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Removal of tetracycline by aerobic granular sludge and its bacterial community dynamics in SBR

机译:SBR中好氧颗粒污泥去除四环素及其细菌群落动力学

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In this study, the removal efficiency and mechanism of tetracycline by aerobic granular sludge (AGS) in SBR were investigated. The removal of tetracycline present in livestock and poultry wastewater and the effect on conventional pollutants, such chemical oxygen demand, and nitrogen and phosphorous removal performance have been assessed demonstrating that AGS was able to remove tetracycline by adsorption and biodegradation processes. The removal rate of tetracycline was more than 90%, and conventional pollutants were also efficiently removed. The high-throughput sequencing technology was applied to decipher the species succession and community structure of tetracycline-resistance granular sludge. The Chryseobacterium , Actinotignum , Lactococcus , Shinella and Clavibacter were gradually dominant and considered as the functional bacteria for the removal of tetracycline. The numbers of functional genes including amino acid, carbohydrate and inorganic ion transport and metabolism, as well as energy production and conversion, and secondary metabolites biosynthesis, were also increased. These functional genes played an important role in the biodegradation of tetracycline.
机译:本研究研究了好氧颗粒污泥(AGS)在丁苯橡胶中对四环素的去除效率和机理。评估了牲畜和家禽废水中存在的四环素的去除以及对常规污染物的影响,例如化学需氧量以及氮和磷的去除性能,这表明AGS能够通过吸附和生物降解过程去除四环素。四环素的去除率超过90%,常规污染物也得到了有效去除。采用高通量测序技术对四环素抗性污泥的物种演替和群落结构进行了研究。嗜酸杆菌,放线菌,乳球菌,闪光杆菌和锁骨杆菌逐渐占主导地位,被认为是去除四环素的功能细菌。包括氨基酸,碳水化合物和无机离子的转运和代谢以及能量产生和转化以及次生代谢产物生物合成在内的功能基因的数量也有所增加。这些功能基因在四环素的生物降解中起重要作用。

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