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Tracing Pharmaceuticals in a municipal plant for integrated wastewater and organic solid waste treatment

机译:在市政工厂中追踪药品以进行废水和有机固体废物的综合处理

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摘要

The occurrence and removal of 42 Pharmaceuticals, belonging to different therapeutic groups (analgesics and anti-inflammatory drugs, anti-ulcer agent, psychiatric drugs, antiepileptic drug, antibiotics, 15-blockers, diuretics, lipid regulator and cholesterol lowering statin drugs and anti-histamines), were studied in the wastewater and sewage sludge trains of a full scale integrated treatment plant. The plant employs a biological nutrient removal (BNR) process for the treatment of municipal wastewater, and a single-stage mesophilic anaerobic co-digestion for the treatment of wasted activated sludge mixed with the organic fraction of municipal solid waste (OFMSW), followed by a short-cut nitrification-denitrification of the anaerobic supernatant in a sequential batch reactor. Influent and effluent wastewater, as well as thickened, digested and treated sludge were sampled and analyzed for the selected Pharmaceuticals in order to study their presence and fate during the treatment Twenty three compounds were detected in influent and effluent wastewater and eleven in sludge. Infiltration of groundwater in the sewer system led to a dilution of raw sewage, resulting in lower concentrations in wastewater (up to 0.7μg/L in influent) and sludge (70ng/g d.w.). Due to the dilution, overall risk quotient for the mixture of Pharmaceuticals detected in effluent wastewater was less than one, indicating no direct risk for the aquatic environment. A wide range of removal efficiencies during the treatment was observed, i.e. <20% to 90%. The influent concentrations of the target pharma-ceuticals, as polar compounds, were undoubtedly mostly affected by BNR process in the wastewater train, and less by anaerobic-co-digestion. Mass balance calculations showed that less than 2% of the total mass load of the studied Pharmaceuticals was removed by sorption. Experimentally estimated distribution coefficients (<500L/kg) also indicated that the selected Pharmaceuticals preferably remain in the aqueous phase, and that biodegradation/ transformation is the primary removal mechanism for these compounds during wastewater treatment.
机译:发生和清除的42种药物属于不同的治疗组(镇痛药和抗炎药,抗溃疡药,精神病药,抗癫痫药,抗生素,15种阻滞剂,利尿剂,脂质调节剂和降胆固醇他汀类药物以及抗组胺),在一个大型综合处理厂的废水和污水污泥中进行了研究。该工厂采用生物营养去除(BNR)工艺处理市政废水,并采用单阶段中温厌氧消化法处理与市政固体废物有机部分(OFMSW)混合的废活性污泥。顺序分批反应器中厌氧上清液的短程硝化-反硝化。对进水和出水废水以及增稠,消化和处理后的污泥进行采样并分析所选药物,以研究其在处理过程中的存在和命运,在进水和出水废水中检测到23种化合物,污泥中发现11种化合物。污水在下水道系统中的渗透导致原污水的稀释,从而降低了废水(进水的浓度高达0.7μg/ L)和污泥(70ng / g d.w.)的浓度。由于稀释,在废水中检测到的药物混合物的总风险商小于1,表明对水生环境没有直接风险。在处理期间观察到广泛的去除效率,即<20%至90%。毫无疑问,目标药物(作为极性化合物)的进水浓度主要受废水流中BNR工艺的影响,而受到厌氧共消化的影响较小。质量平衡计算表明,所研究药物的总质量负载中不到2%通过吸附去除。实验估计的分配系数(<500L / kg)还表明,所选药物优选保留在水相中,并且生物降解/转化是废水处理过程中这些化合物的主要去除机理。

著录项

  • 来源
    《Science of the total environment》 |2012年第1期|p.352-361|共10页
  • 作者单位

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA), Spanish Council for Scientific Research (CS1C), jordi Girona 18-26, 08034 Barcelona, Spain;

    Department of Biotechnology, University of Verona, Strada Le Crazie 15, 1-37134, Verona, Italy,Interuniversity Consortium 'Chemistry for the Environment' (INCA), Via delle Industrie, 1-30135, Marghera-Venice, Italy;

    Department of Biotechnology, University of Verona, Strada Le Crazie 15, 1-37134, Verona, Italy,Interuniversity Consortium 'Chemistry for the Environment' (INCA), Via delle Industrie, 1-30135, Marghera-Venice, Italy;

    Catalan Institution for Research and Advanced Studies (1CREA), Passeig Lluis Companys 23, 80010 Barcelona, Spain,Catalan Institute for Water Research (1CRA), H2O Building, Scientific and Technological Park of the University of Girona, 101-E-17003 Girona, Spain;

    Department of Biotechnology, University of Verona, Strada Le Crazie 15, 1-37134, Verona, Italy,Interuniversity Consortium 'Chemistry for the Environment' (INCA), Via delle Industrie, 1-30135, Marghera-Venice, Italy;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA), Spanish Council for Scientific Research (CS1C), jordi Girona 18-26, 08034 Barcelona, Spain,Catalan Institute for Water Research (1CRA), H2O Building, Scientific and Technological Park of the University of Girona, 101-E-17003 Girona, Spain;

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

    pharmaceuticals; wastewater treatment; anaerobic co-digestion; sorption;

    机译:药品;废水处理;厌氧消化吸附;
  • 入库时间 2022-08-17 13:54:48

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