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(France), and University of Leeds (UK). The advertised position is for DCR2. Solvent-based CO2 capture has shown to be scalable for the removal of millions of tons of CO2 per year from large industries
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(France), and University of Leeds (UK). The advertised position is for DCR4. The PhD project (DCR4) investigates impurities in the pure CO2 stream produced from CO2 capture. Small impurities will be carried
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taken up by 1st October 2024. Applicants must live within a reasonable distance of the University of Leeds whilst in receipt of this scholarship. Lead Supervisor’s full name & email address Dr. Wuhu Feng
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& Physical Sciences School/Institute: School of Mathematics Category: Academic Grade: Grade 7 Salary: £37,099 to £44,263 p.a. Working Time: 37.5 hours per week Post Type: Full Time Contract Type: Fixed
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, comprising a robotic packing setup and a digital twin (DT), such that packing simulation models can be plugged in to be tested, verified and corrected. The physical twin is a simple setup (consisting of a
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considered. Subject Area Applied Chemistry, Inorganic Chemistry, Synthetic Chemistry, Fluid Mechanics, Manufacturing Engineering, Mechanical Engineering, Nuclear Physics
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natural and engineered barriers for secure storage. Crucial to this process are robust containers manufactured from materials such as stainless or carbon steel, shielded by backfill materials consisting
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. Encapsulating the sludge for long term storage is a high priority for the industry. To mobilize and process the material it is important to understand its rheological properties and how rheology is modified when
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decontamination of process liquids and cooling ponds is common to almost all current and future nuclear power plants. However, the main method used to remove radioisotopes and other heavy metals – ion exchange
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process and resulting crystal properties. This PhD project builds on our previous studies on the precipitation of Ca and Ce oxalates as simulants. It aims to address challenges associated with