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performance fillers in coatings and plasters. This PhD will focus on improving CO2 capture efficiency through the use of a novel type of chemicals and converting CO2 to functional carbonates
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We are looking for a highly motivated postdoctoral research associate to develop the next-generation electrochemical technologies for direct ocean capture of CO2. Developing methods for CO2 removal
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. We work on valorization of side streams boths from industry and agriculture for example producing textile fibers from grass and develop resource- and energy-efficient processes for example for CO2
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– Development of a Poly(ionic liquid) based aerogels technology for CO2 upcycling, (ref. 2023.18010. ICDT), funded by the Foundation for Science and Technology, I.P. /MCTES through national funds (PIDDAC), under
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aerogels technology for CO2 upcycling, (ref. 2023.18010. ICDT), funded by the Foundation for Science and Technology, I.P. /MCTES through national funds (PIDDAC), under the following conditions: Work Plan
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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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. (d) Heterogeneous catalysis, e.g. electrolyzers for CO2 reduction. (e) CO2 capture with waste, e.g. carbonation using ashes Work synergistically with PI and Co-PIs in experimental designs, conducting
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vapour and CO2, between the interior of the leaf and the atmosphere (Jezek and Blatt, 2017). Stomatal behaviours, including movement, density and patterning impacts plant productivity against water use
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, CO2 capture, and related fields. Experience with bioprocess optimization, gas-liquid fermentation, Knowledge about the multispecies interaction withing consortium and genome scale metabolic modelling
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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