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Titlebook: Electron-Based Bioscience and Biotechnology; Masaharu Ishii,Satoshi Wakai Book 2020 Springer Nature Singapore Pte Ltd. 2020 electron.elect

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Extracellular Electron Uptake Mechanisms in Sulfate-Reducing Bacteriah backgrounds and electrochemical methods and shows example studies regarding the extracellular electron uptake mechanisms and thermodynamics in SRB. These aspects have critical implications in SRB physiology, biogeological and biophysical processes, and anaerobic iron corrosion.
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Application of Enzymatic Reactions Involving Electron Transfer and Energy Supply for the Production for the introduction of hydroxyl groups into unsaturated fatty acid are discussed. The use of baker’s yeast cells as energy supply system for carbon-carbon bond formation by aldol condensation reaction is also described. The development of these enzyme systems will bring a breakthrough in future bioprocess development in chemical industry.
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Fatty Acid Production from Xylose by Xylose-Assimilating Thraustochytrid and Cellular NADPH/NADP+ Baylose flow to pentose phosphate pathway, energy flow, and NADPH generation for fatty acid synthesis were activated in the adapted cells to xylose. The ratio of NADPH/NADP. in cells was increased by the activation of NADPH generation in xylose-adapted cells.
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gically induced corrosion.Insights into emerging application.This book offers a comprehensive introduction to electron-based bioscience, biotechnology, and biocorrosion. It both explains the importance of electron flow during metabolic processes in microorganisms and provides valuable insights into
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https://doi.org/10.1007/978-981-16-7672-7h small overpotentials. Some applications of these bidirectional bioelectrocatalyses are explained in this chapter. All these reactions can construct a hydrogen/C1 economy as an environmentally clean, cheap, and sustainable energy system.
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