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Removal efficiency of 66 Pharmaceuticals during wastewater treatment process in Japan

机译:日本废水处理过程中66种药物的去除效率

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摘要

Both biological treatment processes including conventional activated sludge (CAS) and biological nutrient removal (BNR) processes, and physico-chemical treatment processes including ozonation process and Title 22 process consisting of coagulation, sedimentation and filtration followed by UV or chlorination disinfection after the above biological processes, were compared in the viewpoint of removal efficiency. 66 Pharmaceuticals including antibiotics, analgesics, psychoneurotic agents were measured with SPE-LC/MS/MS. 26 compounds out of 66 were detected in the influent ranging ng/L to μg/L order. Particularly, disopyramide, sulphide, and dipyridamole that have been rarely detected before in the WWTP, occurred at concentration levels of more than 100 ng/L. The total concentration of the individual Pharmaceuticals in the influent was efficiently removed by 80% during the biological treatment. But removal efficiencies of carbamazepine and crotamiton were less than 30%. The total concentration of the individual Pharmaceuticals in the effluent from CAS process was 1.5 times higher than that from BNR process. Further, the total concentration of the individual Pharmaceuticals in the discharge from WWTPs applying ozonation following activated sludge process was reduced to less than 20%. Physico-chemical treatment train called Title 22 treatment after CAS could not efficiently remove the Pharmaceuticals. However, ozonation process followed by biological activated carbon process could efficiently reduce all the residual Pharmaceuticals below their quantification limits.
机译:生物处理过程包括常规活性污泥(CAS)和生物营养去除(BNR)过程,以及物理化学处理过程(包括臭氧化过程和Title 22过程),包括上述生物处理后的混凝,沉淀和过滤,然后进行紫外线或氯化消毒从去除效率的角度对工艺进行了比较。使用SPE-LC / MS / MS测量了66种药品,包括抗生素,止痛药,精神神经病药。在ng / L至μg/ L的进水量中检测到66种化合物中的26种。特别是,在污水处理厂以前很少检测到的二吡酰胺,硫化物和双嘧达莫的浓度水平超过100 ng / L。在生物处理过程中,有效地去除了进水中各个药物的总浓度达80%。但是,卡马西平和克罗米通的去除效率低于30%。 CAS过程中各个药物的总浓度比BNR过程中的总浓度高1.5倍。此外,在活性污泥处理后,采用臭氧化处理的污水处理厂污水中的各个药物的总浓度降低到小于20%。 CAS后进行的称为标题22处理的物理化学处理程序无法有效地去除药物。但是,臭氧化处理之后是生物活性炭处理可以有效地将所有残留药物减少到其定量限以下。

著录项

  • 来源
  • 会议地点 Frankfurt(DE)
  • 作者单位

    Kyoto Univ. Graduate School of Engineering, Research Center for Environmental Quality Management, 1-2 Yumihama, Otsu City, Shiga, 520-0811, Japan;

    Kyoto Univ. Graduate School of Engineering, Research Center for Environmental Quality Management, 1-2 Yumihama, Otsu City, Shiga, 520-0811, Japan;

    Kyoto Univ. Graduate School of Engineering, Research Center for Environmental Quality Management, 1-2 Yumihama, Otsu City, Shiga, 520-0811, Japan;

    Kyoto Univ. Graduate School of Engineering, Research Center for Environmental Quality Management, 1-2 Yumihama, Otsu City, Shiga, 520-0811, Japan;

    Kyoto Univ. Graduate School of Engineering, Research Center for Environmental Quality Management, 1-2 Yumihama, Otsu City, Shiga, 520-0811, Japan;

    Kyoto Univ. Graduate School of Engineering, Research Center for Enviro;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水资源调2查与水利规划;
  • 关键词

    pharmaceuticals; waste water treatment plants; biological nutrient removal; physico-chemical process;

    机译:药品;废水处理厂;生物营养去除物理化学过程;
  • 入库时间 2022-08-26 14:08:25

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