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Description Postdoctoral Researcher in Mineral Processing, Battery Materials, and Sustainable Process Engineering. The researcher will join a multidisciplinary research program aimed at optimizing natural
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sustainable and optimized processes for vanadium extraction and purification, with the goal of enabling large-scale redox flow battery deployment for energy storage. Scope of Work The successful candidate will
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to join our cutting-edge team, working on the development of advanced AI/ML algorithms for battery management systems (BMS) in electric mobility and micro mobility applications. The primary focus will be
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. Additionally, we are committed to advancing thermal energy storage technologies, all-solid-state batteries, green hydrogen and green ammonia production and storage methods. Through these activities, LIMSET plays
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trolley-assist systems, battery-electric trucks, and in-pit crushing & conveying (IPCC), combining life-cycle analysis, and dynamic simulation. This research is part of OCP’s Strategic Business Unit (SBU
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the performance of LFP batteries, with a particular emphasis on advanced material coating strategies. The project addresses the growing need to improve the surface properties and stability of LFP materials
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systems, capable of designing and deploying innovative IoT solutions for research projects such as air quality monitoring, water leak detection and energy monitoring of electric vehicle batteries
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alternatives—such as in-pit crushing & conveying, trolley-assist systems, and battery-electric trucks—in strip mining operations. This research is part of OCP’s Strategic Business Unit (SBU) Mining initiative
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. Sound background in Electrochemistry/Chemical & Mineral Processes/Chemistry Experience in the recovery of strategic metals and the development of fresh Lithium-ion Batteries & Supercapacitors Experience
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innovative and scalable synthesis process for Fluorine- and Phosphorus- based Cathode Materials Understanding of the electrochemical process upon electrochemical cycling on Lithium-ion Batteries