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Researchers propose new aluminum–sulfur battery with molten-salt electrolyte; low-cost, rechargeable, fire-resistant, recyclable

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An international team of researchers led by Quanguan Pang at Peking University and Donald Sadoway at MIT reports a bidirectional, rapidly charging aluminum–chalcogen battery operating with a molten-salt electrolyte composed of NaCl–KCl–AlCl 3. The battery requires no external heat source to maintain its operating temperature.

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Fukushima Hydrogen Energy Research Field (FH2R) completed in Japan; aiming for low-cost green hydrogen production; P2G

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Renewable energy output is subject to large fluctuations, so FH2R will adjust to supply and demand in the power grid in order to maximize utilization of this energy while establishing low-cost, Green hydrogen production technology.

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Efficient recovery of lithium from spent LiFePO4 batteries via air oxidation–water leaching at room temperature

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Researchers in China report using air oxidation–water leaching to recover lithium selectively from spent LiFePO 4 (LFP) material, in which the high leaching efficiency of lithium and the good separation effect of lithium and iron were achieved simultaneously. An open-access paper on their work is published in the RSC journal Green Chemistry.

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Lithium-ion battery recycler ABTC expands operations and capacity with newly purchased facility

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The demand for domestically produced and sustainably sourced battery metals has grown at a near insatiable rate over recent years, as the domestic manufacturing capacity of lithium-ion batteries has grown exponentially from less than 50 GWh/year to now more than 700 GWh/year of operational and announced capacity.

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DOE awarding $73.9M to 10 battery recycling projects

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million in funding for 10 projects to advance technologies and processes for electric vehicle (EV) battery recycling and reuse. Leveraged with recipient cost share, this funding will help to provide more than $126 million. Leveraged with recipient cost share, this funding will help to provide more than $126 million. 10,000,000.

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Stanford team reports new low-cost, non-precious metal catalyst for water splitting with performance close to platinum

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Researchers at Stanford University, with colleagues at Oak Ridge National Laboratory and other institutions, have developed a nickel-based electrocatalyst for low-cost water-splitting for hydrogen production with performance close to that of much more expensive commercial platinum electrocatalysts. Click to enlarge.

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ArcelorMittal makes US$5M investment in H2Pro to support novel new water-splitting technology E-TAC

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H2Pro is developing a new way of producing hydrogen from water. Similar to electrolysis, its technology, E-TAC (Electrochemical – Thermally Activated Chemical)—developed at Technion, Israel Institute of Technology—uses electricity to split water into hydrogen and oxygen. HHV) inside the reactors and a 95% system efficiency.

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