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New system for more efficient CO2 electrolysis to hydrocarbon products

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The researchers combined a copper electrocatalyst with an ionomer [polymers that conduct ions and water] assembly that intersperses sulfonate-lined paths for the H 2 O with fluorocarbon channels for the CO 2. 2020) “CO2 electrolysis to multicarbon products at activities greater than 1 A cm -2.” García de Arquer et al.

CO2 414
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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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Researchers at the University of Cambridge, with colleagues at the University of Tokyo, have developed a standalone device that converts sunlight, carbon dioxide and water into formic acid, a carbon-neutral fuel, without requiring any additional components or electricity. —senior author Professor Erwin Reisner.

Water 418
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PNNL team develops new low-cost method to convert captured CO2 to methane

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By using a water-lean post-combustion capture solvent, (N-(2-ethoxyethyl)-3-morpholinopropan-1-amine) (2-EEMPA), they achieved a greater than 90% conversion of captured CO 2 to hydrocarbons—mostly methane—in the presence of a heterogenous Ru catalyst under relatively mild reaction conditions (170 °C and 2 pressure). Heldebrant, D.,

Low Cost 315
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Innovative water treatment at Audi Ingolstadt saves up to 500,000 cubic meters of fresh water a year; heading to ZLD

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Audi has put a new service-water supply center into operation at the Ingolstadt site. In this way, Audi will saves up to 500,000 cubic meters of fresh water each year. The heart of the service-water supply center is a membrane bioreactor (MBR). The heart of the service-water supply center is a membrane bioreactor (MBR).

Water 246
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Researchers tailor catalyst microenvironments to enhance CO2 electroreduction to multicarbon products

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However, to be commercially viable, the process needs to be improved to yield a higher amount of desirable carbon-rich products. Although we know copper is the best catalyst for this reaction, it doesn’t give high selectivity to the desired products. earlier post ). Credit: Berkeley Lab). —Alexis Bell.

CO2 221
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8 Rivers announces 8RH2 CO2 Convective Reformer for ultra-low carbon hydrogen production from natural gas

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8 Rivers Capital announced the development of the 8RH2 CO 2 Convective Reformer—a technology for the production of ultra-low carbon hydrogen from natural gas. The only by-products are liquid water and a stream of high-purity, pipeline-ready CO 2. Clean Power: transformative zero-emissions power cycles.

Hydrogen 170
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Oxford team directly converts CO2 to jet fuel using iron-based catalysts

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Jet fuel can then be obtained from the products after industrially recognized treatments such as distillation or hydro-isomerization. In addition, the process also shows a high molar production ratio of olefin-to-paraffin for C 2 –C 4 hydrocarbons. The final product is usually a crystallized material. —Yao et al.

Convert 505