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electrokinetic in situ leaching (EK-ISL), where a solvent is introduced into the subsurface for the in situ leaching of a target metal, followed by its capture at a recipient electrode. If successful this approach
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International fees and Home fees. Visa and associated costs are not funded. International applicants can visit https://www.brookes.ac.uk/students/isat/ for further information Interviews: Tbc (online) Start date
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associations. The research will focus on beneficiation process design, including gravity separation, flotation using biodegradable reagents and nano-bubbles, as well as selective leaching to remove impurities
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on beneficiation process design, including gravity separation, flotation using biodegradable reagents and nano-bubbles, as well as selective leaching to remove impurities. At a later stage, the project will explore
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to perform field testing, leaching analysis, and ecological assessment of the developed materials in lab and field environments. Collaborate with project and industry partners, and contribute
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five doctoral students. https://www.timc.fr/ Activities Electropolymerise methylene blue/toluidine blue on electrodes and optimise experimental parameters (potentials, number of cycles, pH, matrices) Bio
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separation in relation to the environmental challenges of mining. • Investigate leaching and extraction mechanisms in these unconventional media (complexation, structuring, kinetics, thermodynamics). • Explore
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release and chemical leaching. Performing hazard and risk assessments based on experimental findings. Contributing to the development of an SSbD strategy in collaboration with a major European footwear