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Characterization of Active Microbes in a Full-Scale Anaerobic Fluidized Bed Reactor Treating Phenolic Wastewater

机译:大型厌氧流化床反应器处理含酚废水中活性微生物的表征

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This study investigated the active microbial community in a full-scale granular activated carbon-anaerobic fluidized bed (GAC-AFB) reactor treating wastewater from the manufacturing of phenolic resin, using 16S rRNA-based molecular analyses. The results of cDNA from 16S rRNA revealed that Methanosaeta-related (83.9% of archaeal clones) and Syntrophorhabdaceae (formerly named Deltaproteobacteria group TA)-related (68.9% of bacterial clones) microorganisms were as the most predominant populations in the phenol-degrading GAC-AFB reactor. The high abundance of Syntrophorhabdaceae was supported by a terminal restriction fragment length polymorphism (T-RFLP) analysis, which showed that a Syntrophorhabdaceae-like fragment of 119 bp (similar to 80% of total fragments) was the most predominant phylotype. Furthermore, fluorescence in situ hybridization (FISH) analyses suggested that Syntrophus-and Chloroflexi-like cells were also in high abundance in the GAC biofilm. A non-layered structure of microorganisms was found in the GAC biofilm, where Methanosaeta (thick filamentous), Syntrophorhabdaceae (oval-shaped), Syntrophus (small rods) and Chloroflexi (thin-filamentous) were randomly distributed with high abundance. These findings greatly improve our understanding of the diversity and distribution of microbial populations in a full-scale mesophilic bioreactor treating an actual phenol-containing waste stream.
机译:这项研究使用基于16S rRNA的分子分析技术,研究了全尺寸颗粒活性炭厌氧流化床(GAC-AFB)反应器中的活性微生物群落,该反应器用于处理酚醛树脂生产中的废水。 16S rRNA cDNA的结果显示,在降解苯酚的GAC中,与甲烷菌相关的细菌(占83.9%的古细菌克隆)和与拟南芥科的细菌(占68.9%的细菌)属于微生物。 -AFB反应堆。末端限制片段长度多态性(T-RFLP)分析支持了剑突科的高丰度,这表明119 bp的剑突科样片段(约占总片段的80%)是最主要的系统型。此外,荧光原位杂交(FISH)分析表明,在GAC生物膜中,类似Syntrophus和Chloroflexi的细胞也很丰富。在GAC生物膜中发现了一种微生物的无层结构,其中甲烷菌属(浓丝状),金丝藻(卵形),金丝藻(小杆)和柔韧性(细丝状)以高丰度随机分布。这些发现极大地增进了我们对处理实际含酚废物流的大规模嗜温生物反应器中微生物种群多样性和分布的理解。

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