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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. From every 3.7

Carbon 366
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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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Researchers from Huazhong University of Science and Technology in China and George Washington University in the US report in a new paper in the ACS journal Accounts of Chemical Research that a range of important carbon nanomaterials can be produced at high yield by molten carbonate electrolysis. Source: Prof.

Carbon 376
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Researchers develop wave-energy-driven CO2 reduction system for production of carbon-based liquid fuels

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The system consists of three components: the spring-assisted spherical TENG; an energy storage circuit with rectifiers and a supercapacitor; and a two-electrode electrochemical cell for CO 2 RR and OER. This type of TENG is more cost-effective compared to conventional EMG-based wave energy converters. Leung et al.

Carbon 370
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Researchers demonstrate efficient electrochemical reduction of CO2 to C2+ alcohols

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In a paper published in the journal Joule , they suggest that the results show great potential for the electrocatalytic conversion of CO 2 into value-added chemicals. Electrochemical reduction of carbon dioxide (CO 2 ) is a promising approach to solve both renewable energy storage and carbon-neutral energy cycle.

CO2 434
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Estonian startup UP Catalyst secures €2.09M; sustainable carbon nanomaterials and graphite from CO2

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Estonian startup UP Catalyst, a company developing a method to produce sustainable carbon nanomaterials and graphite from CO 2 , has closed a successful pre-seed round of €500,000, in addition to €1.59 Most of the carbon materials on the market are produced by employing expensive and environmentally harmful methods.

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Osaka researchers find formate dehydrogenase reduces CO2 directly to formic acid

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student of the Graduate School of Science, have shown that the catalyst formate dehydrogenase reduces carbon dioxide directly to formic acid. The development of an effective catalyst is an important step in creating an artificial photosynthesis system that uses sunlight to convert carbon dioxide into organic molecules.

CO2 435
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Lufthansa, ETH Zürich, Climeworks & Synhelion to cooperate on Sustainable Aviation Fuels; CO2 capture & solar thermochemical conversion

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The integrated thermal energy storage enables continuous 24/7 fuel production. Climeworks, a company founded at ETH Zurich in 2009, is pursuing CO 2 air separation to provide the carbon required for fuel synthesis in a sustainable manner. The CO 2 collectors selectively capture carbon dioxide in a two-step process.

Solar 269