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of gallium, graphite and rare earth elements from brine and minerals. Conduct research in benchmarking newly developed critical material separation processes relative to the current state of the art. Research
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for this candidate are between two larger efforts in the laboratory. The first effort is in identification of cost-effective technologies (both emerging and at industrial scale) for critical minerals recycling from
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and functionalized sorbents for the selective extraction and recovery of gallium (Ga), germanium (Ge), and other critical minerals from complex zinc-processing feedstocks. The successful candidate will
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traits, plant-microbe-soil interactions, physical and chemical soil properties, and organo-mineral associations. This candidate will directly support the Exploring Gulf Region Ecosystem Transitions (EGRET
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manufacturing research portfolio. The position supports technologies funded by the Department of Energy's (DOE's) Office of Critical Minerals and Energy Innovation (CMEI) Advanced Materials and Manufacturing
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topologies with reduced critical mineral dependence, emphasizing sustainable, high-performance, and rare-earth-free motor technologies for next-generation hybrid-electric transportation systems. The Electric
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), Office of Cybersecurity, Energy Security and Emergency Response (CESER), and Critical Minerals and Energy Innovation (CMEI) on the integration of new technologies, identifying and validating new ways
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providing technical assistance, resources, tools and training to the Federal Energy Management Program (FEMP) and organizations within the Critical Minerals and Energy Innovation (CMEI) pillar. We
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Emergency Response (CESER), and Critical Minerals and Energy Innovation (CMEI) on the integration of new technologies, identifying and validating new ways of using existing and emerging grid assets to ensure