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嗜温及嗜热厌氧消化系统中的细小微丝菌和暗黑戈登氏菌

Microthrix parvicella and Gordona amarae in mesophilic and thermophilic anaerobic digestion systems.

作者信息

Marneri Matina, Mamais Daniel, Koutsiouki Efi

机构信息

National Technical University of Athens, Faculty of Civil Engineering, Department of Water Resources and Environmental Engineering, 5, Iroon Polytechniou, Zografou, Athens 15780, Greece.

出版信息

Environ Technol. 2009 Apr 14;30(5):437-44. doi: 10.1080/09593330902760631.

Abstract

The scope of the study presented in this paper is to determine the fate of the filamentous bacteria Gordona amarae and Microthrix parvicella in anaerobic digestion operating under mesophilic and thermophilic conditions. In order to detect and quantify foaming bacteria in the anaerobic digesters, a fluorescent in situ hybridization (FISH) method was developed and applied. This paper presents the results of a laboratory-scale study that involved the operation of four lab-scale anaerobic digestion systems operating in the mesophilic (35 degrees C) and thermophilic (55 degrees C) temperature ranges at 20 days' detention time. According to the FISH counts of G. amarae and M. parvicella, it appears that thermophilic conditions resulted in a higher destruction of both filamentous bacteria, averaging approximately 97% and 94% for the single thermophilic digester and the dual thermophilic/mesophilic system, respectively. Within the context of this study, the overall performance of the four different anaerobic digestion systems was evaluated in terms of biogas production per mass of volatile solids destroyed, COD destruction, sludge dewaterability and foaming characteristics. The dual stage systems used in this study outperformed the single stage digesters.

摘要

本文所呈现的研究范围是确定丝状菌阿马戈登氏菌(Gordona amarae)和微小杆菌(Microthrix parvicella)在中温及高温条件下厌氧消化过程中的命运。为了检测和量化厌氧消化器中的泡沫形成菌,开发并应用了荧光原位杂交(FISH)方法。本文介绍了一项实验室规模研究的结果,该研究涉及四个实验室规模的厌氧消化系统的运行,这些系统在中温(35摄氏度)和高温(55摄氏度)温度范围内运行,停留时间为20天。根据阿马戈登氏菌和微小杆菌的FISH计数结果,高温条件似乎导致两种丝状菌的破坏率更高,单级高温消化器和双级高温/中温系统中,丝状菌的平均破坏率分别约为97%和94%。在本研究范围内,从每破坏单位质量挥发性固体的沼气产量、化学需氧量(COD)去除率、污泥脱水性能和泡沫特性等方面对四个不同厌氧消化系统的整体性能进行了评估。本研究中使用的双级系统的性能优于单级消化器。

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