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, equipment, and travel related to the project. Overview Deep geothermal reservoirs can provide a long-term, sustainable supply of heat and energy to serve society’s needs. The performance and operational
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intensification, dynamic operation, and resource recovery. The project combines modelling, pilot-scale experimentation, and techno-economic assessment to establish MECs as viable unit operations within next
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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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, tangible impact. This project focuses on the Futamura cellulose-to-cellophane production site in Cumbria , where you will develop strategies to reduce energy use and transition towards Net Zero operation
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innovative world-leader in high-performance PEEK and PAEK based polymer solutions, we have a validated 1.5 °C Science Based Target to reduce operational (Scope 1 and 2) emissions by 50.4% by 2032 from a 2022
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processes with high accuracy but are computationally expensive and difficult to deploy at national scale in real time (Neal et al., 2012; Glenis et al., 2018). In contrast, remote sensing approaches using
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, and industrial deployment. You will develop and optimise scalable MEC systems for real industrial wastewater, focusing on process intensification, dynamic operation, and resource recovery. The project