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of the SUSPLASM project is to design and develop innovative, sustainable, fully electrified, green advanced thermal plasma-based gasification with zero or even negative CO2 footprint for the treatment
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explore include, not limited to: Pyrolysis, gasification, hydrothermal carbonation, hydrothermal liquefaction, Fisher-Tropsh, etc. CO2 capture methods (Chemical and calcium looping, absorption, adsorption
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. Biotechnol. . DUTIES The postdoc will apply synthetic biology tools for engineering acetogen cell factories for producing novel chemicals from both synthetic and waste gasification-derived syngas mixtures
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researchers will work on include: Pyrolysis, gasification, hydrothermal carbonation, hydrothermal liquefaction, Fisher-Tropsh, etc. CO2 capture methods CO2 utilization & conversion to high-value chemicals (e.g
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of Aveiro. 5. Work Plan: The work plan to be developed during the scholarship is within the scope of the project tasks, including: a) Literature review of the co-combustion/co-gasification process for energy