Thanks to recent cost reductions, Li-ion battery projects are becoming more economically viable, and increased tenders signal that Li-BESS will have rapid growth in India.
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Thanks to recent cost reductions, Li-ion battery projects are becoming more economically viable, and increased tenders signal that Li-BESS will have rapid growth in India.
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India''s demand for lithium-ion batteries (LiBs) is expected to surge to 115 gigawatt-hours (GWh) by 2030, driven by the explosive growth in electric vehicles (EVs), stationary storage systems
Image of batteries used for representational purposes only. File Photo | ANI NEW DELHI: India's lithium-ion battery (LiB) demand is expected to reach 115 gigawatt-hours (GWh) by 2030, driven primarily by electric vehicles (EVs), stationary storage, and consumer electronics.
Li-ion batteries are favored in the electrochemical storage market due to their high energy density, long lifespan, and stable performance. There are two main types: LFP batteries hold over 90% of the global storage market due to their high safety, thermal stability, and lower cost.
PSH and lithium-ion battery energy storage systems (Li-BESS) are the most prominent solutions in India. The industry is also exploring additional technologies to support this growth. 2024 marks a key year for Li-BESS in India, with installations expected to exceed 1 GWh and the first 100 MWh-scale battery project going into operation.
However, this capacity will require an estimated USD 5-11 billion worth of key battery-active materials, including lithium, cobalt, nickel, and manganese, which are predominantly imported due to a lack of domestic reserves. Consequently, recycling LiBs could provide a reliable domestic source of supply, the study suggests.
There are two main types: LFP batteries hold over 90% of the global storage market due to their high safety, thermal stability, and lower cost. With an energy density of 150-170 Wh/kg, LFP batteries are less dense than ternary lithium battery but are 20-30% cheaper and have a longer cycle life, making them suitable for long-term storage.
India's increasing demand for LiBs is expected to be supported by domestic cell manufacturing, driven by ambitious plans from cell manufacturers. Domestic cell manufacturing capacity is anticipated to reach approximately 220 GWh by 2030, thanks to the production-linked incentive (PLI) scheme for Advanced Chemistry Cell (ACC) Battery Storage.
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