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首页> 外文期刊>Frontiers of environmental science & eng >E. coli and bacteriophage MS2 disinfection by UV, ozone and the combined UV and ozone processes
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E. coli and bacteriophage MS2 disinfection by UV, ozone and the combined UV and ozone processes

机译:通过紫外线,臭氧以及紫外线和臭氧组合工艺对大肠杆菌和噬菌体MS2进行消毒

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摘要

The combination of low-dose ozone with ultraviolet (UV) irradiation should be an option to give benefit to disinfection and reduce drawbacks of UV and ozone disinfection. However, less is known about the disinfection performance of UV and ozone (UV/ozone) coexposure and sequential UV-followed-by-ozone (UV-ozone) and ozone-followed-by-UV (ozone-UV) exposures. In this study, inactivation of E. coli and bacteriophage MS2 by UV, ozone, UV/ozone coexposure, and sequential UV-ozone and ozone-UV exposures was investigated and compared. Synergistic effects of 0.5-0.9 log kill on E. coli inactivation, including increases in the rate and efficiency, were observed after the UV/ozone coexposure at ozone concentrations as low as 0.05 mg·L~(-1) in ultrapure water. The coexposure with 0.02-mg·L~(-1) ozone did not enhance the inactivation but repressed E. coli photoreactivation. Little enhancement on E. coli inactivation was found after the sequential UV-ozone or ozone-UV exposures. The synergistic effect on MS2 inactivation was less significant after the UV/ozone coexposure, and more significant after the sequential ozone-UV and UV-ozone exposures, which was 0.2 log kill for the former and 0.8 log kill for the latter two processes, at ozone dose of 0.1 mg·L~(-1) and UV dose of 8.55 mJ·cm~(-2) in ultrapure water. The synergistic effects on disinfection were also observed in tap water. These results show that the combination of UV and low-dose ozone is a promising technology for securing microbiological quality of water.
机译:低剂量臭氧与紫外线(UV)照射的组合应该是一种选择,以有利于消毒并减少紫外线和臭氧消毒的弊端。但是,对于紫外线和臭氧(UV /臭氧)共暴露,顺序紫外线跟随臭氧(臭氧-臭氧)和臭氧跟随紫外线(臭氧-UV)暴露的消毒性能知之甚少。在这项研究中,研究和比较了紫外线,臭氧,紫外线/臭氧共同暴露,连续紫外线-臭氧和臭氧-紫外线暴露对大肠杆菌和噬菌体MS2的灭活作用。在超纯水中低至0.05 mg·L〜(-1)的臭氧浓度下进行UV /臭氧共暴露后,可观察到0.5-0.9 log杀灭对大肠杆菌灭活的协同作用,包括速率和效率的增加。与0.02 mg·L〜(-1)臭氧的共同暴露不会增强灭活作用,但会抑制大肠杆菌的光活化作用。在连续的紫外线-臭氧或臭氧-紫外线照射后,发现大肠杆菌灭活几乎没有增强。在紫外线/臭氧共同暴露后,对MS2失活的协同作用不那么显着,而在连续的臭氧-紫外线和紫外线-臭氧暴露后,对MS2失活的协同作用更显着,前者为0.2 log杀灭,后两个过程为0.8 log杀灭。在超纯水中的臭氧剂量为0.1 mg·L〜(-1),紫外线剂量为8.55 mJ·cm〜(-2)。在自来水中也观察到了对消毒的协同作用。这些结果表明,紫外线和低剂量臭氧的结合是确保水的微生物质量的有前途的技术。

著录项

  • 来源
    《Frontiers of environmental science & eng》 |2014年第4期|547-552|共6页
  • 作者单位

    State Key Laboratory of Urban Water Resources and Environment, Harbin Institute of Technology, Harbin 150090, China,School of Environmental Science and Technology, Sun Yat-Sen University, Guangzhou 510275, China;

    State Key Laboratory of Urban Water Resources and Environment, Harbin Institute of Technology, Harbin 150090, China;

    Department of Civil and Environmental Engineering, the Hong Kong University of Science and Technology, Hong Kong, China;

    Water & Urban Development, AECOM Asia Co. Ltd., Hong Kong, China;

    School of Environmental Science and Technology, Sun Yat-Sen University, Guangzhou 510275, China;

    School of Environmental Science and Technology, Sun Yat-Sen University, Guangzhou 510275, China;

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

    bacteria inactivation; photoreactivation; water disinfection; UV; ozone;

    机译:细菌灭活;光活化水消毒;紫外线;臭氧;

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