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新型被动空气扩散系统生物覆盖层对微生物甲烷氧化及甲烷氧化菌群落的影响。

Effect of biocover equipped with a novel passive air diffusion system on microbial methane oxidation and community of methanotrophs.

机构信息

School of Environment, Tsinghua University, Beijing, China.

出版信息

J Air Waste Manag Assoc. 2012 Mar;62(3):278-86. doi: 10.1080/10473289.2011.647236.

Abstract

A novel biocover with passive air diffusion system (PADS) was designed in this study. Its effect on landfill gas components in the macrocosms of simulated biocover systems was also investigated. The results show that O2 concentration increased in the whole profile of the macrocosms equipped with PADS. When simulated landfill gas (SLFG) flow rate was no more than 40 mL min(-1), the methane oxidation rate was 100%. The highest CH4 oxidation capacity reached to 31.34 mol m(-3) day(-1). Molecular microbiology analysis of the soil samples taken from the above macrocosm showed that the growth of type I methanotrophs was enhanced, attributable to enhanced air diffusion and distribution, whereas the microbial diversity and population density of type II methanotrophs were not so affected, as evidenced by the absence of any difference between the biocover equipped with PADS and that of the control. According to a phylogenic analysis, Methylobacter Methylosarcinafor type I, and Methylocystis, Methylosinus for type II, were the most prevalent species in the macrocosm with PADS.

摘要

本研究设计了一种具有被动空气扩散系统(PADS)的新型生物覆盖层,并研究了其对模拟生物覆盖系统宏观环境中垃圾填埋气成分的影响。结果表明,配备 PADS 的宏观环境中整个剖面的 O2 浓度都有所增加。当模拟垃圾填埋气(SLFG)流速不超过 40 mL min(-1)时,甲烷氧化率为 100%。最高的 CH4 氧化容量达到 31.34 mol m(-3) day(-1)。对来自上述宏观环境的土壤样本的分子微生物学分析表明,I 型甲烷营养菌的生长得到了增强,这归因于空气扩散和分布的增强,而 II 型甲烷营养菌的微生物多样性和种群密度则没有受到影响,这表明配备 PADS 的生物覆盖层与对照之间没有任何差异。根据系统发育分析,I 型的 Methylobacter Methylosarcina 和 Methylocystis、Methylosinus 是 PADS 宏观环境中最常见的物种。

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