering, procurement and construction (EPC) firm Associated Power Structures (APSPL) for INR12.25 billion, strengthening its position in power infrastructure as part of its Waaree 2.0 strategy to become “a fully integrated energy transition company”.
Then in January 2025, Waaree agreed to acquire Enel Green Power India, the Indian renewable energy subsidiary of Italy’s Enel, for up to INR7.92 billion. The deal was intended to expand Waaree’s independent power producer (IPP) business and diversify its revenue base.
Waaree also acquired a 64% stake in Indian transformer manufacturer Kotsons in September 2025, adding transformer manufacturing to its portfolio and targeting expansion into higher-voltage products in India and North America.

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Solar grants to be extended to newer builds in bid to slash crippling energy bills – Irish Independent

Solar grants to be extended to newer builds in bid to slash crippling energy bills  Irish Independent
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Dumpster diver finds Bath & Body Works bags with unused candles covered in hair, roaches, and dirt – thecooldown.com

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“I just went ahead and jumped in …”
Photo Credit: TikTok
Footage of a dumpster-diving session outside of Bath & Body Works is getting attention not just for its allegedly discarded goods, but for what was found mixed in with them. 
One seasoned diver, who goes by GlamourDDive online, said some of the tossed bags held seemingly new products alongside hair, dirt, mystery liquid, and even roaches.
In the recent, now-viral TikTok video, the diver showed herself retrieving bags and boxes of candles from a Bath & Body Works dumpster and saying, “Wait until you see what they left hiding for me to find….”
The video quickly drew nearly 700,000 views and almost 15,000 likes.
She described the dumpster as “loaded” and showed stacks of what appeared to be intact Christmas candles along with several mystery bags, adding, “So I just went ahead and jumped in…. I started grabbing and there were so many of these unbroken, brand-new Christmas candles.”
Not everything she found looked usable; she said some broken candles were mixed with hair, dirt, detergent, food, cockroaches, and a “bunch of mystery liquid.” She also found “food and crackers” alongside some broken goods.
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The comments section was mainly focused on the diver’s attire. The top comment pointed out that she completed the dive “in sandals.” Another commenter similarly advised, “Please wear gloves and closed shoes.” A third user wrote, “Please please please wear enclosed shoes next time. People throw away glass, needles, sharp things. All the time.”
One commenter, who claimed that they used to work at Bath & Body Works, wrote, “The best time to dumpster dive is during candle day weekend and Christmas eve. Have fun.”
Another user even suggested that the footage was staged, adding, “The majority of these people are setting up these finds! They usually buy items beforehand and then stage it so it looks as if they found it.”
For more on similar dumpster-diving finds and retail waste at Bath & Body Works and other chains, check out these stories. 
• One dumpster diver pulled a mystery bag from a Bath & Body Works dumpster.
• Behind Sephora, a diver found thousands of dollars’ worth of discarded beauty products.
• At HomeGoods, one shopper made an upsetting discovery in a store dumpster.
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Underwater solar cells reach new depths – theportugalnews.com

Underwater solar cells reach new depths  theportugalnews.com
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How one factory is surviving America’s solar policy whiplash – Daily Press

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Inside the vast Qcells factory in Cartersville, Georgia, workers — and a bevy of robots — move ultra-thin slices of polysilicon through a lengthy series of machines and chemical baths to get what are known as cells.
“The $2.5 billion, the 3.5 million gallons of water, the 90 megawatts of power, the 60 tons of chemicals on site, and all of the football fields’ worth of infrastructure you’ve seen is to arrive at this,” said Scott Bell of Qcells, holding up one of the paper-thin blue cells.
It’s the basic building block of a solar panel.
In June, the plant, about an hour northwest of Atlanta, began its expansion from assembling the major components of solar panels to bringing the whole production process under one roof. It’s a major milestone for the U.S. solar industry. China has dominated solar panel manufacturing since the 2010s, flooding the global market with far cheaper panels than anyone else could make. For a host of reasons — national security, labor practices, job creation — the U.S. is trying to bring back domestic production, Grist reports.
In its latest move, the Trump administration plans to levy new tariffs and impose minimum import prices on polysilicon, the key ingredient for solar cells. The new measures go into effect in December.
“Having the full supply chain is critical,” said solar manufacturing expert Ben Damiani, chief technology officer at Atlanta-based solar developer Cherry Street Energy. Moving that supply chain to the U.S., he said, hasn’t been a smooth road. “Probably the biggest hindrance has been the constant change of our own policies.”
The Biden administration took a carrot approach to attracting solar panel makers: The 2022 Inflation Reduction Act included tax credit bonuses for solar projects that used U.S.-made panels. Qcells, a South Korean firm, has said those incentives were a major reason they built their Cartersville plant.
The Trump administration, by contrast, is taking a stick approach. While last year’s “One Big Beautiful Bill Act” revoked most of the tax credits, it also made solar equipment from certain countries — including China — ineligible for the few tax credits that remain. That, along with the new tariffs, may help a U.S. manufacturer like Qcells compete with Chinese imports, which are now more expensive.
The two policy approaches have the same ultimate goal, according to researcher Coco Zhang of the banking and investment firm ING. But it’s been whiplash for companies.
Following Trump’s latest executive actions, Qcells is still likely able to find a way to be successful, Zhang said. But Qcells has already made a multibillion-dollar investment in its brand new facility that took more than three years to come online. For other companies with less capital and poorer timing, the supply-side incentives for domestic production may not be enough — especially when the policies could completely change again.
As a part of the One Big Beautiful Bill Act, the Trump administration closed the Inflation Reduction Act loophole that had left room for China-based solar companies to simply set up shop in the U.S., which, according to Zhang, may go further still toward rooting out Chinese competition. In the long run, she’s optimistic that the U.S. solar panel industry can complete its shift to domestic production. But because the rules discouraging foreign ownership cut deeper into the supply chain, those restrictions and the policy back-and-forth could make things harder to navigate in the short term, she said.
The short-term outlook is complicated for those buying solar panels, too. The phaseout of federal clean energy tax credits removed a major incentive to develop new solar projects, and the Trump administration has taken steps to cancel federal funding for clean energy projects and add new hurdles for solar and wind installations on federal land. The courts have blocked or reversed some of those actions, but the delays add costs and uncertainties even for projects that do ultimately move forward.
In the first quarter of this year, clean energy advocacy group E2 tracked nearly $13 billion in abandoned investments in solar, wind, and battery projects. But some $18 billion in new projects were announced as companies scrambled to meet the deadline of the expiring tax credits. While the new tariffs and price controls on polysilicon could help U.S. manufacturers compete to supply the solar developments that remain, they could also drive up costs for developers, Zhang said, and “limited U.S. supply means many will still depend on imports and face higher costs.”
But industry experts maintain that solar isn’t going anywhere. It’s still one of the cheapest sources of electricity at a time when energy demand is growing fast. Solar panels are also readily available, while gas turbines are backordered for years. Solar and storage made up 90 percent of new power added to the U.S. grid in the first quarter of the year, according to the Solar Energy Industries Association.
“We absolutely should make solar, right? Like, it is the fastest deployed, lowest cost foreseeable,” said Damiani. “Solar will be, for the next hundred years, a good portion of our energy.”
The questions, experts agreed, aren’t whether solar development will keep happening, but how quickly, how much it will cost, and who — and where — will make the solar panels.
This coverage is made possible through a partnership between Grist and WABE, Atlanta’s NPR station.​
This story was produced by Grist and reviewed and distributed by Stacker.
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Pennsylvania family plans off-grid move to 10-acre shack, leaning on Amish know-how – thecooldown.com

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“The boring stuff is gonna matter most once you move.”
Photo Credit: Reddit
For one Pennsylvania family, stepping away from utility hookups and into a simpler, lower-cost setup is no longer just a daydream.
Their plan is to move onto 10 wooded acres, fix up a small shack, and rely on their hard-earned off-grid skills while they work toward something more permanent.
In a post on Reddit’s r/OffGrid forum, the original poster said their family’s offer on a 10-acre mountain property in Pennsylvania had been accepted, with financing still pending. 
Instead of fully outfitting the existing structure, they plan to handle a few leaks, make cosmetic improvements, and hold off on bringing in electricity.
Some basics are already in place, like clean water from a hand-pump well, a wood stove, and an insulated cabin. The OP said their husband grew up in an especially strict Amish community, giving him experience living with fewer modern tools and amenities. They also said the family has spent years collecting supplies they can use without electricity.
Yet, the family would not be learning everything from scratch. They already garden, can food, raise chickens, and do much of their own butchering on less than half an acre. The OP also noted that the property would be about 20 minutes from town, so it would not be as isolated as some off-grid setups.
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Commenters in the off-grid community were largely supportive, though they also raised practical concerns. 
One warned, “Rafters appear to be bowing, definitely check that out.” Another reminded the family that “the boring stuff is gonna matter most once you move tho. have you got water and winter heat figured out yet?”
The OP said that the move would give them time to build the house they actually want while also giving their three girls more room to roam, play in the woods, and grow up closer to nature. Still, bathroom logistics, safe bathing, winter readiness, structural repairs, and financing remain major hurdles. 
For anyone considering a similar move, the commenters’ advice offers a practical starting point. Always focus on necessities before aesthetics. That means checking structural integrity, confirming year-round water access, planning safe winter heat, and understanding local rules for sewage, outhouses, and gray water.
These stories explore many of the same off-grid questions this Pennsylvania family is weighing. 
• For would-be homesteaders, a real-world home inspection can reveal problems before moving off-grid.
• One off-grid homeowner learned solar sizing questions get complicated fast when every watt matters.
• In a dry cabin, living without a water connection quickly turns into a daily logistical issue.
Get TCD’s free newsletters for easy tips, smart advice, and a chance to earn $5,000 toward home upgrades. To see more stories like this one, change your Google preferences here.
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Wood Mackenzie: Solar Repowering to Make Up 23% of New Capacity in 2040s – News and Statistics – IndexBox

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Replacement and expansion of decommissioned solar photovoltaic projects will represent 23% of new solar capacity additions during the 2040s, according to a report from Wood Mackenzie. The research, published by the energy consultancy, examines how the decommissioning of solar and wind projects will shape the clean energy transition.
The report, titled Renewing renewables: The next chapter in the energy transition, uses wind as its primary example of how projects reach the ends of their operational lives and require replacement, though many of the identified trends apply to solar as well. Wood Mackenzie estimates that during the 2040s, projects accounting for more than 2.5 terawatts of combined wind and solar capacity will reach the ends of their operational lives, requiring project owners to decide on the future of those assets.
Using the European wind industry as an illustration, the report notes that meeting European Commission deployment targets requires 37 gigawatts of new wind additions annually between 2023 and 2030. The industry is already falling short of that target, and a further 17 gigawatts of capacity will be decommissioned during the same period, meaning Europe must effectively add 39 gigawatts per year to reach the 2030 goal.
The report indicates that solar and wind decommissioning will remove a significant volume of generation from the grid, particularly from 2040 onward. As power demand continues to grow, close to 8,000 terawatt-hours of new generation will be needed by 2050 to account for rising demand and the reduction in output from existing solar and wind assets.
Earlier in the year, speakers at the Solar Media Clean Power 2030 Summit said project developers must actively consider end-of-life activities when building an asset, and that simply dismantling a project at the end of its life would be an unwise decision. Asset owners typically aim to revamp a project by replacing parts and components with new versions to restore original output, or repower it by adding new components to improve capacity or output.
Wood Mackenzie reports that solar has seen greater technological advancements than other renewable energy industries such as wind, estimating that a new technology has entered the solar sector every other year over the past decade. In a repowering context, this means solar assets have a shorter operational lifetime than they are designed for, as asset owners look to capitalise on new technological advancements rather than repair existing assets, according to the report, which was written by Soren Lassen, Chris Seiple and Charles Coppins.
Despite the scale of the challenge, the report notes that the solar PV industry could be well-positioned to capitalise on the need to replace operating capacity, because the speed at which new technological innovations are deployed means repowered solar projects could see significant improvements in generation. Module efficiencies increased by 69% between 2005 and 2025, and technology is already available that could increase cell efficiency by more than 50% by 2045. Project sites are also becoming smaller, with average project sites today as much as 30% smaller than projects of the same capacity in 2010.
The report concludes that decommissioning work will drive more than 70% of installations of new renewable energy projects across Europe. However, the authors note that this trend will not be universal, with decommissioning work contributing to just 1% of new capacity additions in Asia.
Interactive table based on the Store Companies dataset for this report.
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Largest solar cell & module producer globally.
World's largest monocrystalline wafer & module maker.
Major integrated solar manufacturer.
Leading producer of high-performance PV products.
Global manufacturer with production in Americas & Asia.
Major cell/module maker with US & Asian production.
Top-tier PV module and cell manufacturer.
Largest thin-film solar manufacturer globally.
Major LED chip & packaging for displays/lighting.
Pioneer and leading supplier of LED phosphors & chips.
Historically leading innovator in LED chips.
Major European LED & opto-semiconductor producer.
Producer of high-efficiency IBC solar cells.
World's largest producer of solar cell wafers.
Leading ABC cell (N-type) technology producer.
Rapidly growing solar cell and module manufacturer.
Integrated PV manufacturer under Chint Group.
Major global LED packaging and component supplier.
Leading supplier of LED components for automotive/lighting.
One of world's largest LED epitaxial wafer & chip makers.
Innovator in LED packaging (WICOP) and chip technology.
Major LED component supplier, part of LG Group.
Key LED epitaxy and chip manufacturer.
Historically significant in both PV and LED production.
Major PV manufacturer part of GCL Group.
Specialist in N-type TOPCon solar cells and modules.
Historic PV leader, continues manufacturing.
Leading LED chip manufacturer, part of Ennostar.
Major LED packaging company for lighting & display.
Leading Chinese LED packaging and component supplier.
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'Am I reading things wrong?': Florida homeowner questions solar bill over missing discount – Yahoo Finance

‘Am I reading things wrong?’: Florida homeowner questions solar bill over missing discount  Yahoo Finance
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