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, with documented risks to human health and aquatic ecosystems. Existing remediation methods based on adsorption (activated carbon) or membrane filtration effectively remove PFAS from water but do not
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candidates with a strong curiosity for discovering new pathways to convert lignin waste streams into specialty activated carbon-based catalysts. Several functionalization routes based on lignin amination and
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, lignin) and herbivores (bone collagen) material. Modern material (Białowieża Forest) will be used to refine the methodology: establishing the variability in plants and in herbivores; understanding
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. The project, STRIDE (Synchrotron-based Time-Resolved crystallographic Investigations of Dynamic states in Esterase catalysis via novel analogues), is funded by the Novo Nordisk Foundation as a MicroMAX
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nat-ural sciences. More than 4,000 scientists in eight faculties conduct research on "Technology for People" in five main research areas. The content of the offered studies is based on this excellent re
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utilization, with emphasis on how lignin, cellulose, and biomass-derived molecules behave in different chemical environments and how these interactions control fractionation, solubilization, reactivity, and
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) will be added for comparison. The project methods are analyses of carbon and nitrogen stable isotopes in plants (protein, cellulose, lignin) and herbivores (bone collagen) material. Modern material