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UVA researchers devise method for converting retired Li-ion anodes to graphene and GO

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Researchers at the University of Virginia (UVA) have devised a process for converting retired Li-ion battery anodes to graphene and graphene oxide (GO). So far, only 1% of end-of-life Li-ion batteries have been recycled. The findings present a new promise for smartly recycling Li-ion batteries.

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Lithium Australia produces LFP cathode material and Li-ion batteries from mine waste

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Lithium Australia NL reported that its wholly owned subsidiary VSPC Ltd has successfully produced Li-ion battery cathode material, and Li-ion batteries (LIBs), from tri-lithium phosphate produced directly from mine waste using the SiLeach process. LFP and batteries from waste.

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North America just got its first recycled Li-ion battery materials plant

Baua Electric

Photo: Green Li-ion Green Li-ion has launched North America’s first commercial-scale plant to process unsorted battery waste, or “black mass,” from used lithium-ion batteries. Green Li-ion says its process significantly reduces production time, yielding pCAM in around 12 hours.

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Researchers propose mechanochemistry-based process to recover metals from waste cathode materials; green and efficient

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A team from Central South University, Changsha, China and Shaanxi University of Science & Technology, Xi’an, China, has proposed a mechanochemistry-based process to recover metals from waste cathode materials of LiCoO 2 (LCO) and LiFePO 4 (LFP) in spent Li-ion batteries (LIBs). —Jiang et al.

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RecycLiCo Battery Materials and Zenith Chemical announce US$25M Li-ion battery recycling JV in Taiwan

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The initial plant, estimated to cost US$25 million, will be dedicated to processing and converting lithium-ion battery waste into resources such as lithium-ion battery precursor cathode active material, lithium hydroxide monohydrate, and lithium carbonate.

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SK Innovation expects to produce 500 GWh of batteries in 2030

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At the “SK Innovation Story Day” briefing session in Seoul last week, Dong-Seob Jee, President of SK Innovation’s Battery Business, said from its current 40 GWh battery production level, the company expects to reach 85 GWh in 2023, 200 GWh in 2025 and more than 500 GWh in 2030. trillion won (US$2.2 billion) in 2025, he said.

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ORNL-led team uses carbon material derived from tire waste to convert used cooking oil to biofuel

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Using a novel, reusable carbon material derived from old rubber tires, an Oak Ridge National Laboratory (ORNL)-led research team has developed a simple method to convert used cooking oil into biofuel. The patent-pending, waste oil-to-biofuel conversion adds a new approach to waste tire recycling initiatives. Resources.

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