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Spectral Sensitivity of Bacillus subtilis Spores and MS2 Coliphage for Validation Testing of Ultraviolet Reactors for Water Disinfection

机译:枯草芽孢杆菌孢子和MS2谱仪的光谱敏感性用于紫外线反应器对水消毒的验证测试

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摘要

The microbicidal UV fluence under polychromatic radiation from UV lamps is typically measured using the DNA absorbance spectrum as a weighting factor for the relative wavelength effectiveness.However,this DIMA-based weighting does not necessarily match the spectral sensitivity of the microorganism being tested.Bacillus subtilis spores are often used for UV reactor validation in Europe,while MS2 coliphage is typically used for validation testing in the United States.These organisms were exposed to quasi-monochromatic UV irradiation across the microbicidal spectrum at wavelengths of 214,230,240,254,265,280,and 293 nm.MS2 was three times more sensitive to wavelengths near 214 nm compared to the 254 nm output of low-pressure lamps,while B.subtilis spores were most sensitive to wavelengths around 265 nm.Use of these action spectra,compared to the DNA-based weighting,resulted in differences in the calculated polychromatic UV fluence.Consequently,the action spectrum,which is specific for each microorganism,has implications on the uncertainty of UV fluence determination during validation of reactors with polychromatic UV lamps.
机译:通常使用DNA吸收光谱作为相对波长有效性的加权因子来测量来自紫外线灯的多色辐射下的杀菌紫外线通量。但是,基于DIMA的加权不一定与被测微生物的光谱灵敏度相匹配。在欧洲,孢子通常用于UV反应器验证,而在美国,MS2噬菌体通常用于验证测试。这些生物在214,230,240,254,265,280和293 nm的波长下通过整个杀微生物光谱暴露于准单色UV辐射下。对于214 nm附近的波长,其敏感度是低压灯的254 nm的三倍,而枯草芽孢杆菌的孢子对265 nm附近的波长最敏感。与基于DNA的加权相比,这些作用谱的使用结果在计算的多色UV能量密度上的差异。因此,每个光谱特有的作用谱微生物对多色紫外灯反应堆验证过程中紫外能量密度测定的不确定性有影响。

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  • 来源
    《Environmental Science & Technology》 |2005年第20期|p.7845-7852|共8页
  • 作者单位

    Porter School of Environment,School of Mechanical Engineering,Tel-Aviv University,Tel-Aviv 69978,Israel,Department of Civil and Environmental Engineering,Duke University,Durham,North Carolina 27708-0287,Institute of Medical Physics and Biostatistics,;

    Porter School of Environment,School of Mechanical Engineering,Tel-Aviv University,Tel-Aviv 69978,Israel,Department of Civil and Environmental Engineering,Duke University,Durham,North Carolina 27708-0287,Institute of Medical Physics and Biostatistics,;

    Porter School of Environment,School of Mechanical Engineering,Tel-Aviv University,Tel-Aviv 69978,Israel,Department of Civil and Environmental Engineering,Duke University,Durham,North Carolina 27708-0287,Institute of Medical Physics and Biostatistics,;

    Porter School of Environment,School of Mechanical Engineering,Tel-Aviv University,Tel-Aviv 69978,Israel,Department of Civil and Environmental Engineering,Duke University,Durham,North Carolina 27708-0287,Institute of Medical Physics and Biostatistics,;

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

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