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Removal and fate of estrogens in an anaerobic-anoxic-oxic activated sludge system

机译:厌氧-缺氧-氧化活性污泥系统中雌激素的去除和去向

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Laboratory-scale experiments were conducted to investigate the removal and fate of estrogens 17β-estradiol (E2) and 17α-ethinylestradiol (EE2) in an anaerobic-anoxic-oxic (AAO) activated sludge system. Estrogen concentrations in the aqueous and solid phases in each reactor of AAO system were analyzed separately. E2 was not detected in the final effluent. The anaerobic, anoxic and oxic reactors accounted for 71%, 7% and 22% of the overall E2 removal, respectively. The overall EE2 removal efficiency was about 80%, and the anaerobic, anoxic and oxic reactors were responsible for 44%, 8% and 48% of the overall EE2 removal, respectively. In anaerobic unit, sorption was the dominant mechanism for the removal of E2 and EE2. While E2 was degraded in all the three units of the AAO system, EE2 was only degraded in the anoxic and aerobic units. Biodegradation is important for the fate of E2 compared to sorption. Of the total influent E2 in the AAO system, 99.99% was biodegraded and 0.01% remained in the waste sludge. Nevertheless, both sorption and biodegradation play important roles in the removal of EE2. Of the total influent EE2, 79.1% was degraded by activated sludge, 19.9% was discharged in the effluent and 1% remained in the waste sludge. & IWA Publishing 2010.
机译:进行了实验室规模的实验,以研究厌氧-缺氧-氧气(AAO)活性污泥系统中雌激素17β-雌二醇(E2)和17α-炔雌醇(EE2)的去除和去向。分别分析了AAO系统每个反应器中水相和固相中的雌激素浓度。在最终流出物中未检测到E2。厌氧,缺氧和有氧反应器分别占总E2去除量的71%,7%和22%。 EE2的总去除效率约为80%,厌氧,缺氧和有氧反应器分别占EE2的总去除率的44%,8%和48%。在厌氧单元中,吸附是去除E2和EE2的主要机制。尽管E2在AAO系统的所有三个单元中均被降解,但EE2仅在缺氧和有氧单元中被降解。与吸附相比,生物降解对于E2的命运很重要。在AAO系统中,总进水E2中有99.99%被生物降解,废物污泥中剩余0.01%。但是,吸附和生物降解在EE2的去除中都起着重要作用。在进水EE2中,活性污泥降解了79.1%,废水中排放了19.9%,废污泥中剩余了1%。 &IWA Publishing 2010。

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