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electrolytes. Specifically, how the structure of the electrocatalysts and the surface chemistry of CO2 reduction evolves as a function of the nature and concentration of the contaminants in both aqueous
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. Empa is a research institution of the ETH Domain. With its " Mining the Atmosphere " research initiative, Empa aims at exploring novel options to remove CO2 from the atmosphere and convert it into useful
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colleagues at UCL, Southampton, Bristol, and Exeter. TONIC’s aim is to understand the link between atmospheric CO2 , global climate, and ice volume during the enigmatic Oligocene epoch, which spans 34-23
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monitoring technologies thereof (e.g. seismicity and gravity monitoring). For example, CO2-Plume Geothermal (co-invented by Prof. Saar), turns CCS into CCUS by extracting geothermal energy from the CO2 while
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on drone, thermocouples in peat, etc.), and greenhouse gas fluxes (chamber measurements of CO2, CH4 and N2O fluxes). Sites will be sampled over the course of several weeks prior to the burn and after
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) electrochemical CO2 conversion; (2) green hydrogen production; (3) redox-flow batteries; (4) power-to-chemicals and (5) electrochemical reactor engineering. The research group ELCAT in the Faculty of Applied
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on drone, thermocouples in peat, etc.), and greenhouse gas fluxes (chamber measurements of CO2, CH4 and N2O fluxes). Sites will be sampled over the course of several weeks prior to the burn and after
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of atmospheric CO2. In this project, we will develop an electrochemical green route to convert biomass into artificial sugars or sugar alcohols, as useful platform chemicals for biomanufacturing. Our research
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electrification. The research is largely covered by 5 key activities: (1) electrochemical CO2 conversion; (2) green hydrogen production; (3) batteries; (4) power-to-chemicals and (5) electrochemical reactor
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Climate change necessitates reducing CO2 emissions and the dependence on fossil fuels. A major driver of future global fossil fuel use is the production of chemicals and plastics. To reduce fossil fuel