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University: (https://www.ncl.ac.uk/nes/people/profile/samwilson.html ) Yulia Yuzenkova (https://www.ncl.ac.uk/medical-sciences/people/profile/yuliayuzenkova.html ) Eligibility Criteria Due to funding
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into alternative innovative technologies which could deliver our chemical processes in a more efficient way (for example, alternative separation technologies) The potential to design “real” systems to deliver energy
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move into practice? This project will examine how implementation considerations can be embedded earlier in innovation pathways to inform policy and healthcare decision-making. Although horizon scanning
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, privacy-enhancing technologies, and trustworthy AI: stating requirements precisely, designing methods that meet them, and building prototypes fast enough to use. Applicants should hold, or expect to obtain
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a key challenge in sustainable process engineering: translating microbial electrolysis cell (MEC) technology from lab-scale innovation to robust, industrial deployment. The research will sit at
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design and test enzyme variants, develop biochemical and analytical assays to measure performance, and investigate how combinations of enzymes can work together to maximise plastic depolymerisation
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acquisition in biology. With this knowledge in hand, you will then use AI guided protein engineering to explore the feasibility of developing ‘designer’ lanthanophores. Finally, natural and engineered
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: translating microbial electrolysis cell (MEC) technology from lab-scale innovation to robust, industrial deployment. The research will sit at the interface of reaction engineering, process systems engineering