BRICS’ Solar, Storage Push Faces Implementation Test Without Clear Roadmap – Saur Energy

0
By clicking the button, I accept the Terms of Use of the service and its Privacy Policy, as well as consent to the processing of personal data.
Don’t have an account? Signup
Powered by :
BRICS recently concluded its 18th Summit in New Delhi under the theme “Building for Resilience, Innovation, Cooperation and Sustainability.” Through this summit the bloc is expanding its role beyond economic cooperation into areas such as clean energy, technology, skills development and social infrastructure.
BRICS is already experiencing significant clean-energy growth, but its energy transition remains uneven because fossil-fuel development continues. The New Delhi Declaration expands cooperation on solar, storage, smart grids, critical minerals and other areas, but largely stops at voluntary cooperation rather than setting clear targets, funding, timelines or implementation mechanisms. Therefore, the real test is whether BRICS can turn its existing clean-energy momentum into coordinated, measurable action.
Despite the growing role of renewable energy across the bloc, the pace and nature of the energy transition remain uneven among BRICS members. China, India and Brazil have emerged as major drivers of renewable energy deployment, while other members are at different stages of developing their solar, storage and grid infrastructure. This disparity is important for the bloc’s latest energy commitments, as a common approach to solar and storage cooperation would have to account for significant differences in market maturity, policy frameworks, grid readiness and investment capacity.
The challenge, therefore, is not simply to expand renewable energy deployment but to translate BRICS’ collective scale into coordinated action. The bloc’s latest declaration calls for greater cooperation on solar PV, smart grids and energy storage, including the development of a Solar Photovoltaic Cooperation Roadmap. However, the effectiveness of these initiatives will ultimately depend on whether they can move beyond broad cooperation towards measurable targets, defined timelines, financing mechanisms and clearer implementation responsibilities.
This could become particularly relevant for solar and storage, where rapid capacity additions are creating new requirements for grid flexibility, energy management and investment. While BRICS has identified these areas for cooperation, differences in electricity markets, regulatory structures and domestic manufacturing capabilities could make implementation across the bloc more complex.
The bloc also sought to broaden cooperation through initiatives such as BRICS CONNECT, which aims to promote skills, employability, women’s participation in the workforce, social security and capacity building. However, the declaration provides limited clarity on financial commitments, implementation mechanisms or specific joint programmes to translate these ambitions into measurable outcomes. Some of the key areas of cooperation include:
The declaration recognises the key role of critical minerals in the development of zero- and low-emission energy technologies, energy security and the resilience of energy supply chains.
While this recognition is significant given the growing importance of critical minerals to renewable energy, batteries and other clean-energy technologies. But, the declaration does not establish specific targets or implementation mechanisms for strengthening critical-mineral cooperation.
BRICS encouraged its members to leverage established mechanisms to advance cooperation in areas of mutual interest. It developed BRICS Solar Photovoltaic 
Cooperation Roadmap to identify priority areas for technology cooperation, financing and capacity building. Its currrently attempting to build a action plan to identify initiatives on smart factory development, solution sharing, standard cooperation and talent cultivationthrough an Intelligent Manufacturing  and Robotics Working Group.  
One of the more relevant areas for the renewable energy sector is the declaration’s recognition of the growing role of digitalisation in energy systems. It highlights technologies such as artificial intelligence and advanced data analytics, which could improve system planning, grid management, renewable energy integration, operational efficiency and cyber resilience.
In this regard, BRICS welcomed the BRICS Guiding Principles on Smart Grids and Energy Storage. It also noted the Chairship’s initiative to establish the BRICS Digital Centre of Excellence for Smart Grids and Energy Storage under the Smart Grids Workstream of the BRICS Energy Research Cooperation Platform (ERCP).
The initiative could provide a platform for knowledge sharing and technical cooperation. However, the declaration describes the proposed centre as an enabling voluntary dialogue mechanism, suggesting that its immediate role is likely to focus more on cooperation and knowledge exchange than on binding implementation.
The declaration also identifies areas of cooperation including the BRICS Forum on Sustainable Aviation Fuels and the BRICS Framework of Cooperation for Exchange of Knowledge on Transport Decarbonisation, including through the use of renewable energy potential.
It also supports the establishment of the BRICS Urban Mobility Hub for knowledge exchange and cooperation on accessible and affordable urban mobility.
The declaration also refers to discussions under the theme “Strengthening Cooperation to Promote Fair Competition, including in Renewable Energy Markets,” with the stated objective of supporting sustainable energy transitions.
The language, however, remains largely centred on recognising, encouraging and supporting cooperation rather than establishing binding commitments. This leaves the effectiveness of the initiatives dependent on how individual BRICS members translate the broad framework into national policies, investments and projects.
Overall, the New Delhi Declaration expands the scope of BRICS cooperation across solar PV, energy storage, smart grids, critical minerals, digitalisation and low-carbon technologies.
But its significance for the energy transition will ultimately depend less on the number of areas identified for cooperation and more on whether these commitments develop into defined programmes, funding mechanisms, implementation timelines and measurable outcomes.
We are India’s leading B2B media house, reporting full-time on solar energy, wind, battery storage, solar inverters, and electric vehicle (EV)
Quick Links
© 2025 Saur Energy. All Rights Reserved.

source

This entry was posted in Renewables. Bookmark the permalink.

Leave a Reply