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An Add-on Nitrifying Membrane Bioreactor as Effluent Polishing Technique for 17α -Ethinylestradiol

机译:17α-乙二醇的流出物抛光技术作为污水抛光技术的附加硝化膜生物反应器

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17a-ethinylestradiol (EE2), the active compound of the contraceptive pill, is a recalcitrant estrogen with a high endocrine disrupting potency. This compound is not adequately removed in the current wastewater treatment plants (WWTP). Increasing concern about the fate of low-level concentrations of endocrine disruptors stimulates research on alternative methods for WWTP effluent polishing. The aim of this study was to establish an innovative and effective biological removal technique for EE2 by means of a nitrifier enrichment culture (NEC) applied in a membrane bioreactor (MBR). In batch incubation tests, the NEC was able to remove EE2 from both synthetic minimal medium and WWTP effluent (maximum removal rate of 9 μg EE2 g-1 VSS h-1). The role of nitrification was demonstrated by means of a specific test in which nitrification was selectively inhibited. Application of the nitrifying consortium in a MBR resulted in a continuous removal of EE2, in combination with a complete nitrification. Variation of the ammonium concentration in the influent pointed out that an optimal EE2 removal efficiency of 99 % was possible at an environmentally relevant influent concentration of 83 ng EE2 L-1 and a minimal ammonium concentration of 1 NH4 +-N mg L-1. Consequently, the advanced removal of EE2 from WWTP effluent can be achieved without the addition of supplementary nitrogen. This research opens new perspectives to remove estrogenic compounds from WWTP effluents. The application of nitrifying consortia in an add-on MBR system can offer a sustainable solution for these point sources of endocrine disruptors in the environment.
机译:17A-乙烯烯醇二醇(EE2),避孕药的活性化合物是一种顽固性雌激素,具有高内分泌破坏效力。在目前的废水处理厂(WWTP)中未充分除去该化合物。越来越担心低水平浓度的内分泌破坏剂的命运刺激了对WWTP流出物抛光的替代方法的研究。本研究的目的是通过施加在膜生物反应器(MBR)中的硝化柠檬富集培养(NEC)来建立EE2的创新和有效的生物去除技术。在批量孵育测试中,NEC能够从合成最小培养基和WWTP流出物中除去EE2(最大去除率为9μgEE2G-1VSS H-1)。通过特定测试证明了硝化的作用,其中选择性地抑制硝化。在MBR中施用硝化结核使得连续除去EE2,与完全硝化结合。流入中铵浓度的变化指出,以83ng EE2L-1的环境相关的影响浓度和1nH 4 + -Nmg L-1的最小铵浓度,最佳EE2去除效率为99%。因此,可以在不添加补充氮气的情况下实现来自WWTP流出物的EE2的晚期去除。该研究开启了新的视角,以从旱翅杆菌流出物中除去雌激素化合物。硝化联盟在附加MBR系统中的应用可以为这些环境中的内分泌干扰器的可持续解决方案提供可持续的解决方案。

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