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for climate-positive and CO2-negative processes. What you will do Optimization of the pilot plant for the combustion of solid fuels (biomass, waste) with oxygen and subsequent CO2 capture Development of models
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Your Job: Analysis of possible applications of CO2 capture and CO2 utilization in the energy system requires detailed techno-economic modelling of these technologies. A major focus of this doctoral
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system in Germany and Europe and analyze the role of CO2 infrastructures in the design of energy infrastructures. Based on the findings of a related doctoral thesis, options for CO2 capture and utilization
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Your Job: Operando investigations of the dimethyl ether/CO2 system for the hydrogen storage cycle Development of appropriate measurement set-ups with focus on X-ray methods X-ray investigations
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CO2 electrolyzers as well as in fuel cells. The aim is to make a significant contribution to the development of electrochemical energy conversion as a future key player in electromobility and energy
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 18 days ago
grow on H2 and CO2 at the edge of the thermodynamic limit. These archaea depend on a set of unique enzymes to catalyse the reactions in the reductive acetyl-CoA pathway. Notably, among these enzymes is
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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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) for the project: Bioengineering of a promiscuous methanogen hydrogenase for synthesizing renewable organics Project description Hydrogenotrophic methanogens grow on H2 and CO2 at the edge of the thermodynamic
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these into marketable products and processes. The EU-funded “Eastern Lights” project will drive risk mitigation in large-scale carbon capture and storage (CCUS) in Eastern Europe. CO2 transport and underground storage
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laboratory to industrial scale. Our research plays an integral role in several technological advancements of hydrogen fuel cells, water and CO2 electrolyzers. Our goal is to transfer this knowledge