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ANL estimates US energy savings due to light-duty PEV use at 44.8T Btu in 2019, up 47% from 2018

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In a recent report assessing multiple properties of plug-ion electric vehicles (PEVs) solid in the US, a team from Argonne National Laboratory (ANL) estimates that the energy savings in the United States due to light-duty PEVs in 2019 was 44.8 Gasoline conversion to Btu using gross heating value 125,000 Btu/gallon.

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Nissan unveils prototype production facility for all-solid-state batteries

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Nissan believes all-solid-state batteries can be reduced to $75 per kWh in fiscal 2028 and to $65 per kWh thereafter, placing EVs at the same cost level as gasoline-powered vehicles. All-solid-state batteries are expected to be a game-changing technology for accelerating the popularity of electric vehicles.

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Meta Materials acquires assets and IP of Optodot; battery separators and coating technology

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META will strengthen its proprietary portfolio of battery materials with NPORE nano-composite ceramic separators to enhance safety, performance, and cost in electric vehicles. The race to electrification and a new world in which electricity replaces gasoline and diesel is just getting started. Separator shipments were about 5.5

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Argonne report on characteristics of light-duty plug-in electric vehicles in US

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A new report from a team at Argonne National Laboratory examines the changing characteristics for light-duty plug-in electric vehicles (PEVs) from 2010-2021, evaluating range, energy efficiency, costs, and performance. terawatt-hours of electricity to drive 19.1 billion miles, offsetting 700 million gallons of gasoline.

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Benchmark: lithium has to scale twenty times by 2050; generational challenge for automakers

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The world will need more than twenty times the amount of lithium than was mined last year to meet demand by mid-century, driven by growth in energy storage and electric vehicles, according to new analysis from Benchmark Mineral Intelligence. Annual production of 11.2 —Simon Moore. —Simon Moore.

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Researchers develop energy-efficient process to recycle Li-ion battery cathodes

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Engineers at the University of California San Diego and the University of California Los Angeles have developed an energy-efficient approach to regenerate Li-ion battery cathode materials (using LiCoO 2 as a model material) by hydrothermal treatment of cycled electrode particles followed by short annealing.

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DRX Consortium to accelerate commercialization of disordered rock salt (DRX) cathode materials

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DRX cathodes could provide batteries with higher energy density than conventional lithium-ion battery cathodes made of nickel and cobalt, two metals that are in critically short supply. In a rock salt structure, cations (positively charged ions) and anions (negatively charged ions) are arranged in a specific pattern.