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Researchers produce green syngas using CO2, water and sunlight

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Researchers from the University of Michigan and McGill University in Canada report photochemical syngas synthesis using a core/shell Au@Cr 2 O 3 dual cocatalyst in coordination with multistacked InGaN/GaN nanowires (NWs) with the sole inputs of CO 2 , water, and solar light. Image credit: Roksana Rashid, McGill University.

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Researchers create salts for cheap and efficient CO2 capture; mimicking methane hydrate

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Yavuz of King Abdullah University of Science and Technology (KAUST), Prof. Bo Liu from University of Science and Technology of China (USTC), and Prof. The research was carried out at Southern University of Science and Technology, University of Science and Technology of China, and King Abdullah University of Science and Technology.

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Osaka researchers find formate dehydrogenase reduces CO2 directly to formic acid

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Professor Yutaka Amao of the Osaka City University Artificial Photosynthesis Research Center and Ryohei Sato, a 1 st year Ph.D. © Research Center for Artificial Photosynthesis, Osaka City University.

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thyssenkrupp greenlights construction of €2B hydrogen-powered direct reduction plant for low-CO2 steel

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The feasibility, scalability and innovativeness of this concept were confirmed by scientists from RWTH Aachen University in a study commissioned by thyssenkrupp Steel at the beginning of 2021. In this way, thyssenkrupp is accelerating the start of low-CO2 steel production. With its capacity of 2.5

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New electrocatalyst converts CO2 into ethanol, acetone, and n-butanol with high efficiency

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A paper on the development is published in the journal Angewandte Chemie. Credit: Angewandte Chemie.

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First Supercritical CO2 Circuit Breaker Debuts

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Led by Lukas Graber , head of Georgia Techs plasma and dielectrics lab, the research group will run its 72-kV prototype AC breaker through a synthetic test circuit at the University of Wisconsin-Milwaukee beginning in late April. They group is also building a 245-kV version. locationa gold standard certification facility.

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Successful completion of Illinois Basin - Decatur CCS project; CO2 from ethanol plant

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ADM and the University of Illinois announced the successful completion of the Illinois Basin - Decatur Project (IBDP), a carbon capture and storage (CCS) project designed to evaluate and test the technology at commercial scale. This is one of two CCS projects located adjacent to ADM’s corn processing plant in Decatur, Illinois.

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