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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | about 2 months ago
to increasing CO2, and on warm and cold climatic states. contribute to the development of improved process representations for next-generation Earth System Models and future CMIP simulations. Your Profile A PhD
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knowledge and practical experience in multi-step organic and inorganic synthesis, particularly with air-sensitive compounds and reactions. Where to apply Website https://app.recruitis.io/answer/form
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aujourd'hui à plus de 95 % sur le gaz naturel (« hydrogène gris »), émettant environ 9 à 10 kg de CO2 par kg d'H2. En parallèle, plus de 27 Mt de déchets plastiques sont générés chaque année en Europe, encore
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can push the limits of conventional heat exchanger technology.In the second part of the PhD research, the candidate will contribute to the HEATCAP project (https://www.moonshotflanders.be/en/projects
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description How will you electrify our future CO2 conversion
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of the most common, manufacturable, low CO2 emitting and low-cost polymers, polypropylene (PP) to make a very competitive (strong and light weight) new material. The work will span across organic and
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Approach to Improve Light-harvesting and CO2 Fixation for High Performance Sustainable Solar Fuel Production", GA 101172946 of CICECO - Aveiro Institute of Materials, under the following conditions: 1
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reliably assess fatigue damage and predict remaining lifetime, enabling proactive maintenance strategies that extend service life and reduce CO2 emissions. Through this PhD scholarship, you will contribute
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Previous practical or modelling experience applied to intensified reactors/bioreactors for e.g. photobioreactors for microalgae or CO2 storage or nutritional food; photocatalytic reactors for breaking down
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photocathodes for long-term hydrogen production, thermoelectric modules for solar waste heat harvesting, or perovskite-silicon devices for light-driven chemical synthesis. For more details, please view https