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bioprocesses for the bioleaching and biorecovery of rare earth elements (REEs) from secondary sources. The successful candidate will investigate the bioleaching capabilities of pre-selected microorganisms and
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applied to the phosphate industry. Key Responsibilities 1. Analysis and Monitoring of Radionuclides and Heavy Metals: o Develop and implement nuclear analysis methods to characterize phosphate ores
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will use finite volumes methods combined with physics-informed neural networks (PINNs) which offer a flexible technique that merges data-driven approaches with the underlying physics principles, enabling
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to improve efficiency and economic feasibility. Exploring novel material recovery methods to enhance metal extraction and reusability. Optimizing existing recycling processes to reduce energy consumption and
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. Analyze maintenance and process data for root cause analysis. Develop testing methods adapted to each studied component and working conditions for characterization and classification purposes. Perform
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. The CoreLab is launching an Electron Probe Microanalysis (EPMA) facility, devoted to non-destructive elemental micro-analysis of very small volumes of solid materials. The UM6P Electron Microprobe is the first
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composite materials, derived from inorganic by-products and other sustainable precursors, is available at CBS.GPE. This position involves the design, synthesis, and characterization of metal-organic
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Li-ion cathode materials using solid-state synthesis, sol-gel, co-precipitation, and hydrothermal methods. Structural and Chemical Characterization using: X-ray Powder Diffraction (XRD) and Rietveld
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Na-ion cathode materials using solid-state synthesis, sol-gel, co-precipitation, and hydrothermal methods. Structural and Chemical Characterization using: X-ray Powder Diffraction (XRD) and Rietveld
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, and C, N, P, and other elements biogeochemical cycling within the critical zone. The successful candidate must understand the roles of water and atmospheric physics and chemistry in forming soils and