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首页> 外文期刊>Photochemistry and Photobiology >Comparison of the Disinfection Effects of Vacuum-UV (VUV) and UV Light on Bacillus subtilis Spores in Aqueous Suspensions at 172, 222 and 254 nm
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Comparison of the Disinfection Effects of Vacuum-UV (VUV) and UV Light on Bacillus subtilis Spores in Aqueous Suspensions at 172, 222 and 254 nm

机译:真空紫外(VUV)和紫外光对172、222和254 nm悬浮液中枯草芽孢杆菌孢子的消毒效果比较

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摘要

The efficacy of UV and vacuum-UV (VUV) disinfection of Bacillus subtilis spores in aqueous suspensions at wavelengths of 172, 222 and 254 nm was evaluated. A Xe^sub 2^* excilamp, a KrCl* excilamp and a low-pressure mercury lamp were used as almost monochromatic light sources at these three wavelengths. The first-order inactivation rate constants at 172, 222 and 254 nm were 0.0023, 0.122 and 0.069 cm^sup 2^ mJ^sup -1^, respectively. Therefore, a 2 log reduction of B. subtilis spores was reached with fluences (UV doses) of 870, 21.6 and 40.4 mJ cm^sup -2^ at these individual wavelengths. Consequently, for the inactivation of B. subtilis spores, VUV exposure at 172 nm is much less efficient than exposure at the other two wavelengths, while exposure at 222 nm is more efficient than that at 254 nm, which is probably because triplet energy transfer from DPA to thymine bases at 222 nm is higher than that at 254 nm. This research indicated quantitatively that VUV light is not practicable for microorganism disinfection in water and wastewater treatment. However, in comparison with other advanced oxidation processes (e.g. UV/TiO^sub 2^, UV/H^sub 2^O^sub 2^ or O^sub 3^/H^sub 2^O^sub 2^) the VUV-initiated photolysis of water is likely more efficient in generating hydroxyl radicals and more effective for the inactivation of microorganisms. [PUBLICATION ABSTRACT]
机译:评价了水悬浮液中波长为172、222和254 nm的枯草芽孢杆菌孢子的紫外线和真空紫外线(VUV)消毒的功效。在这三个波长下,将Xe 2 sub 2 *准分子,KrCl 2 *准分子和低压汞灯用作几乎单色的光源。在172、222和254nm处的一级失活速率常数分别为0.0023、0.122和0.069cm 2 / m 2 / m -1 -1。因此,在这些单独的波长下,枯草芽孢杆菌孢子的通量(UV剂量)分别为870、21.6和40.4mJ cm -sup -2,减少了2log。因此,对于枯草芽孢杆菌孢子的灭活,在172 nm处的VUV曝光比在其他两个波长处的曝光效率低得多,而在222 nm处的曝光比在254 nm处的曝光效率更高,这可能是因为来自胸腺嘧啶碱基在222 nm处的DPA高于254 nm。这项研究定量地表明,VUV光在水和废水处理中对微生物消毒不可行。但是,与其他高级氧化工艺(例如UV / TiO ^ sub 2 ^,UV / H ^ sub 2 ^ O ^ sub 2 ^或O ^ sub 3 ^ / H ^ sub 2 ^ O ^ sub 2 ^)相比, VUV引发的水光解作用在产生羟基自由基方面可能更有效,对微生物的灭活也更有效。 [出版物摘要]

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    《Photochemistry and Photobiology 》 |2010年第1期| p.176-181| 共6页
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    Ding Wang1[dagger], Thomas Oppenländer2, Mohamed Gamal El-Din1 and James R. Bolton*11 Department of Civil and Environmental Engineering, University of Alberta, Edmonton, AB, Canada2 Hochschule Furtwangen University (HFU), Campus Villingen-Schwenningen, Fakultät Maschinenbau undVerfahrenstechnik, Villingen-Schwenningen, GermanyReceived 17 June 2009, accepted 27 August 2009, DOI: 10.1111/j.1751-1097.2009.00640.x[dagger] Current address: Ding Wang, Department of Civil Engineering, University of Toronto, Toronto, ON M5S 1A4. Canada.* Corresponding author email: jb3@ualberta.ca (James R. Bolton)© 2009 The Authors. Journal Compilation. The American Society of Photobiolog) 0031-8655 10;

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