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The role of biofilms on the formation and decay of disinfection by-products in chlor(am)inated water distribution systems

机译:生物膜对氯(AM)Inated水分配系统中消毒副产品的形成和腐烂的作用

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摘要

This study investigated the role of biofilms on the formation and decay of disinfection by-products (DBPs) in chlorine (Cl_2) or monochloramine (NH_2Cl) disinfected reactors under the conditions related to drinking water distribution systems (DWDSs). Biofilm analysis results revealed that at 0.5 mg/L of disinfectant residual, both Cl_2 and NH_2Cl were not effective to remove biofilms. As the disinfectant residual increased, biofilms could be eradicated by Cl_2, while remaining biofilms were still present even under the highest allowable NH_2Cl dose (4 mg/L) for 25 days. Low DBP formation was observed under the recommended minimum Cl_2 residual (0.5 mg/L), which could be attributed to limited Cl_2 reactions with biofilms, as well as a combination of the volatilization and biodegradation of DBPs. However, when Cl_2 residuals reached 2 mg/L, DBP concentrations in bulk water increased sharply beyond the DBP formation of the feed solution, with trihalomethanes and haloacetic acids being the most prevalent DBP species. The sharp increase was temporary for 15 days because of the removal of biofilms. For unregulated DBPs, high levels of haloacetonitriles were observed as attached biofilms reacted with the increased Cl_2 dose and provided an additional organic nitrogen source for nitrogenous DBP formation. When maximum Cl_2 residual (4 mg/L) was applied, no further increase of DBPs was observed because of biofilm eradication. For NH_2Cl disinfection, the DBP levels were much lower than those of Cl_2 disinfection, with small differences in DBP formation for different NH_2Cl residuals. Overall, this study provides insights into optimizing disinfection protocols for water utilities by balancing the benefits of disinfection application for biofilm control with minimized toxic DBP formation in DWDSs.
机译:本研究调查了生物膜在与饮用水分配系统(DWDS)相关的条件下对氯(CL_2)或单氯胺(NH_2CL)消毒反应器中的消毒副产物(DBPS)的形成和腐烂的作用。生物膜分析结果表明,在0.5mg / L的消毒剂残留,Cl_2和NH_2CL都无效地除去生物膜。随着消毒剂残留的增加,Cl_2可以消除生物膜,同时仍然在最高允许的NH_2Cl剂量(4mg / L)下仍存在剩余的生物膜25天。在推荐的最低CL_2残留(0.5 mg / L)下观察到低DBP形成,其可归因于与生物膜有限的Cl_2反应,以及Dbps的挥发和生物降解的组合。然而,当CL_2残留物达到2mg / L时,大量水中的DBP浓度急剧增加了进料溶液的DBP形成,三卤代甲烷和卤乙酸是最普遍的DBP物种。由于去除生物膜,急剧增加了15天。对于未调节的DBPS,观察到高水平的卤代乙腈,如附着的生物膜与增加的CL_2剂量反应,并提供了用于氮DBP形成的附加有机氮源。当施加最大CL_2残留(4mg / L)时,由于生物膜根除,未观察到DBPS的进一步增加。对于NH_2CL消毒,DBP水平远低于CL_2消毒,不同NH_2CL残留的DBP形成差异。总体而言,本研究通过平衡消毒应用对生物膜控制的益处来提供优化水公用事业的消毒方案的见解,并在DWDS中最小化有毒DBP形成。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第20期|141606.1-141606.11|共11页
  • 作者单位

    College of Eco-Environmental Engineering Guizhou Minzu University Guiyang Guizhou Province 550025 PR China Department of Chemical Engineering University of Toledo 3048 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA;

    Department of Civil and Environmental Engineering University of Toledo 3006 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA School of Environment and Civil Engineering Dongguan University of Technology Dongguan 523808 China;

    College of Medicine and Life Sciences University of Toledo 3000 Arlington Ave Toledo OH 43614-2595 USA;

    Department of Civil and Environmental Engineering University of Toledo 3006 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA;

    Department of Civil and Environmental Engineering University of Toledo 3006 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA;

    Department of Civil and Environmental Engineering University of Toledo 3006 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA;

    Department of Chemical Engineering University of Toledo 3048 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA Department of Civil and Environmental Engineering University of Toledo 3006 Nitschke Hall 2801 W. Bancroft St. Toledo OH 43606-3390 USA;

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

    Biofilms; Chlorine and monochloramine disinfection; Disinfection by-products; Drinking water distribution systems;

    机译:生物膜;氯和单氯胺消毒;消毒副产品;饮用水分配系统;

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