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Anaerobic digestion of chemically enhanced primary treatment (CEPT) sludge and the microbial community structure

机译:化学强化一级处理污泥的厌氧消化和微生物群落结构

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摘要

The effectiveness and treatment conditions of FeCl3- and AlCl3-coagulated municipal sewage sludge from chemically enhanced primary treatment (CEPT) using anaerobic digestion (AD) and the structure of microbial community were investigated. The results based on 297 measurements under different operational conditions demonstrate good average AD performance of CEPT sludge, that is, percent volatile solid reduction of 58 %, specific biogas production (or biogas yield) of 0.92 m(3)/kg volatile solids (VS) destroyed, and methane content of 65.4 %. FeCl3 dosing, organic loading rate, temperature, and hydraulic retention time all significantly affected AD performance. FeCl3 dosing greatly improved specific methane production (methane yield) by 38-54 % and significantly reduced hydrogen sulfide (H2S) content in biogas (from up to 13,250 to <200 ppm), contributing to higher methane recovery and simplified biogas cleaning for power generation. Metagenomic analysis suggested that anaerobic digesters of both CEPT sludge and combined primary and secondary sludge were dominated by Bacteroidetes, Proteobacteria, Firmicutes, Actinobacteria, Thermotogae, and Chloroflexi. However, Methanomicrobia methanogens were better enriched in the anaerobic digesters of CEPT sludge than in the combined sludge. Further, different sources of CEPT sludge with various chemical properties nurtured shared and unique microbial community composition. Combined, this study supports AD as an efficient technology for CEPT sludge treatment and poses first insights into the microbial community structure.
机译:研究了厌氧消化(AD)化学强化一级处理(CEPT)制得的FeCl3和AlCl3混凝的城市污水污泥的有效性和处理条件,以及微生物群落的结构。在不同操作条件下基于297次测量得出的结果表明,CEPT污泥的平均AD性能良好,即挥发性固体减少百分比为58%,比沼气产量(或沼气产率)为0.92 m(3)/ kg挥发性固体(VS ),甲烷含量为65.4%。 FeCl3的剂量,有机负载率,温度和水力停留时间都显着影响AD的性能。 FeCl3计量大大提高了比甲烷产量(甲烷产率)38-54%,并显着降低了沼气中的硫化氢(H2S)含量(从13,250降至<200 ppm),有助于提高甲烷回收率并简化沼气发电清洁。荟萃基因组学分析表明,CEPT污泥以及初级和次级污泥的厌氧消化池主要由拟杆菌,变形杆菌,硬毛,放线菌,嗜热菌和绿弯曲菌组成。但是,CEPT污泥厌氧消化池中的甲烷微生物产甲烷菌比混合污泥中的甲烷菌更富。此外,具有各种化学性质的CEPT污泥的不同来源培养了共享的和独特的微生物群落组成。结合起来,这项研究支持AD作为一种有效的CEPT污泥处理技术,并且对微生物群落结构具有初步见解。

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