LCA Research Lead: Sustainable Chemistry & Supply Chains

10 days ago

Plymouth, England, United Kingdom

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Job Description

Newcastle University is seeking a Research Assistant or Associate in Life Cycle Assessment (LCA) focused on sustainable chemistry and supply chains. The role involves advancing LCA methodologies to evaluate sustainability in the chemical industry, analyzing material and energy flows, and developing decision-support tools. Candidates should have experience with AI/ML for environmental modeling and be familiar with regulatory data requirements. The position is based in Plymouth, UK, and not remote.
Research Assistant: £33,951 to £35,608 per annumResearch Associate: £36,636 to £37,694 per annumNewcastle University is a great place to work, with excellent benefits. We have a generous holiday package; plus the opportunity to buy more, great pension schemes and a number of health and wellbeing initiatives to support you.Closing Date: 20 August 2026The RoleWe are excited to launch this new opportunity for a Research Assistant or Associate in Life Cycle Assessment (LCA) to join us in the School of Engineering. This position focuses on advancing Life Cycle Assessment (LCA) methodologies and datasets to evaluate the sustainability of emerging technologies, materials, and supply chains of CO₂ from raw materials to products and final disposal in the Chemical Industry.Great British Chemicals is a National Research & Innovation Centre for Sustainable Industrial Futures. Funded by EPSRC and NERC, the centre will unite the UK chemical industry, academic researchers and policy makers to advance innovative, scalable and sustainable technology solutions for defossilising chemicals manufacturing. We aim to create people-focused opportunities to truly shape sustainable carbon management.You will contribute to research that integrates supply chain data, environmental modelling, and economic analysis to identify opportunities for reducing emissions, improving resource efficiency, and enabling circular economy strategies. The work will involve analysing flows of materials and energy across global value chains and assessing associated environmental impacts using internationally recognised LCA standards such as ISO 14040/44.You will conduct a range of LCAs and test the newly developed Safe and Sustainable by Design (SSbD) framework for the chemical sector. You will develop and implement strategies to improve data availability, quality, and transparency. Having experience with AI/ML for environmental or toxicological modelling would be an advantage. You should be familiar with regulatory data requirements and compliance systems and have the ability to handle data gaps and conflicting datasets for LCAs.You will join a diverse group of colleagues based in Newcastle in our Environmental Engineering Research Group and work with Oliver Heidrich and Russell Davenport to advance the science, engineering, regulatory practice and environmental assessments of CO₂ utilisation.You will work closely with interdisciplinary teams to develop decision‑support tools, including open‑source data platforms and models that enable stakeholders to evaluate sustainability trade‑offs and inform policy, industry strategy, and innovation pathways.This role is embedded in a flagship programme GB Chemicals, addressing one of the most critical global challenges: transitioning to sustainable, circular, and net‑zero industrial systems.We are particularly keen to hear from those with a passion for collaboration and the ability to interact and engage with industry and academia, and who can be an integral part of a diverse network of specialists. The research integrates technology scale sustainability and LCA with supply chain modelling, digital tools, and environmental analysis to support decision‑making across industry and policy.You will contribute to shaping how emerging technologies and materials to manage carbon are designed, evaluated, and deployed, ensuring they are environmentally sustainable, economically viable, and socially responsible. The quantification of the supply chain data with qualitative inputs will identify efficiency opportunities and environmental challenges that may hinder sustainability.Our work will assess and develop a roadmap to a sustainable net‑zero chemical industry towards SSbD chemicals from feed stocks, intermediates and products. The research aims to shape emerging technologies during early developmental stages to ensure they are environmentally, socially, and economically sustainable.By focusing on critical resources, minerals, and chemicals, the study will provide actionable recommendations for meeting future demand with minimal environmental impact.We want you to feel confident when applying for a…

Newcastle University


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