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Cornell study examines trade-off between critical metals requirement and transportation decarbonization

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b) Region-specific/vehicle-specific/battery-specific cumulative (from 2010 to 2050) demand for critical metals and the cumulative potential secondary production from recycling. (c) c) Sensitivity of cumulative requirement under different battery scenarios. Recycling w/2nd” denotes retired batteries reused as ESSs before recycling.

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Study sees gradual, focused replacement of lead-acid SLI batteries by Li-ion batteries over next couple of years

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A study by a team of researchers from Germany and South Africa forsees the gradual replacement of lead-acid SLI (starter, lighting and ignition) batteries with Li-ion batteries over the next couple of years. That will see an uptake of more hybrid-, plug-in hybrids and BEVs in the EU.

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BNEF: producing battery materials in the DRC could lower supply-chain emissions and add value to the country’s cobalt

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The Democratic Republic of the Congo (DRC) can leverage its abundant cobalt resources and hydroelectric power to become a low-cost and low-emissions producer of lithium-ion battery cathode precursor materials, according to a new study on a unified African supply chain by BloombergNEF (BNEF). —James Frith, head of energy storage at BNEF.

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Bank of America: Oil Demand Growth to Hit Zero Within a Decade, EVs the Culprit

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I fully anticipate we’re going to keep a lot of pressure on that cobalt production,” Ted Miller, head of energy storage strategy and research at Ford, said at a mining event in South Africa. Today it looks feasible but it’s a scenario we’re going to have to watch.”.

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We Need More Than Just Electric Vehicles

Cars That Think

Scientists and engineers have extended the range of EVs by cramming ever more energy into their batteries, and vehicle charging networks have expanded in many countries. For EVs, much of the environmental burden centers on the production of batteries, the most energy- and resource-intensive component of the vehicle.