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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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candidate will be expected to: Design and implement advanced decision-making model for mining activity planning, considering field constraints and performance objectives. Propose mechanisms for dynamically
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, FactSage) to simulate vanadium phase behavior and guide process improvements. Performing advanced characterization of vanadium-bearing materials to understand their transformation and recovery mechanisms
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processes. This project focuses on utilizing computational techniques to understand and enhance the performance of catalysts in reactions such as hydrogenation, oxidation, and biomass conversion. We
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, liquid formulations, and their applications. Design and develop formulations based on specific requirements, such as sustainability, performance, stability, and cost-effectiveness. Perform chemical
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systems, focusing on water management, nutrient release, and pollutant retention. Conduct greenhouse and/or field trials to evaluate agronomic performance and environmental benefits. Prepare scientific
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research and industrial-scale implementation, working on the design of novel cathode compositions, understanding degradation mechanisms, and improving electrochemical performance. The postdoc will work with
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research and industrial-scale implementation, working on the development of novel cathode compositions, understanding degradation mechanisms, and improving electrochemical performance. The postdoc will work
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collection and scenario development. Techno-Economic & Environmental Assessment Model life-cycle costs and greenhouse-gas emissions for IPCC, trolley-assist, battery-electric trucks, etc. Perform sensitivity
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required. This position is aimed at a meticulous and innovative profile, capable of balancing logistical performance with environmental commitment.