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Carbon Recycling International and Johnson Matthey collaborate on sustainable methanol

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Carbon Recycling International (CRI) and Johnson Matthey (JM) have agreed on a long-term exclusive catalyst supply agreement for the use of JM’s KATALCO methanol catalysts in CRI’s Emissions-To-Liquids (ETL) CO 2 -to-methanol plants. Hydrogen can also be processed from by-product hydrogen available in some industrial waste streams.

Carbon 259
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Researchers develop highly efficient organometal halide perovskite photoelectrodes for water splitting

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Photoelectrochemical (PEC) water splitting based on solar energy is one promising approach for the production of green hydrogen. However, its widespread application is limited by a lack of efficient photoanodes for catalyzing the rate-limiting oxygen evolution reaction (OER), an important reaction in PEC water splitting. 202300951

Water 369
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Study finds the wettability of porous electrode surfaces is key to making efficient water-splitting or carbon-capturing systems

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As water-splitting technologies improve, often using porous electrode materials to provide greater surface areas for electrochemical reactions, their efficiency is often limited by the formation of bubbles that can block or clog the reactive surfaces. As a result, there were substantial changes of the transport overpotential.

Water 418
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Baker Hughes acquires exclusive license from SRI International for mixed salt process technology for carbon capture

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Baker Hughes has entered into a global exclusive licensing agreement with SRI International to use SRI’s innovative Mixed-Salt Process (MSP) for CO 2 capture. The MSP combines readily available potassium and ammonia (NH 3 ) salt solutions to enable reduced reboiler and auxiliary electric loads, emissions, and water usage.

Carbon 221
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Ethanol-fueled solid oxide fuel cells with HEA internal reforming catalyst for transportation applications

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Researchers from Lawrence Berkeley National Laboratory and the University of Connecticut have demonstrated high-performance metal-supported solid oxide fuel cells (MS-SOFC) with an integrated high entropy alloy (HEA) internal reforming catalyst (IRC) for transportation applications using ethanol and methanol as fuels.

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Berkeley researchers propose salted biomass as scalable, economical and stable carbon capture and storage solution

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Researchers from the University of California, Berkeley, are proposing burying salted biomass in a dry environment within an engineered biolandfill as a solution to sequester carbon that has been photosynthetically fixed by cultivated plants. This is measured by “water activity,” a quantity similar to relative humidity. In 1 y, PNAS.

Carbon 259
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LBNL, Nissan researchers explore ethanol internal reforming in SOFCs for vehicle applications

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Researchers from Lawrence Berkeley National Laboratory (LBNL) and Nissan Research Center report on their investigation of the internal reforming of ethanol fuel on high-performance metal-supported solid-oxide fuel cells (MS-SOFCs) with infiltrated catalysts in a paper in the Journal of Power Sources. Dogdibegovic et al. Earlier post.)