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, testing, and demonstration of novel CCUS technologies Process simulation, cost, life cycle, and social assessment of CCUS value chains Reactor design, optimization, and sizing using phenomenological and/or
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characterization of porous functional materials such as MOFs and MOF composites as well as the fabrication of different nanoparticles Able to examine the textural and structural changes of porous material catalysts
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operate lab-scale BMED setups, including multi-compartment electrochemical cells. Test and characterize membranes: transport properties and selectivity. Monitor and analyze system performance: current
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solutions to address technical challenges. Field Work and Testing: Monitor material aging and performance at external sites (travel required). Perform on-site measurements and provide detailed reports
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include laboratory investigations, prototyping, field testing, and performance analysis of water harvesting systems across various climatic contexts. In line with E4W’s mission, the postdoctoral researchers
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of the following competencies. Experimental development, testing, and demonstration of novel CCUS technologies. Process simulation, cost, life cycle, and social assessment of CCUS value chains. Reactor
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of its reuse, particularly regarding soil salinity and contamination of water resources. The researcher will collaborate with multidisciplinary teams, take part in testing campaigns (in the lab or in
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to characterize materials in the laboratory. Develop innovative solutions to address technical challenges. Field Work and Testing: Monitor material aging and performance at external sites (travel required). Perform
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team who are working on a project funded by OCP Group. The successful postdoctoral applicant will manage an exciting project on membrane processes technology and small-scale testing for seawater
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health, public health in Africa. On the continent, chronic diseases are becoming a major concern. The research will document this development and examine what measures are being taken to remedy