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Kinetic parameters for 17α-ethinylestradiol removal by nitrifying activated sludge developed in a membrane bioreactor

机译:膜生物反应器中硝化活性污泥去除17α-炔雌醇的动力学参数

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摘要

The synthetic hormone 17α-ethinylestradiol (EE2) is primarily removed in wastewater treatment plants (WWTPs) by sorption, and nitrifying biomass has been shown to be responsible for EE2 biodegradation. Membrane bioreactor (MBR) technology was chosen to develop a community of autotrophic, nitrifying micro-organisms and determine kinetic parameters for EE2 biodegradation. Biological inhibition by azide was applied to differentiate sorption from biodegradation. Activated sludge (AS) was acclimated in the MBR to a substrate specific to autotrophic biomass and resulted in an increase in nitrifying activity. Acclimated AS was used to successfully biodegrade EE2 (11% increase in EE2 removal), and the overall removal of EE2 was determined to be 99% (sorption + biodegradation). AS used directly from a WWTP without acclimation removed EE2 only through sorption (88% removal of EE2). Therefore, higher nitrifying activity developed by acclimating AS allowed almost complete removal of EE2.
机译:合成激素17α-炔雌醇(EE2)主要通过吸附作用在废水处理厂(WWTP)中去除,硝化生物质已被证明是造成EE2生物降解的原因。选择膜生物反应器(MBR)技术来开发自养硝化微生物群落并确定EE2生物降解的动力学参数。应用叠氮化物的生物抑制作用来区分吸附与生物降解。活性污泥(AS)在MBR中适应了自养生物质特有的底物,并导致硝化活性增加。使用驯化的AS成功降解EE2(EE2去除率增加11%),确定EE2的总去除率为99%(吸附+生物降解)。直接从污水处理厂直接使用的AS无需进行适应性处理,仅通过吸附(去除EE2的88%)去除了EE2。因此,通过使AS适应而产生的更高的硝化活性几乎可以完全去除EE2。

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