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key analytical techniques for reaction monitoring and compound characterization—including Nuclear Magnetic Resonance (NMR), Gas Chromatography (GC), High-Performance Liquid Chromatography (HPLC), and
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). Methods include sensor-based technologies, external and internal exposome approaches, and co-creation and participatory research methods. This PhD position seeks to contribute to and build upon work being
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. Specifically, NIR sensors, hyperspectral imaging coupled with standard or macro lens, spatially resolved spectrometry, evolving plots, and FTIR will be used for the non-invasive characterisation of raw material
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biomass to LOHCs without the need of hydrogen gas production, while simultaneously generating high-value chemicals. By integrating chemical and energy sectors, the project aims to synthesize platform
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objective of the project is to understand the underlying soil physical and microbial mechanisms governing changes in soil organic carbon stocks and greenhouse gas emissions under different types