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Your Job: In order to reduce anthropogenic CO2 emissions, efficient methods for separating CO2 from point sources are needed. Pressure and temperature swing adsorption processes are currently
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. The cement industry, which alone accounts for around 5% of global CO2 emissions, is undergoing a profound transformation in line with the industry's decarbonization requirements. Low-carbon cements are based
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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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the Rothera timeseries (https://www.bas.ac.uk/project/rats/ ) forwards. You will explore the effects of variable sea ice and of a shift to a long-term low sea ice regime on ocean CO2 uptake for Rothera, using a
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selectivity performances of the corresponding membranes for CO2/CH4, C3H6/C3H8 separation as well as water desalination. More specifically, we will implement a non-equilibrium MD simulation scheme to perform
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information on the CO2 Research Center, please visit https://corc.au.dk For the position, you will use your expertise in biotech or chemical engineering to study how methanogens can be used for conversion
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the ocean to draw down and store atmospheric CO2 as stable bicarbonate. However, quantifying the efficiency and permanence of this storage remains a key challenge, due to complex and unresolved ocean
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You will be responsible for conducting research under the supervision of Profs Dixon and Nixon to engineer the microbial communities from hot springs that successfully grow on CO2 and H2. You will
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BBSRC Yorkshire Bioscience DLA Programme:Rewiring photosynthesis to improve CO2 fixation using synthetic biology School of Biosciences PhD Research Project Competition Funded Students Worldwide Prof
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CO2 captu Apply for this job See advertisement This is NTNU NTNU is a broad-based university with a technical-scientific profile and a focus in professional education. The university is located in three