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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community structure reveals how microaeration improves fermentation during anaerobic co-digestion of brown water and food waste
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Microbial community structure reveals how microaeration improves fermentation during anaerobic co-digestion of brown water and food waste

机译:微生物群落结构揭示了在厌氧消化棕色水和食物垃圾的过程中,微曝气如何改善发酵

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The purpose of this study was to investigate the impact of microaeration on the fermentation process during anaerobic co-digestion of brown water (BW) and food waste (FW). This was achieved by daily monitoring of reactor performance and the determination of its bacterial consortium towards the end of the study. Molecular cloning and sequencing results revealed that bacteria within phyla Firmicutes and Bacteriodetes represented the dominant phylogenetic group. As compared to anaerobic conditions, the fermentation of BW and FW under microaeration conditions gave rise to a significantly more diverse bacterial population and higher proportion of bacterial clones affiliated to the phylum Firmicutes. The acidogenic reactor was therefore able to metabolize a greater variety of substrates leading to higher hydrolysis rates as compared to the anaerobic reactor. Other than enhanced fermentation, microaeration also led to a shift in fermentation production pattern where acetic acid was metabolized for the synthesis of butyric acid.
机译:这项研究的目的是调查微曝气对棕色水(BW)和食物垃圾(FW)厌氧共消化过程中发酵过程的影响。这是通过在研究结束时每天监测反应堆性能并确定其细菌财团来实现的。分子克隆和测序结果表明,门扇菌和细菌十二指肠内的细菌代表着占主导地位的系统发生群。与厌氧条件相比,BW和FW在微曝气条件下的发酵产生了明显更多的细菌种群和隶属于门菌纲的细菌克隆。因此,与厌氧反应器相比,产酸反应器能够代谢更多种底物,从而导致更高的水解速率。除增强发酵外,微曝气还导致了发酵生产模式的转变,其中乙酸被代谢用于丁酸的合成。

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