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颗粒活性炭对实验室规模生物反应器甲烷去除性能及甲烷营养菌群落的影响

Effects of granular activated carbon on methane removal performance and methanotrophic community of a lab-scale bioreactor.

作者信息

Lee Eun-Hee, Choi Sun-Ah, Yi Taewoo, Kim Tae Gwan, Lee Sang-Don, Cho Kyung-Suk

机构信息

a Department of Environmental Science and Engineering , Ewha Womans University , Seoul , Republic of Korea.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2015;50(2):193-200. doi: 10.1080/10934529.2014.975541.

Abstract

Two identical lab-scale bioreactor systems were operated to examine the effects of granular activated carbon (GAC) on methane removal performance and methanotrophic community. Both bioreactor systems removed methane completely at a CH4 loading rate of 71.2 g-CH4·d(-1) for 17 days. However, the methane removal efficiency declined to 88% in the bioreactor without GAC, while the bioreactor amended with GAC showed greater methane removal efficiency of 97% at a CH4 loading rate of 107.5 g-CH4·d(-1). Although quantitative real-time PCR showed that methanotrophic populations were similar levels of 5-10 × 10(8) pmoA gene copy number·VSS(-1) in both systems, GAC addition changed the methanotrophic community composition of the bioreactor systems. Microarray assay revealed that GAC enhanced the type I methanotrophic genera including Methylobacter, Methylomicrobium, and Methylomonas of the system, which suggests that GAC probably provided a favorable environment for type I methanotrophs. These results indicated that GAC is a promising support material in bioreactor systems for CH4 mitigation.

摘要

运行了两个相同的实验室规模生物反应器系统,以研究颗粒活性炭(GAC)对甲烷去除性能和甲烷营养菌群落的影响。在17天内,两个生物反应器系统在71.2 g-CH4·d(-1)的CH4负荷率下均能完全去除甲烷。然而,未添加GAC的生物反应器中甲烷去除效率降至88%,而添加GAC的生物反应器在107.5 g-CH4·d(-1)的CH4负荷率下显示出更高的甲烷去除效率,为97%。尽管定量实时PCR显示两个系统中甲烷营养菌数量相似,均为5-10×10(8) pmoA基因拷贝数·VSS(-1),但添加GAC改变了生物反应器系统的甲烷营养菌群落组成。微阵列分析表明,GAC增强了系统中包括甲基杆菌属、甲基微菌属和甲基单胞菌属在内的I型甲烷营养菌属,这表明GAC可能为I型甲烷营养菌提供了有利环境。这些结果表明,GAC在生物反应器系统中是一种有前途的用于缓解CH4的支撑材料。

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