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Progress in microbiology for fermentative hydrogen production from organic wastes

机译:从有机废物中发酵氢气产生的微生物研究进展

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Dark fermentative hydrogen production from organic wastes can achieve dual benefits of clean energy generation and waste utilization, which offers the best prospects for a biohydrogen production process with high environmental benefits. Biohydrogen production system is a complex biological process, which is affected by many factors, including operational conditions (e.g. temperature, pH), substrate type, reactor design etc., and depends on the microbial type, retention time, activity, productivity and end products. Among these influencing factors the hydrogen-producing microorganisms play a vital role. Great efforts have been made to enhance the hydrogen production efficiency from the perspective of microbiology. In this review, the microbiology, biochemistry and enzymology for biological hydrogen production were briefly summarized and analyzed. The recent progress in microbiology for hydrogen production through dark fermentation was reviewed, including microorganisms, biochemistry, enzymology, microbial modification and the identification of the microbial community structure. Metabolic pathways can be modified by metabolic engineering, thus enhancing the biological hydrogen production through overcoming limiting factors for hydrogen production in various systems by increasing the flow of electrons to hydrogen-producing pathways, increasing substrate utilization, and engineering more efficient and/or oxygen-resistant hydrogen-evolving enzymes. Finally, concluding remarks and perspectives are given.
机译:来自有机废物的黑暗发酵氢气产生可以实现清洁能源和废物利用的双重效益,为生物氢生产过程具有高环境效益,为生物氢生产过程提供了最佳前景。生物氢生产系统是一种复杂的生物过程,受许多因素的影响,包括运行条件(例如温度,pH),底物类型,反应器设计等,并取决于微生物型,保留时间,活动,生产力和最终产品。在这些影响因素中,产生氢的微生物发挥着至关重要的作用。已经努力从微生物学的角度提高氢生产效率。在本文中,简要概述和分析了生物氢生产的微生物学,生物化学和酶学。综述了通过黑发发酵的氢生成微生物生成的进展,包括微生物,生物化学,酶学,微生物改性和微生物群落结构的鉴定。可以通过代谢工程来修改代谢途径,从而通过克服各种系统中的氢气产生的限制因素来提高各种系统的限制因素,从而提高氢气产生途径,增加基板利用率和工程更有效和/或氧气 - 抗性氢化酶。最后,给出了结论备注和观点。

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