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UP Catalyst CO2-derived carbon nanotube electrode material boosts cycle life in Na-ion batteries

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Tests conducted by Titirici Group , a multidisciplinary research team based at Imperial College London, have found that a novel carbon nanotube electrode material derived from CO 2 —produced by Estonian nanotech company UP Catalyst ( earlier post )—enhances the cyclability of sodium-ion batteries.

Carbon 366
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Roskill forecasts Li-ion battery demand to increase more than ten-fold by 2029 to >1,800GWh

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Roskill forecasts that Li-ion battery demand will increase more than ten-fold by 2029, reaching in excess of 1,800GWh capacity. In the late 2020s, Li-ion technologies could see increasing competition from other battery technologies, though Li-ion cells are expected to maintain their dominant position, Roskill said.

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Univ. of Surrey researchers to develop Li-CO2 battery technology

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Researchers at the University of Surrey (UK) are to begin work on a new lithium-ion battery technology that is capable of capturing CO 2 emissions, following a £243,689 award from the Engineering and Physical Sciences Research Council (EPSRC). However, the development of Li-CO 2 batteries is still in its infancy stage.

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BASF and Nanotech Energy partner to produce Li-ion batteries in N America with locally recycled content and low CO2 footprint

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BASF and Nanotech Energy , a developer and manufacturer of graphene-based energy storage products, have agreed to partner to reduce the CO 2 footprint of Nanotech’s lithium-ion batteries for the North American market.

Low CO2 170
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Log9 Materials and Zeta Energy partner for advanced battery systems – ET Auto

Baua Electric

Given India’s dependence on 100% imported lithium-ion cells for electric vehicle batteries, there exists a compelling drive to cultivate indigenous cell and battery manufacturing capacities to meet the burgeoning demands. The partnership offers significant benefits for both companies.

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Molten carbonate electrolysis can produce a range of carbon nanomaterials, including graphene, from CO2 at high yield

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Graphene has a high surface area, high thermal and electrical conductivity, strength, surface tailorability, and high charge carrier conductivity that makes it uniquely suitable for energy storage and electronics. Source: Prof. 2019.11.019. doi: 10.1021/acs.accounts.9b00405. 9b00405.

Carbon 376
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BASF and bse Engineering sign development agreement to transform CO2 and renewable electricity into methanol; power-to-methanol

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BASF and bse Engineering have signed an exclusive joint development agreement for BASF to provide custom-made catalysts for a new chemical energy storage process. In addition to being used as a fuel or chemical feedstock, methanol, the simplest alcohol, can serve as long-term chemical energy storage. kWh battery.

Renewable 170