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Effects of sulfamethoxazole on the denitrifying process in anoxic activated sludge and the responses of denitrifying microorganisms

机译:磺胺甲氧唑对缺氧活性污泥中脱氮过程的影响及反硝化微生物的反应

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The presence of antibiotics in municipal wastewater is bound to affect the anoxic denitrifying process in anoxic activated sludge (AAS). This study investigated the effects of sulfamethoxazole (SMZ) on the denitrifying process in AAS and the responses of denitrifying microorganisms. The results showed that SMZ could decrease the speed of nitrate removal significantly when the concentration of SMZ was lower than 10 mg/L, and the removal of nitrate would be completely inhibited when SMZ concentration was higher than 100 mg/L. Weak alkaline condition would enhance the inhibition effect of SMZ on removal of nitrate in the anoxic bioreactor. The results of high-throughput sequencing and qPCR (quantitative polymerase chain reaction) showed that 100 mg/L of SMZ did not decrease the total abundance of denitrifying microorganisms. However, the relative expression levels of key denitrifying genes NirS and NosZ in AAS treated by 100 mg/L of SMZ versus the raw AAS without SMZ was only 0.030 and 0.036. Therefore, the inhibitory mechanism of SMZ on the denitrifying process in AAS was denoted by an effective inhibition to the expressions of denitrifying genes, rather than a decrease in the total abundance of denitrifying microorganisms.
机译:市政废水中存在抗生素的存在必将影响缺氧活性污泥(AAS)中的缺氧反硝化过程。本研究研究了磺胺甲恶唑(SMZ)对AAS中的反硝化过程的影响及反硝化微生物的反应。结果表明,当SMZ的浓度低于10mg / L时,SMZ可以显着降低硝酸盐去除的速度,并且当SMZ浓度高于100mg / L时,将完全抑制硝酸盐的除去。弱碱性病症将增强SMZ在缺氧生物反应器中除去硝酸盐的抑制作用。高通量测序和QPCR(定量聚合酶链反应)的结果表明,100mg / L的SMZ没有降低反硝化微生物的总丰度。然而,通过100mg / L的AAS与没有SMZ的原始AAS治疗的AAs中键硝基硝化基因NIR和NOSZ的相对表达水平仅为0.030和0.036。因此,SMZ对AAs中的反硝化过程的抑制机制通过有效的抑制对脱氮基因的表达,而不是降低反硝化微生物的总丰度的降低。

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