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, Fisher-Tropsh, etc. CO2 capture methods CO2 utilization & conversion to high-value chemicals (e.g., electro/photo chemical CO2 reduction, catalytic chemical conversion, biological, etc.) CO2 mineralization
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synthesis will involve wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science, Materials Chemistry, Inorganic
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. Experience with data prediction and classification techniques. Computer Skills: Good proficiency with optimization tools (CPLEX, SAP). Experience with data analysis software. Soft Skills: Analytical mindset
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biomass valorization Experience in submission of proposals and contact with funding organizations. Publish the results in peer-reviewed journals. Supervise Master and PhD students. Education PhD in
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from a recognized university. The candidate should demonstrate that their PhD work and past experience allow them to have a connection to one or several aspects of the areas of research mentioned above
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related to the characterization of odors sources and the associated chemicals. Candidate Profile: PhD in Environmental Science, Chemistry, Atmospheric Science, or related fields. Experience with air
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Engineering stream. The candidate will also be expected to participate in UM6P's collective projects and external missions, and to provide support to students (PhD and Master), i.e., supervision for the writing
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ecosystem. Support, where applicable, the development of funding proposals, grant applications, and stakeholder engagement materials to sustain and expand research activities. Candidate Profile: PhD in
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Li-ion cathode materials using solid-state synthesis, sol-gel, co-precipitation, and hydrothermal methods. Structural and Chemical Characterization using: X-ray Powder Diffraction (XRD) and Rietveld
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Na-ion cathode materials using solid-state synthesis, sol-gel, co-precipitation, and hydrothermal methods. Structural and Chemical Characterization using: X-ray Powder Diffraction (XRD) and Rietveld