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Characterization of enoxacin (ENO) during ClO_2 disinfection in water distribution system: Kinetics, byproducts, toxicity evaluation and halogenated disinfection byproducts (DBPs) formation potential

机译:水分布系统ClO_2消毒期间Enoxacin(ENO)的表征:动力学,副产品,毒性评价和卤代消毒副产物(DBPS)形成电位

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摘要

Enoxacin (ENO) is widespread in water because it is commonly used as a human and veterinary antibiotic. However, little effort has been dedicated to revealing the transformation mechanisms of ENO destruction using ClO2, especially within a water distribution system (WDS). To address this knowledge gap, the kinetics, byproducts, toxicity, and formation potential of halogenated disinfection byproducts (DBPs) associated with ENO destruction using ClO2 in a pilot-scale PE pipe was explored for the first time. Statistical analyses showed that the destruction efficiency of ENO in the pilot-scale PE pipe was lower than that in deionized water (DI water), and the reactions in DI water followed the second-order kinetic model. Furthermore, pH has a significant effect on the destruction of ENO, and the removal ratio increased at a higher pH. Additionally, increasing the flow rate elevated the ENO removal efficiency; however, the influence of flow velocity was limited to ENO destruction. The ENO removal rates within the diverse pipes exhibited the following order: stainless steel pipe PE pipe ductile iron pipe. Nine possible intermediates were identified, and those that were formed by piperazine group cleavage represented the major primary byproducts of the entire destruction process. Additionally, the ENO destruction in a pilot-scale PE pipe had minimal influence on halogenated DBPs and chlorite formation. Finally, the toxicity evaluation illustrated that the presence of ENO increased the potential risk of water quality safety when treated with ClO2.
机译:Enoxacin(Eno)在水中是普遍的,因为它通常用作人和兽医抗生素。然而,很少努力旨在揭示使用CLO2的eno破坏的转化机制,尤其是在水分配系统(WDS)内。为了解决这种知识差距,第一次使用CLO2在先导式PE管中使用CLO2与eno销毁相关的卤化消毒副产物(DBP)的动力学,副产物,毒性和形成电位。统计分析表明,试验尺度PE管中烯的破坏效率低于去离子水(DI水)的销毁效率,以及二阶动力学模型的DI水中的反应。此外,pH对eno的破坏具有显着影响,并且去除率在更高的pH下增加。另外,增加流量升高了ENO去除效率;然而,流速的影响限于eno破坏。各种管道内的eno去除率呈现以下顺序:不锈钢管& PE管&球墨铸铁管。鉴定了九种可能的中间体,并且由哌嗪基团切割形成的那些代表了整个破坏过程的主要原发性副产物。另外,试验标尺PE管中的eno破坏对卤化DBPS和亚氯酸酯形成的影响最小。最后,毒性评估说明eno的存在增加了用CLO2处理时水质安全的潜在风险。

著录项

  • 来源
    《Chemosphere》 |2021年第11期|131251.1-131251.9|共9页
  • 作者单位

    Shandong Jianzhu Univ Sch Municipal & Environm Engn Jinan 250101 Peoples R China|Shandong Jianzhu Univ Resources & Environm Innovat Inst Jinan 250101 Peoples R China;

    Zhejiang Univ Coll Civil Engn & Architecture Hangzhou 310058 Peoples R China;

    Yanshan Univ Sch Civil Engn & Mech Qinhuangdao 066004 Hebei Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Peoples R China;

    Shandong Jianzhu Univ Sch Municipal & Environm Engn Jinan 250101 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Enoxacin; Chlorine dioxide oxidation; Water distribution system; Destruction mechanism; Toxicity;

    机译:氧辛;二氧化氯氧化;水分配系统;销毁机制;毒性;

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