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other forms of electrolysis, most notably CO2 and CO electrolysis, this position may also collaborate with those projects by taking the high pressure, elevated temperature setup built for water
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electricity generation, transmission and storage; clean fuels production transport and storage; CO2 capture, transport and storage; and associated supply chains. The work will focus initially on energy
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focus on the sub-seabed storage of CO2, this project explores the legal frameworks and governance structures necessary to manage risks and long-term environmental liability of carbon storage in the sub
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high-temperature and pressure energy systems (e.g., supercritical CO2 [sCO2]), experimentation or modeling of supercritical fluids, thermomechanical design, and/or experimentation or modeling of additively
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systems. Your daily operation is in the EFS research group of David Vermaas. The work of our group addresses electrochemical flow systems, including applications of electrolysis, water technology, CO2
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. The work of our group addresses electrochemical flow systems, including applications of electrolysis, water technology, CO2 capture and flow batteries. You will collaborate with other researchers in
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including CO2 and CH4. Responsibilities and qualifications Responsibilities: Engineer multiple enzyme properties using experimental and computational methods Set up high-throughput screening methods and
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including CO2 and CH4 . Responsibilities and qualifications Responsibilities: Engineer multiple enzyme properties using experimental and computational methods Set up high-throughput screening methods and
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scientific questions with real societal impact. Your job Dutch drained peatlands are a significant source of CO2 emissions, contributing an estimated 3 to 4% of the total emissions of the Netherlands
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application of magnetically enhanced electrocatalysis for water splitting and CO2 reduction (see e.g. https://doi.org/10.1038/s41560-019-0404-4). Your main tasks may include Application of new materials and