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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Key syntrophic partnerships identified in a granular activated carbon amended UASB treating municipal sewage under low temperature conditions
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Key syntrophic partnerships identified in a granular activated carbon amended UASB treating municipal sewage under low temperature conditions

机译:在粒状活性炭修正的UASB中鉴定的关键偿还伙伴关系在低温条件下处理市政污水

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摘要

Two laboratory-scale up-flow anaerobic sludge blankets (UASB) reactors, one with and one without granular activated carbon (GAC), were operated for municipal sewage treatment at low temperatures (16.5 +/- 2.0 degrees C). During the 120-day operation, the GAC-amended reactor significantly enhanced COD removal (from 62% to 75%, P < 0.05) and methane production (from 87 to 218 mg CH4-COD/reactor/d) than the non-GAC reactor. Bacterial communities were significantly different between the two reactors (P < 0.05). Geobacter, a key indicator for direct interspecies electron transfer (DIET), had the highest differential score (LEfSe analysis), showing significantly higher abundances in the GAC-amended reactor (3.7-8.8%) than the non-GAC reactor (0.9-4.0%). GAC also enriched syntrophic bacteria, Syntrophomonas, Syntrophus and sulfate reducing bacteria. Methanobacterium dominated the archaeal community in the GAC-amended reactor sludge (35.7%) and GAC-biofilm (75.3%), and was less abundant in the non-GAC reactor (9.9%). It indicates that GAC enriched microbial syntrophic partners with potential electro-activities in the anaerobic digestion process.
机译:两个实验室鳞片上流厌氧污泥毯(UASB)反应器,一个与没有颗粒状活性炭(GAC)的反应器,在低温下进行市政污水处理(16.5 +/- 2.0℃)。在120天的操作期间,GAC修正的反应器显着增强了COD去除(从62%至75%,P <0.05)和甲烷生产(从87〜218mg CH4-COD /反应器/ D)而不是非GAC反应堆。两种反应器之间的细菌群落显着差异(P <0.05)。 Gaobacter是一种用于直接间隙电子转移(饮食)的关键指标,具有最高的差分分数(lefse分析),在GAC修正的反应器(3.7-8.8%)中显示出明显高的丰富量比非GAC反应器(0.9-4.0 %)。 GAC还富集了同步细菌,Syntrophomonas,Syntrophus和硫酸盐还原细菌。甲基杆菌在GAC修正的反应器污泥(35.7%)和GAC-Biofilm(75.3%)中以古代群落主导,并且在非GAC反应器(9.9%)中较少。它表明GAC富集的微生物伴侣伴侣在厌氧消化过程中具有潜在的电活性。

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