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Electro-oxidation of secondary effluents from various wastewater plants for the removal of acetaminophen and dissolved organic matter

机译:各种废水厂的二级流出物的电氧化去除乙酰氨基酚和溶解有机物

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摘要

Electro-oxidation of acetaminophen (ACT) in three different doped secondary effluents collected from a conventional Municipal Waste Water Treatment Plant (MWWTP), a MWWTP using a membrane bioreactor (WWTP MBR) and a lab-scale MBR treating source-separated urine (Urine MBR) was investigated by electro-Fenton (EF) coupled with anodic oxidation (AO) using sub-stoichiometric titanium oxide anode (Ti_4O_7). After 8 h of treatment, 90 ± 15%, 76 ± 3.8% and 46 ± 1.3% of total organic carbon removal was obtained for MWWTP, MWWTP-MBR and Urine-MBR respectively, at a current intensity of 250 mA, pH of 3 and [Fe~(2+)] = 0.2 mM. Faster degradation of ACT was observed in the WWTP MBR because of the lower amount of competitive organic matter, however, >99% degradation of ACT was obtained after 20 min for all effluents. The acute toxicity of the treated effluent was measured using Microtox® tests. Results showed an initial increase in toxicity, which could be assigned to formation of more toxic by-products than parent compounds. From 3D excitation and emission matrix fluorescence (3DEEM), different reactivity was observed according to the nature of the organic matter. Particularly, an increase of low molecular weight organic compounds fluorescence was observed during Urine MBR treatment. This could be linked to the slow decrease of the acute toxicity during Urine MBR treatment and ascribed to the formation and recalcitrance of toxic organic nitrogen and chlorinated organic by-products. By comparison, the acute toxicity of other effluents decreased much more rapidly. Finally, energy consumption was calculated according to the objective to achieve (degradation, absence of toxicity, mineralization).
机译:使用膜生物反应器(WWTP MBR)的常规城市废水处理厂(MWWTP)收集的三种不同掺杂二级污水中的乙酰氨基酚(ACT)的电氧化在常规城市废水处理厂(MWWTP)中,并治疗源分离尿液(尿液)使用亚化学计量氧化钛阳极(Ti_4O_7),通过与阳极氧化(AO)偶联的电冷氧化(EF)研究了MBR)。 8小时后,分别为MWWTP,MWWTP-MWR和尿液-MBR获得90±15%,76±3.8%和46±1.3%,电流强度为250 mA,pH为3 [Fe〜(2+)] = 0.2毫米。在WWTP MBR中观察到较快的作用的降解,因为竞争性有机质的较少量,但在所有流出物20分钟后,在20分钟后获得的动作的降解。使用MicroTox测试测量处理过水的急性毒性。结果表明毒性初始增加,可以分配给比母体化合物形成更毒性的毒性。从3D激发和发射矩阵荧光(3DEAEEM),根据有机物质的性质观察不同的反应性。特别是,在尿MR处理期间观察到低分子量有机化合物荧光的增加。这可以与尿液MBR处理期间急性毒性的缓慢降低相关联,并归因于有毒有机氮和氯化有机副产物的形成和rucaliT。相比之下,其他流出物的急性毒性迅速下降得多。最后,根据目标计算(降解,毒性,矿化)的目的计算能量消耗。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|140352.1-140352.8|共8页
  • 作者单位

    Institut National de la Recherche Scientifique Eau Terre et Environnement (INRS-ETE) Universite du Quebec 490 rue de la Couronne Quebec QC G1K 9A9 Canada Institut Europeen des Membranes IEM Universite Montpellier CNRS ENSCM Place Eugene Bataillon 34095 Montpellier cedex 5 France;

    Institut Europeen des Membranes IEM Universite Montpellier CNRS ENSCM Place Eugene Bataillon 34095 Montpellier cedex 5 France Laboratoire Geomateriaux et Environnement LGE - Universite Paris-Est EA 4508 UPEM 77454 Marne-la-Vallee France;

    Institut Europeen des Membranes IEM Universite Montpellier CNRS ENSCM Place Eugene Bataillon 34095 Montpellier cedex 5 France;

    Institut Europeen des Membranes IEM Universite Montpellier CNRS ENSCM Place Eugene Bataillon 34095 Montpellier cedex 5 France;

    Institut National de la Recherche Scientifique Eau Terre et Environnement (INRS-ETE) Universite du Quebec 490 rue de la Couronne Quebec QC G1K 9A9 Canada;

    Institut Europeen des Membranes IEM Universite Montpellier CNRS ENSCM Place Eugene Bataillon 34095 Montpellier cedex 5 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Organic pollutants; Electro-Fenton; Anodic oxidation; Magneli phases; 3D EEM; Mineralization;

    机译:有机污染物;电芬顿;阳极氧化;Magneli阶段;3D EEM;矿化;

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