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Stanford team develops sodium-ion battery with performance equivalent to Li-ion, but at much lower cost

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Stanford researchers have developed a sodium-ion battery (SIB) that can store the same amount of energy as a state-of-the-art lithium ion, at substantially lower cost. The rise of renewable solar and wind power is demanding sustainable storage technologies using components that are inexpensive, Earth-abundant and environmental friendly.

Sodium 186
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Reliance buys Na-ion battery developer Faradion

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Reliance New Energy Solar Ltd, a wholly owned subsidiary of Reliance Industries Ltd, will acquire 100% shareholding in sodium-ion battery developer Faradion Limited ( earlier post ) for an enterprise value of £100 million (US$135 million). Sodium is the sixth-most abundant element on the planet. billion ($73.8

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DOE awards Cummins $5M for automation of electrolyzer cell and stack assembly

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Proton exchange membrane (PEM) electrolyzers use a solid polymer electrolyte, and alkaline electrolyzers use an electrolyte solution, such as potassium hydroxide or sodium hydroxide mixed with water. When any type of electrolyzer is powered by renewable energy sources, such as wind, solar or hydro, it produces “green” hydrogen.

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IBC demonstrates highly selective high-yield direct lithium extraction from Salar de Maricunga brine

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Exceptionally high selectivity for lithium over other ions present in the brine (including sodium, potassium, magnesium, calcium, and boron), meeting specifications for subsequent direct production of battery-grade lithium hydroxide monohydrate, without the need to first produce lithium carbonate. No pre-extraction steps are required.

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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Industry-Informed Physics-Based Monitoring for Asset Management and Maintenance Optimization, $500,000 Electric Power Research Institute, Palo Alto, Calif. National Renewable Energy Laboratory, Denver, Colo. National Renewable Energy Laboratory. Austin, Texas First Solar Inc., Groundwork Renewables Inc.,

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New MIT metal-mesh membrane could solve longstanding problems with liquid metal displacement batteries; inexpensive grid power storage

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A battery, based on electrodes made of sodium and nickel chloride and using thea new type of metal mesh membrane, could be used for grid-scale installations to make intermittent power sources such as wind and solar capable of delivering reliable baseload electricity. Al 2 O 3 membrane. Elliott Professor of Materials Chemistry.

MIT 150
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Aqua Metals is building a more sustainable battery recycling ecosystem

Charged EVs

Aqua Metals has pioneered a new electro-hydrometallurgy process that uses renewable electricity and recycles the chemicals used. Aqua Metals has a pilot line up and running, and is selling materials to customers in the metals industry. The two main processes for recycling lithium-ion batteries are pyrometallurgy and hydrometallurgy.