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生物强化对杂交狼尾草微生物群落和单级消化性能的影响。

Effect of bioaugmentation on the microbial community and mono-digestion performance of Pennisetum hybrid.

作者信息

Lianhua Li, Ying Li, Yongming Sun, Zhenhong Yuan, Xihui Kang, Yi Zhang, Gaixiu Yang

机构信息

Guangzhou Institute of Energy Conversion, CAS Key Laboratory of Renewable Energy, Chinese Academy of Sciences, Guangzhou 510640, PR China; University of Chinese Academy of Sciences, Beijing 100049, PR China; Guangdong Key Laboratory of New and Renewable Energy Research and Development, Guangzhou 510640, PR China.

Guangzhou Institute of Energy Conversion, CAS Key Laboratory of Renewable Energy, Chinese Academy of Sciences, Guangzhou 510640, PR China; Guangdong Key Laboratory of New and Renewable Energy Research and Development, Guangzhou 510640, PR China.

出版信息

Waste Manag. 2018 Aug;78:741-749. doi: 10.1016/j.wasman.2018.06.031. Epub 2018 Jun 30.

Abstract

In this study, bioaugmentation with methanogenic propionate-utilizing enrichment was investigated as a method to improve the mono-digestion performance of Pennisetum hybrid in a semi-continuous mode. The effect of bioaugmentation on the microbial community was analyzed as well. The results demonstrate that the steady-state organic loading rate (OLR) of the bioaugmented reactor increased to 4.0 g VS/(L·d) with a volumetric biogas production of 1.95 ± 0.17 m/(m·d). In contrast, the non-bioaugmented reactor failed at an OLR of 2.0 g VS/(L·d) accompanied with the accumulation of volatile fatty acids (VFAs). The results of whole genome pyrosequencing analysis suggest that the decrease in relative abundance of syntrophic butyrate and propionate oxidizers, such as Syntrophomonas, Syntrophobacter, and Syntrophorhabdus, reduced the conversion efficiency of butyrate and propionate which leads to the accumulation of butyrate and propionate, influencing the performance of the mono-digestion reactor. Conversely, in the bioaugmented reactor, the higher density of protein- and amino acid-utilizing bacteria, such as Proteiniphilum, Thermovirga, and Lutaonella, as well as the syntrophic association of Syntrophomonas spp. coupled with the methanogens Methanosarcina and Methanocella has a positive effect on system stability and performance.

摘要

在本研究中,研究了利用产甲烷丙酸盐富集培养进行生物强化作为一种在半连续模式下提高杂交狼尾草单级消化性能的方法。同时分析了生物强化对微生物群落的影响。结果表明,生物强化反应器的稳态有机负荷率(OLR)提高到4.0 g VS/(L·d),容积沼气产量为1.95±0.17 m/(m·d)。相比之下,未进行生物强化的反应器在OLR为2.0 g VS/(L·d)时失败,并伴有挥发性脂肪酸(VFA)的积累。全基因组焦磷酸测序分析结果表明,互营丁酸氧化菌和互营丙酸氧化菌(如互营单胞菌属、互营杆菌属和互营嗜氢菌属)相对丰度的降低,降低了丁酸和丙酸的转化效率,导致丁酸和丙酸积累,影响了单级消化反应器的性能。相反,在生物强化反应器中,利用蛋白质和氨基酸的细菌(如嗜蛋白菌属、嗜热弧菌属和鲁塔奥菌属)的较高密度,以及互营单胞菌属与产甲烷菌甲烷八叠球菌属和甲烷洞穴菌属的互营共生关系对系统稳定性和性能有积极影响。

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