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of niacin by employing a combination of hydrolyses and structure identification using LC-MS. Additionally, the impact of bioprocessing of niacin will be examined, and the bioaccessibility of niacin in
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of geological hydrogen reservoirs, combining geochemistry, microbiology, isotope analysis, and modelling. The doctoral researcher will focus on the geological hydrogen aspects of the project by integrating
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-based products. The work will involve the quantification of available niacin and the potential bound forms of niacin by employing a combination of hydrolyses and structure identification using LC-MS
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