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Pre-treatment and inoculum affect the microbial community structure and enhance the biogas reactor performance in a pilot-scale biodigestion of municipal solid waste

机译:预处理和接种物会影响城市固体废物的中试规模生物消化中的微生物群落结构并提高沼气反应器的性能

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摘要

During anaerobic digestion of municipal solid waste, organic matter is converted to methane, carbon dioxide, and other organic and inorganic compounds through a complex cooperation among different microbial groups with different metabolic activities. Here, culture-dependent and independent approaches provided evidence for examining the relationship between bacterial and archaeal communities and methane production in a pilot-scale anaerobic digestion. The abundance of aerobic and anaerobic functional groups of C and N cycles, such as cellulolytic, pectinolytic, amylolytic and proteolytic bacteria, was high at the beginning of the experiment and was drastically decreased after anaerobic digestion. In contrast, the ammonifiers increased in the biogas producing reactors in a higher pH environment. The methanogenic archaeal genera recovered wereMethanobrevibacter,Methanobacterium,MethanoculleusandMethanocorpusculum, thus indicating that methane was formed primarily by the hydrogenotrophic pathway in the reactors.Moreover, the mechanical pretreatment effects, as well as the effect of pelleted manure as inoculum, were considered. The highest methane production was detected in the biodigesters with minced organic waste, thus indicating that pre-treatment of a heterogeneous starting matrix was essential for improving biogas production and stabilizing the process.
机译:在城市生活垃圾的厌氧消化过程中,有机物通过具有不同代谢活性的不同微生物群之间的复杂协作而转化为甲烷,二氧化碳以及其他有机和无机化合物。在这里,依赖于文化的和独立的方法提供了证据,以检验中试规模的厌氧消化中细菌和古细菌群落与甲烷产生之间的关系。在实验开始时,C和N循环的需氧和厌氧功能基团(例如纤维素分解菌,果胶分解菌,淀粉分解菌和蛋白水解菌)的丰度很高,并且在厌氧消化后急剧下降。相反,在较高pH的环境下,沼气生产反应器中的氨化剂增加。回收的产甲烷古细菌属是甲烷短杆菌属,甲烷杆菌属,甲烷菌属和甲烷体菌属,因此表明甲烷主要是由反应器中的氢营养途径形成的。在带有切碎的有机废物的生物消化器中检测到最高的甲烷产量,因此表明,异质起始基质的预处理对于提高沼气产量和稳定过程至关重要。

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  • 来源
    《Waste Management》 |2018年第3期|69-77|共9页
  • 作者单位

    Department of Agricultural Sciences, Division of Microbiology, University of Naples Federico II;

    Department of Agricultural Sciences, Division of Microbiology, University of Naples Federico II;

    Department of Agricultural Sciences, Division of Microbiology, University of Naples Federico II;

    Department of Agricultural Sciences, Division of Microbiology, University of Naples Federico II;

    Department of Agricultural Sciences, Division of Microbiology, University of Naples Federico II;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Mechanical pretreatment; Microbial diversity; OFMSW;

    机译:厌氧消化;机械预处理;微生物多样性;OFMSW;

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