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高温生物滤池中气载芳香族和脂肪族化合物的相互作用。

Interaction of gaseous aromatic and aliphatic compounds in thermophilic biofilters.

机构信息

School of Environmental Science and Engineering, Tianjin University, Tianjin Key Lab of Indoor Air Environmental Quality Control, Tianjin 300072, China.

School of Environmental Science and Engineering, Tianjin University, Tianjin Key Lab of Indoor Air Environmental Quality Control, Tianjin 300072, China.

出版信息

J Hazard Mater. 2015 Dec 30;300:210-217. doi: 10.1016/j.jhazmat.2015.07.005. Epub 2015 Jul 6.

Abstract

Two thermophilic biofilters were applied in treating a mixture of gaseous aromatic (benzene) and aliphatic compounds (hexane) to evaluate the interaction of the compounds. The performance of the biofilters was investigated in terms of removal efficiencies, elimination capacity, kinetic analysis, interaction indices, and microbial metabolic characteristics. Results showed that the removal performance of benzene was unaffected by the addition of hexane. The removal efficiencies of benzene were maintained at approximately 80% and the biodegradation rate constant was maintained at 120 h(-1). However, the removal efficiencies of hexane decreased significantly from 60% to 20% and the biodegradation rate constant exhibited a distinct decrease from 93.59 h(-1) to 56.32 h(-1). The interaction index of benzene with the addition of hexane was -0.029, which indicated that hexane had little effect on the degradation of benzene. By contrast, the interaction index of hexane by benzene was -0.557, which showed that benzene inhibited the degradation of hexane significantly. Similar conclusions were obtained about the substrate utilization. Moreover, the utilization degree of carbon sources and the microbial metabolic activities in the biofilter treating hexane were significantly improved with the addition of benzene, whereas the addition of hexane had a slight effect on the microbial communities in the biofilter treating benzene. Conclusions could be obtained that when mixtures of benzene and hexane were treated using biofilters, the degradation of benzene, which was more easily degradable, was dominant and unaffected; whereas the degradation of hexane, which was less easily degradable, was inhibited because of the changing of microbes.

摘要

两个嗜热生物过滤器被应用于处理混合的气态芳香族(苯)和脂肪族化合物(己烷),以评估化合物之间的相互作用。生物过滤器的性能是根据去除效率、消除能力、动力学分析、相互作用指数和微生物代谢特性来进行考察的。结果表明,苯的去除性能不受己烷添加的影响。苯的去除效率保持在约 80%,生物降解速率常数保持在 120 h(-1)。然而,己烷的去除效率从 60%显著下降到 20%,生物降解速率常数从 93.59 h(-1)明显下降到 56.32 h(-1)。苯与己烷共添加的相互作用指数为-0.029,表明己烷对苯的降解影响很小。相比之下,己烷对苯的相互作用指数为-0.557,表明苯显著抑制了己烷的降解。关于基质利用也得到了类似的结论。此外,在苯处理的生物过滤器中添加己烷显著提高了碳源的利用程度和微生物代谢活性,而在苯处理的生物过滤器中添加己烷对微生物群落的影响较小。可以得出结论,当使用生物过滤器处理苯和己烷混合物时,降解更易降解的苯占主导地位且不受影响;而降解较难降解的己烷则受到抑制,因为微生物发生了变化。

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