生物甲烷增产因素与方法研究进展。

N. Thakur, A. Khardenavis, H. Purohit
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引用次数: 4

摘要

甲烷生成在全球碳循环中的作用对于可再生生物质的再循环非常重要,而可再生生物质有可能为摆脱化石燃料的依赖做出贡献。由发酵菌和产醋菌组成的厌氧微生物将复杂的生物质分解为氢、甲酸酯和醋酸酯,这些物质被产甲烷菌进一步代谢为甲烷。本文综述了甲烷的生物成因及其多样性。本文综述了近年来有关甲烷生产的专利,重点介绍了厌氧消化的不同方法、系统和微生物产甲烷群落,以提高对微生物群落在甲烷生成中的功能和关系的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances in Factors and Methods for Stimulation of Biomethane Production.
The role of methanogenesis in the global carbon cycle is very important for recycle of renewable biomass which, has the potential for contribution to independence from fossil fuels. Anaerobic microbes comprised of fermentative and acetogenic species decompose the complex biomass to hydrogen, formate and, acetate that are further metabolized to methane by methanogens. A general review of biogenic production of methane and methanogenic diversity involved is presented. This review gives an overview of recent patents on methane production and focuses mainly on different methods, systems and, microbial methanogenic community involved in anaerobic digestion that can be used for improved understanding of the microbial community function and relationships in methanogenesis.
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