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Distribution and Rate of Microbial Processes in an Ammonia-Loaded Air Filter Biofilm

机译:氨气空气过滤器生物膜中微生物过程的分布和速率

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摘要

The in situ activity and distribution of heterotrophic and nitrifying bacteria and their potential interactions were investigated in a full-scale, two-section, trickling filter designed for biological degradation of volatile organics and NH3 in ventilation air from pig farms. The filter biofilm was investigated by microsensor analysis, fluorescence in situ hybridization, quantitative PCR, and batch incubation activity measurements. In situ aerobic activity showed a significant decrease through the filter, while the distribution of ammonia-oxidizing bacteria (AOB) was highly skewed toward the filter outlet. Nitrite oxidation was not detected during most of the experimental period, and the AOB activity therefore resulted in NO2, accumulation, with concentrations often exceeding 100 mM at the filter inlet. The restriction of AOB to the outlet section of the filter was explained by both competition with heterotrophic bacteria for O2 and inhibition by the protonated form of NO2, HNO2. Product inhibition of AOB growth could explain why this type of filter tends to emit air with a rather constant NH3 concentration irrespective of variations in inlet concentration and airflow.
机译:在全尺寸,两段式滴滤滤池中研究了异养和硝化细菌的原位活性,分布及其潜在的相互作用,该滤池设计用于猪场通风空气中挥发性有机物和NH3的生物降解。通过微传感器分析,荧光原位杂交,定量PCR和分批孵育活性测量研究滤膜生物膜。现场有氧活动显示通过过滤器明显降低,而氨氧化细菌(AOB)的分布高度偏向过滤器出口。在整个实验期间的大部分时间内未检测到亚硝酸盐氧化,因此AOB活性导致NO2 -积累,在过滤器入口处的浓度通常超过100 mM。通过与异养细菌竞争O2和质子化形式的NO2 -,HNO2的抑制,可以解释AOB对过滤器出口部分的限制。产品对AOB增长的抑制作用可以解释为什么这种类型的过滤器趋向于以相当恒定的NH3浓度排放空气,而不管入口浓度和气流的变化如何。

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