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Making battery energy storage an integral part of ‘Net-Zero’ – ET Auto

Baua Electric

As the global hunger for renewable energy (RE) increases, battery energy storage ( BES ) systems are expected to become omnipresent. In the Indian context, the country’s commitment to ‘ net-zero ’ is evident through its ambitious targets of achieving 500 GW of clean energy installation capacity by 2030.

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RAL proposes new efficient and low-cost process to crack ammonia for hydrogen using sodium amide; transportation applications

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RAL researchers are proposing a new process for the decomposition of ammonia to release hydrogen that involves the stoichiometric decomposition and formation of sodium amide from Na metal. Indeed, high-density, affordable, and efficient hydrogen storage is one of the key steps in the realization of a hydrogen-based energy sector.

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Researchers call for integration of materials sustainability into battery research; the need for in situ monitoring

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In a review paper in the journal Nature Materials , Jean-Marie Tarascon (Professor at College de France and Director of RS2E, French Network on Electrochemical Energy Storage) and Clare Gray (Professor at the University of Cambridge), call for integrating the sustainability of battery materials into the R&D efforts to improve rechargeable batteries.

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European automotive and automotive battery industries call for extension of the exemption of lead-based batteries from the EU ELV Directive

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The study also concludes that lead-based batteries will remain the only viable mass market energy storage system in automotive applications for the foreseeable future. In full-hybrid vehicles, the stored energy is also used for a certain range of electric driving.

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MIT and Moscow State collaborating on advanced batteries, metal-air batteries and reversible fuel/electrolysis cells

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Researchers at the Skoltech Center for Electrochemical Energy Storage (CEES), a partnership between the MIT Materials Processing Center and Lomonosov Moscow State University, are focusing on the development of higher capacity batteries. Craig Carter, with their associates, published a study in Advanced Energy Materials (Li et al.

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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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The projects selected are grouped into 10 areas: Energy Storage (6 projects). Biomass Energy (5 projects). Conventional Energy (1 project). ENERGY STORAGE. Electronville: High-Amperage Energy Storage Device-Energy Storage for the Neighborhood. Carbon Capture (5 projects).

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