首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Predominance of syntrophic bacteria, Methanosaeta and Methanoculleus in a two-stage up-flow anaerobic sludge blanket reactor treating coffee processing wastewater at high organic loading rate
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Predominance of syntrophic bacteria, Methanosaeta and Methanoculleus in a two-stage up-flow anaerobic sludge blanket reactor treating coffee processing wastewater at high organic loading rate

机译:两阶段上流厌氧污泥毯反应器在高有机加载速率处理咖啡加工废水中的两级上流厌氧污泥橡皮布反应器优势

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摘要

The effect of the organic loading rate (OLR) on the performance and microbial composition of a two-stage UASB system treating coffee processing wastewater was assessed. The system was operated with OLR up to 18.2 g COD (Ld)(-1) and effluent recirculation. Methane production and effluent characteristics were monitored. The microbial composition was examined through next-generation sequencing and qPCR from the anaerobic sludge of the first reactor (R1) operated at low and high OLR. The system showed operational stability, obtaining a maximum methane production of 2.2 L CH4 (Ld)(-1), with a removal efficiency of COD and phenolic compounds of 84 and 73%, respectively. The performance of R1 at high OLR in steady conditions was associated with an appropriate proportion of nutrients (particularly Fe) and a marked increase of the syntrophic bacteria Syntrophus and Candidatus Cloacimonas, and acetoclastic and hydrogenotrophic methanogens, mainly Methanosaeta, Methanoculleus, Methanobacterium and Methanomassiliicoccus.
机译:有机加载速率(OLR)对治疗咖啡加工废水的两级UASB系统的性能和微生物组成的影响得到了评估。该系统用OLR运行,高达18.2g COD(LD)( - 1)和流出再循环。监测甲烷生产和流出特性。通过下一代测序和QPCR从低反应器(R1)的下一代测序和QPCR检查微生物组合物,在低和高OLR下操作的第一反应器(R1)。该系统显示出操作稳定性,获得2.2L CH4(LD)(-1)的最大甲烷产量,分别去除鳕鱼和酚类化合物84和73%。 R1在稳定条件下的R1在稳定条件下的性能与适当比例的营养素(特别是Fe)和语言和Candidatus Cloacimonas的标记增加,以及乙酰喹啉和氢脱甲酸酯,主要是甲蛋白酶,甲蛋白,甲基杆菌和甲基麦匹米菌。

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