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首页> 外文期刊>Engineering in Life Sciences >Performance and Microbial Diversity of a Trickle-Bed Air Biofilter under Interchanging Contaminants
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Performance and Microbial Diversity of a Trickle-Bed Air Biofilter under Interchanging Contaminants

机译:交换污染物下a流式空气生物滤池的性能和微生物多样性

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A trickle-bed air biofilter (TBAB) was evaluated under conditions of interchanging the feed volatile organic compounds (VOCs) in the sequence methyl ethyl ketone (MEK), toluene, methyl isobutyl ketone (MIBK), styrene, and then back to MEK. The obtained performance results revealed that the biofilter provided high removal efficiency within the critical loading of each VOC, which was previously defined in the non-interchanging VOC fed biofilter. The biofilter easily acclimated to the oxygenated compounds (MEK and MIBK), but re-acclimation was delayed for the aromatic compounds (toluene and styrene). Ratios of the molar mass of CO sub(2) produced per molar mass of VOC removed were investigated. It has been found that the ratios for the aromatic compounds closely resembled the theoretical complete chemical oxidation based ratios while larger differences were encountered with the oxygenated compounds. Denaturing gradient gel electrophoresis (DGGE) analysis of 16S rRNA genes was used to assess the impact of interchanging VOCs on the bacterial community structure in the biofilter. The results from denaturing gradient gel electrophoresis (DGGE) showed that the structure of the microbial community in the biofilter was different after each interchange of VOCs.
机译:在交换进料挥发性有机化合物(VOC)的顺序为甲基乙基酮(MEK),甲苯,甲基异丁基酮(MIBK),苯乙烯,然后返回到MEK的条件下,对滴流床空气生物滤池(TBAB)进行了评估。获得的性能结果表明,该生物滤池在每个VOC的临界负荷内提供了较高的去除效率,这在非交换VOC进料的生物滤池中已预先定义。生物滤池很容易适应含氧化合物(MEK和MIBK),但芳族化合物(甲苯和苯乙烯)的重新适应被推迟了。研究了所除去的VOC的每摩尔质量产生的CO sub(2)的摩尔质量比。已经发现,芳族化合物的比例与理论上完全基于化学氧化的比例非常相似,而含氧化合物的比例较大。 16S rRNA基因的变性梯度凝胶电泳(DGGE)分析用于评估VOC互换对生物滤池中细菌群落结构的影响。变性梯度凝胶电泳(DGGE)的结果表明,每次交换VOC后,生物滤池中微生物群落的结构都不同。

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