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Researchers demonstrate efficient electrochemical reduction of CO2 to C2+ alcohols

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Researchers in China led by a team from Fudan University have demonstrated the electrochemical reduction of CO 2 toward C 2+ alcohols with a faradaic efficiency of ~70% using copper (Cu) catalysts with stepped sites. Schematic of the synthesis of electrocatalysts and the subsequent CO 2 RR process. (A

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

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The pre-seed round was led by Sunly, a developer of wind and solar parks in the Baltics and Poland, and joined by Scottish Baltic Invest, an investment company linked to Interconnect Product Assembly (IPA), which specializes in the production of electro-mechanical solutions; and Little Green Fund that focuses on investments in cleantech innovation.

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Toyota and public and private partners in Japan to trial renewable CO2-free hydrogen supply chain

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Major corporate and public sector partners in Japan are launching an effort to test a full carbon-neutral hydrogen supply chain powered by renewable wind energy. In addition, the project will be supported by Japan’s Ministry of the Environment. Emeritus, Yokohama National University) and Dr. Yoji Uchiyama (Prof.

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New highly selective and efficient catalyst for reduction of CO2 to CO

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Researchers at the University of Delaware have developed a highly selective nanoporous silver catalyst capable of electrochemically reducing carbon dioxide to carbon monoxide with 92% efficiency. Additionally, because it is inorganic, silver remains more stable under harsh catalytic environments.

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Measurements of CO2 and CO in China’s Air Indicate Sharply Improved Combustion Efficiency

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A team of atmospheric scientists and environmental engineers from Harvard University and Tsinghua University in Beijing have continuously measured atmospheric CO 2 and carbon monoxide (CO) levels in rural Miyun, about 100 km northeast of Beijing, since November 2004. She completed her Ph.D. Munger, J. McElroy, M. Nielsen, C.

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

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Purdue University, West Lafayette, Ind. Advanced Flow Meter for Extreme Environments (AFMEE), $100,000 MicroNuclear LLC, Franklin, Tenn. Novel thermal process for conversion of CO2 to CO using metal ferrite oxygen carriers, $150,000 CanmetENERGY, Ottawa, Canada Glowink Inc., Combustion Research & Flow Technology Inc.,

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DOE announces $11.5M in Phase 1 funding for carbon capture and storage program; ARPA-E FLECCS

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FLECCS project teams will work to develop carbon capture and storage (CCS) processes that better enable technologies, such as natural gas power generators, to be responsive to grid conditions in a high variable renewable energy (VRE) penetration environment. Colorado State University. University of Pittsburgh.

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