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following responsibilities: ● Adapt, enhance, and validate an existing bottom-up/activity-based emissions model to examine maritime shipping emissions at a global scale. See https://www.sciencedirect.com
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contribute to a major research project to improve our understanding of macroplastic pollution in coastal seas. Working at the intersection of numerical modelling and observations, you will develop simulations
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local level to identify, rigorously evaluate, and help scale programs and policies that reduce pollution and improve environmental outcomes, while ensuring access to reliable and affordable energy. The EE
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the MASSALYA platform (https://lce.univ-amu.fr/equipes/massalya ). Volatile organic compounds (VOCs) will be measured using PTR-ToF-MS, complemented by offline analyses. Aerosol physical properties (number and
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foot-print air pollution sensors that can offer accuracy, robustness, and scalability. About the role The successful candidate will have the opportunity to develop expertise in integrated photonic and
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well as contribute to projects that integrate and analyze survey, field-based, and administrative data with high-resolution climate and air pollution datasets, with a particular emphasis on informal brick
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to mastering the great challenges facing society today. The Institute of Resource Ecology performs research to protect humans and the environment from hazards caused by pollutants resulting from technical
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factors such as prediction of plant growth, water pollution, and environmental biodiversity loss. The approach seeks to create robust, explainable models that reflect domain-specific insights, advancing
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been used in the remediation of other pollutants with success. In this project, we aim for a controlled PFAS degradation by using engineered enzymes and developing immobilized enzyme reactors
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populations are exposed to a complex mixture of environmental stressors, including air pollution, heat, noise, green space, and light pollution, that interact with socioeconomic vulnerability and health history