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湿度对气相生物滤池氨去除效率、一氧化二氮生成和微生物群落的影响。

Moisture effects on gas-phase biofilter ammonia removal efficiency, nitrous oxide generation, and microbial communities.

机构信息

Department of Agricultural and Biological Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

Department of Natural Resources and Environmental Sciences, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

出版信息

J Hazard Mater. 2014 Apr 30;271:292-301. doi: 10.1016/j.jhazmat.2014.01.058. Epub 2014 Feb 12.

Abstract

We established a four-biofilter setup to examine the effects of moisture content (MC) on biofilter performance, including NH3 removal and N2O generation. We hypothesized that MC increase can improve NH3 removal, stimulate N2O generation and alter the composition and function of microbial communities. We found that NH3 removal efficiency was greatly improved when MC increased from 35 to 55%, but further increasing MC to 63% did not help much; while N2O concentration was low at 35-55% MC, but dramatically increased at 63% MC. Decreasing MC from 63 to 55% restored N2O concentration. Examination of amoA communities using T-RFLP and real-time qPCR showed that the composition and abundance of ammonia oxidizers were not significantly changed in a "moisture disturbance-disturbance relief" process in which MC was increased from 55 to 63% and then reduced to 55%. This observation supported the changes of NH3 removal efficiency. The composition of nosZ community was altered at 63% MC and then was recovered at 55% MC, which indicates resilience to moisture disturbance. The abundance of nosZ community was negatively correlated with moisture content in this process, and the decreased nosZ abundance at 63% MC explained the observation of increased N2O concentration at that condition.

摘要

我们建立了四个生物滤池装置来考察含水量(MC)对生物滤池性能的影响,包括 NH3 去除和 N2O 生成。我们假设 MC 的增加可以提高 NH3 去除率,刺激 N2O 生成,并改变微生物群落的组成和功能。我们发现,当 MC 从 35%增加到 55%时,NH3 去除效率大大提高,但进一步增加 MC 到 63%并没有太大帮助;而在 35-55% MC 时,N2O 浓度较低,但在 63% MC 时急剧增加。当 MC 从 63%降低到 55%时,N2O 浓度恢复。使用 T-RFLP 和实时 qPCR 对 amoA 群落进行检测表明,在 MC 从 55%增加到 63%,然后降低到 55%的“水分干扰-缓解干扰”过程中,氨氧化菌的组成和丰度没有明显变化。这一观察结果支持了 NH3 去除效率的变化。nosZ 群落的组成在 63% MC 时发生了变化,然后在 55% MC 时恢复,这表明对水分干扰有恢复力。nosZ 群落的丰度与该过程中的含水量呈负相关,在 63% MC 时 nosZ 丰度的降低解释了在该条件下 N2O 浓度增加的观察结果。

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