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following cycles caused by changes in chemistry and hydrogen bond donor (HBD) composition. DES also exhibits poor chemical stability at higher operating conditions, resulting in solvent loss. Furthermore
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on mechanical and physical separation methods for efficient recovery of active materials and components from spent LFP cells as well as development of hydrothermal relithiation processes to restore
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: The proposed project aims to enhance the sustainability and transparency of the battery materials supply chain by integrating Environmental, Social, and Governance (ESG) criteria and Life Cycle Assessment (LCA
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, to quantify the spatiotemporal flux of natural hydrogen in distinct reservoirs ranging in age from Mesoproterozoic to Cenozoic, discriminate between potential hydrogen generation mechanisms, and assess
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herbicide and antimicrobial resistance that threatens the global agricultural and health industries. This exciting project will draw on parallels with drug resistance to investigate a new molecular mechanism
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-quality battery precursors and materials - These projects aim to advance the DES-based battery recycling processes towards the production of high-purity, battery-grade materials, focusing on developing
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: Contact Person: Dr Nataliia Sergiienko School/Discipline of: Mechanical Engineering Tel: (08) 8313 6465 Email: Nataliia.sergiienko@adelaide.edu.au EXPRESSIONS OF INTEREST: Expressions
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reservoir engineering, the main research is focused on mathematical physics, exact and asymptotic solutions of non-linear partial differential equations, and analytical methods in fluid mechanics. MSc
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. The student will work under the supervision and guidance of a small, expert editorial committee to produce at least one chapter for this book. Chapters will draw heavily from RGSSA library source material
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navigation & timing devices (University of Adelaide). Project 1.2. Nitrogen-vacancy centres in diamond and other materials (RMIT). Project 1.3. Single Quantum - Superconducting nanowire single photon detectors