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Microbial diversity in combined UAF-UBAF system with novel sludge and coal cinder ceramic fillers for tetracycline wastewater treatment

机译:具有新型污泥和煤渣陶瓷填料的UAF-UBAF组合系统中微生物的多样性,用于四环素废水处理

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Microbial species, community structures and functional profiles were explored to explain the strong degradation capability of the combined up-flow anaerobic filter and up-flow biological aerated filter (UAF-UBAF) system with novel sludge and coal cinder ceramsite for treating tetracycline (TET) wastewater. Concentrations of different pollutants and extracellular polymeric substance (EPS) with increasing reactor height were measured. DNA extracted from biofilm at the corresponding height was sequenced on the Illumina MiSeq platform. Results showed that the main removal process of pollutants happened at the height of 0-80 cm. The highest average removal rate was in the region of 0-40 cm. EPS decreased with rising reactor height. For the same height, EPS concentration in UAF was higher than that in UBAF. Due to the analysis of dominant population, the main bacteria that degraded TET were Comamonadaceae, Thauera and Sinobacteraceae. Hydrolysis mainly took place at low reactor height while acidification and acetogenesis mainly happened at high height in UAF. For UBAF, the dominant bacteria species changed from anaerobic to aerobic species. Furthermore, microbial diversity became richer with the gradual biodegradation of TET. (C) 2015 Elsevier B.V. All rights reserved.
机译:探索了微生物的种类,群落结构和功能特征,以解释带有新型污泥和煤渣陶粒的上流厌氧滤池和上流生物曝气滤池(UAF-UBAF)组合系统对四环素(TET)的强大降解能力。废水。随着反应器高度的增加,测量了不同污染物和细胞外聚合物(EPS)的浓度。在Illumina MiSeq平台上对从生物膜提取的相应高度的DNA进行测序。结果表明,污染物的主要去除过程发生在0-80 cm的高度。最高的平均去除率在0-40厘米左右。 EPS随反应堆高度的增加而下降。在相同高度下,UAF中的EPS浓度高于UBAF中的EPS浓度。由于对优势种群的分析,降解TET的主要细菌是昏迷科,杜鹃花科和中华细菌科。在UAF中,水解主要发生在低反应器高度,而酸化和产乙酸主要发生在高高度。对于UBAF,优势细菌的种类从厌氧型变为好氧型。此外,随着TET逐渐生物降解,微生物多样性变得更加丰富。 (C)2015 Elsevier B.V.保留所有权利。

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