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首页> 外文期刊>Biochemical Engineering Journal >Correlation of reactor performance and bacterial community composition during the removal of trimethylamine in three-stage biofilters
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Correlation of reactor performance and bacterial community composition during the removal of trimethylamine in three-stage biofilters

机译:三级生物滤池中三甲胺去除过程中反应器性能与细菌群落组成的相关性

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摘要

Two three-stage biofilters packed with compost(BFC)or sludge(BFS),respectively,were prepared for removing trimethylamine(TMA)from waste gases.The correlation between reactor performance and bacterial community composition was investigated.Although TMA could be successfully removed by both biofilters,TMA removal efficiency in the bottom stage of the BFC was considerably higher than that of the BFS.Moreover,NH3 generated by the degradation of TMA could be removed in the BFC,while it accumulated in the BFS.Spatial and temporal shifts of bacterial community composition in both biofilters developed differently as assessed by polymerase chain reaction-denaturing gradient gel electrophoresis(PCR-DGGE)followed by clone library analysis.Results showed that the lack of ammonia-oxidizing bacteria(AOB)may have contributed to the accumulation of NH3 in the BFS.Therefore,AOB may play a decisive role in,a complete degradation of TMA.It is necessary for the sludge packing material to be inoculated with AOB in order to initiate ammonia oxidation in the bioreactor.Understanding of microbial community compositions in biofilters plays an important role in seeking biological limiting factors related to the removal efficiencies of TMA and other compounds from waste gas and further enhancing the performance of biofilters.
机译:分别准备了两个装有堆肥(BFC)或污泥(BFS)的三级生物滤池,用于去除废气中的三甲胺(TMA)。研究了反应器性能与细菌群落组成之间的相关性。两种生物滤池中,BFC底部的TMA去除效率均明显高于BFS.TMA降解产生的NH3可以在BFC中去除,而在BFS中则积累。聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)和克隆文库分析表明,两个生物滤池中细菌群落组成的发育不同。结果表明,缺乏氨氧化细菌(AOB)可能有助于细菌的积累。 BFS中的NH3。因此,AOB可能在TMA的完全降解中起决定性的作用。 h AOB以启动生物反应器中的氨氧化。了解生物滤池中的微生物群落组成在寻找与TMA和其他化合物从废气中去除效率相关的生物限制因素并进一步提高生物滤池性能方面起着重要作用。

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