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光照改变微生物群和电子传递:城市污泥中温消化增强的证据。

Light alters microbiota and electron transport: Evidence for enhanced mesophilic digestion of municipal sludge.

作者信息

Qian Jin, Zhang Yuhang, Wang Peifang, Lu Bianhe, He Yuxuan, Tang Sijing, Yi Ziyang

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, Hohai University, Nanjing 210098, P. R. China; College of Environment, Hohai University, Nanjing 210098, P. R. China.

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, Hohai University, Nanjing 210098, P. R. China; College of Environment, Hohai University, Nanjing 210098, P. R. China.

出版信息

Water Res. 2022 Jun 15;217:118447. doi: 10.1016/j.watres.2022.118447. Epub 2022 Apr 11.

Abstract

Light as an environmental factor can affect the process of anaerobic digestion, but there is no systematic study in municipal wastewater sludge mesophilic digestion. In this study, the effects of light on the performance of the anaerobic digestion system and photo-anaerobic microbiota (PAM) were evaluated in lighted anaerobic batch digesters (LABRs). The methane yield from the reactor under the dark condition (LABR0) was 179.2 mL CH/g COD, which was lower than 305.4 mL CH/g COD and 223.0 mL CH/g COD (n = 3, p < 0.05) from reactors under the light intensity of 3600 lm (LABR1) and 7200 lm (LABR2), respectively. The dominant genera in the bacterial and archaeal communities were Bacillus and Methanosarcina under light conditions, Enterococcus and Methanobacterium under dark conditions. And these two bacteria acted as electroactive bacterial genera, indicating that light changes the combination of direct interspecies electron transfer (DIET) microbial partners and activates the DIET pathway for methane production. The electron conduction pathways analysis further suggests that biological DIET (bDIET) between microbial biomass, rather than DIET via conductive material (cDIET) between microbes and conductive materials, is promoted and behaves as the dominant factor enhancing methane production under light conditions. The morphology of microorganisms and the amount and properties of EPS corroborate these views. Our findings are guided to anaerobic digester constructions under the outdoor environment with light exposure.

摘要

光照作为一种环境因素会影响厌氧消化过程,但在城市污水污泥中温消化方面尚无系统研究。本研究在光照厌氧间歇式消化器(LABR)中评估了光照对厌氧消化系统性能和光厌氧微生物群(PAM)的影响。黑暗条件下反应器(LABR0)的甲烷产量为179.2 mL CH/g COD,分别低于光照强度为3600 lm(LABR1)和7200 lm(LABR2)的反应器的305.4 mL CH/g COD和223.0 mL CH/g COD(n = 3,p < 0.05)。光照条件下细菌和古菌群落中的优势属为芽孢杆菌属和甲烷八叠球菌属,黑暗条件下为肠球菌属和甲烷杆菌属。并且这两种细菌作为电活性细菌属,表明光照改变了直接种间电子转移(DIET)微生物伙伴的组合并激活了甲烷生成的DIET途径。电子传导途径分析进一步表明,光照条件下促进了微生物生物质之间的生物DIET(bDIET),而非微生物与导电材料之间通过导电材料的DIET(cDIET),并且bDIET是增强甲烷生成的主导因素。微生物形态以及胞外聚合物的数量和性质证实了这些观点。我们的研究结果为户外有光照环境下厌氧消化器的构建提供了指导。

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