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sources and its suitability for downstream conversion processes. The aim is to develop a pilot-scale CO₂ separation system capable of handling a range of input gas streams, including biogas, flue gas, and
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successful, it will contribute to environmentally responsible shutdown of oil & gas operations in the North Sea. As part of the project, you will develop as a researcher and deepen your technical skills
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experience with gas sampling and analysis. From the University of Copenhagen, Associate Professor Xenia Trier is participating, contributing with knowledge about PFAS substances and analytical capacity (gas
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in the process of planning, designing, and operating wind energy installations. This can be at the scale of individual turbines, wind farms, or even wind farm clusters spanning hundreds of kilometers
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continuous trickle bed reactor setup as well as supporting experiments on and advanced continuous slurry reactor setup. Characterization of gas phase and liquid phase products using a range of characterization
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. Quantifying circular economy strategies for wind turbine rotor blades, including reuse, recycling, and feedback loops. Assessing the climate mitigation potential of circular construction materials through data
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within forage evaluation, the effects of grazing on enteric methane emission, and modelling rumen nutrient metabolism - with a special focus on quantifying flows of H and C in the rumen using stabile
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have become omni-present in our daily life, and they are essential in the green transition as the main components in wind turbines and electric motors in e.g. electric cars. However, the strongest
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solid-state sorbents capture CO2 under various conditions—from flue gas at elevated temperatures to direct air capture. Thermally stable, versatile, and robust, our sorbents offer a low-cost, circular
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within forage evaluation, the effects of grazing on enteric methane emission, and modelling rumen nutrient metabolism - with a special focus on quantifying flows of H and C in the rumen using stabile