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tackles the C sequestration issue using a combination of selected plants to increase C rhizodeposition and inputs of stabilizing mineral phases. The project is organized in 5 work packages. It explores
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terrestrial environments. Key processes governing the transport and (bio)availability of these polymers—such as their adsorption to solid–water interfaces—remain poorly understood. In this new joint initiative
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refer to the following website for eligibility criteria: https://www.ucl.ac.uk/prospective-students/graduate/research-degrees/physics-and-astronomy-mphil-phd . The studentship will cover university fees
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processed, as well as further information about data protection is available to you on the website: https://tu-dresden.de/karriere/datenschutzhinweis .
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. Although the key contribution of mineral fertilizers (N and P) to sustain crop production, the plants root plasticity, rhizosphere microbial activities and their interactions play a pivotal role in enhanced
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, ion-exchange processes, mineral recovery, or related aqueous chemistry techniques is a plus. Familiarity with life-cycle assessment (LCA) and/or life-cycle cost analysis (LCCA) applied to construction
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of this multidisciplinary project: (i) designing and developing chemical and ion-exchange processes for energy- and cost-efficient recovery of minerals and chemicals from desalination reject brine., (ii) utilizing recovered
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the two doctoral students. This project will thus allow for further research, something that cannot be achieved solely on a national scale. USP will benefit from the CNRS's expertise on the processes
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processes for the recovery of minerals from desalination reject brine. The role will involve development of a range of mineral extraction processes and the lab and pilot scale. This will include development
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Dr. Gerrit Angst: gerrit.angst@bc.cas.cz Where to apply Website https://jobrxiv.org/job/phd-position-in-soil-fauna-effects-on-soil-organic-matt… Requirements Additional Information Work Location(s