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Mechanisms of electron transfer to insoluble terminal acceptors in chemoorganotrophic bacteria

机译:电子转移到化学有机营养细菌中的不溶性末端受体的机制

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The mechanisms of electron transfer of association of chemoorganotrophic bacteria to the anode in microbial fuel cells are summarized in the survey. These mechanisms are not mutually exclusive and are divided into the mechanisms of mediator electron transfer, mechanisms of electron transfer with intermediate products of bacterial metabolism and mechanism of direct transfer of electrons from the cell surface. Thus, electron transfer mediators are artificial or synthesized by bacteria riboflavins and phenazine derivatives, which also determine the ability of bacteria to antagonism. The microorganisms with hydrolytic and exoelectrogenic activity are involved in electron transfer mechanisms that are mediated by intermediate metabolic products, which are low molecular carboxylic acids, alcohols, hydrogen etc. The direct transfer of electrons to insoluble anode is possible due to membrane structures (cytochromes, pili, etc.). Association of microorganisms, and thus the biochemical mechanisms of electron transfer depend on the origin of the inoculum, substrate composition, mass transfer, conditions of aeration, potentials and location of electrodes and others, that are defined by technological and design parameters.
机译:综述了微生物燃料电池中化学有机营养细菌缔合至阳极的电子转移机理。这些机制不是互相排斥的,分为介体电子转移机制,细菌代谢中间产物的电子转移机制和电子从细胞表面直接转移的机制。因此,电子转移介体是细菌核黄素和吩嗪衍生物人工合成或合成的,它们也决定了细菌的拮抗能力。具有水解和放电活性的微生物参与电子转移机制,该机制由中间代谢产物介导,这些代谢产物是低分子羧酸,醇,氢等。由于膜结构(细胞色素,霹雳等)。微生物的关联,进而电子转移的生化机制,取决于接种物的来源,底物组成,质量转移,通气条件,电极的电势和位置等,由技术和设计参数定义。

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