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Fungal/bacterial interactions during the biodegradation of TEX hydrocarbons (toluene, ethylbenzene and p-xylene) in gas biofilters operated under xerophilic conditions

机译:在干性条件下操作的气体生物滤池中TEX烃(甲苯,乙苯和对二甲苯)生物降解过程中的真菌/细菌相互作用

摘要

The treatment of air contaminated with toluene, ethylbenzene, and p-xylene was assayed in three laboratory-scale biofilters, each consisting of two modules connected in series, packed with a pelletized organic fertilizer and inoculated with a toluene-degrading liquid enrichment culture. Biofilters were operated in parallel for 185 similar to days in which the volumetric organic loading rate was progressively increased. The operation regime was subjected to drying out, so that packing humidity generally remained below 40%. Significant process failure occurred with ethylbenzene and p-xylene, but the toluene biofilter comparatively sustained a significant elimination capacity. Microbial community characterization by quantitative PCR and denaturing gradient gel electrophoresis showed substantial fungal enrichment in the toluene biofilter. Ribotypes identical to the well-known toluene-degrading black yeast Exophiala oligosperma (Chaetotyriales) were found among the dominant species. The microbial community structure was similar in the biofilters loaded with toluene and ethylbenzene but with p-xylene was quite specific and encompassed other chaetothyrialean fungi. Several species of Actinomycetales were found in the packing while the inoculum was dominated by representatives of the Burkholderiales and Xanthomonadales. One single fungal ribotype homologous to Acremonium kiliense was detected in the inoculum. The implications of xerophilic biofilter operation on process biosafety and efficiency are discussed.
机译:在三个实验室规模的生物滤池中测定了被甲苯,乙苯和对二甲苯污染的空气的处理情况,每个滤池由两个串联的模块组成,装有颗粒有机肥料并接种了降解甲苯的液体富集培养物。平行运行生物滤池185天,这类似于有机物体积逐渐增加的日子。使操作方案变干,使得包装湿度通常保持在40%以下。乙苯和对二甲苯发生了重大的工艺失灵,但甲苯生物滤池相对而言仍具有明显的清除能力。通过定量PCR和变性梯度凝胶电泳进行的微生物群落表征显示,甲苯生物滤池中大量真菌富集。在优势种中发现了与众所周知的降解甲苯的黑酵母Exophiala oligosperma(Chaetotyriales)相同的核型。在装有甲苯和乙苯的生物滤池中,微生物群落结构相似,但对二甲苯则具有很强的特异性,并包含其他查特里亚氏真菌。在包装中发现了几种放线菌属,而接种物则由Burkholderiales和Xanthomonadales的代表主导。在接种物中检测到一种与乞力顶孢菌同源的单一真菌核糖型。讨论了干燥生物滤池运行对过程生物安全性和效率的影响。

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