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mining waste deposits (MATs). This project integrates mineralogical and mechanical characterization, pilot-scale testing, and advanced process simulation, with the objective of optimizing grinding
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samir.elhankari@um6p.ma The project requires the following skills : Familiar with catalytic tests for energy applications (water splitting, CO2 conversion, water splitting…) Able to monitor the obtained products
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of electrochemistry, membrane science, and environmental engineering. Main Responsibilities Design and operate lab-scale BMED setups, including multi-compartment electrochemical cells. Test and characterize membranes
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phosphate. Familiarity with principles of green chemistry and renewable resources. Ability to design and carry out flotation tests, including reagent optimization. Strong analytical and problem-solving skills
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techniques. Experience with sodium-ion battery full-cell fabrication and testing. Understanding of surface/interface engineering for cathode materials. Prior experience in co-supervision and mentoring of PhD
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with lithium-ion battery full-cell fabrication and testing. Understanding of surface/interface engineering for cathode materials. Prior experience in co-supervision and mentoring of PhD/Master’s students
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testing, and advanced process simulation, with the objective of optimizing grinding performance and enhancing resource recovery. The ideal candidate will have a strong background in mineral processing
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with the fabrication and 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
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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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minerals such as silicates and carbonates. 2. Main tasks The selected candidate will work on: Process-mineralogical characterization of the feed, concentrate, and flotation tailings. Testing