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比较六价铁(FeO4(2-))和臭氧对枯草芽孢杆菌孢子的灭活效果。

Comparison of Fe(VI) (FeO4(2-)) and ozone in inactivating Bacillus subtilis spores.

机构信息

Faculty of Industrial Sciences and Technology, University Malaysia Pahang, 26300 Kuantan, Gambang, Pahang, Malaysia.

出版信息

Chemosphere. 2011 May;83(9):1228-33. doi: 10.1016/j.chemosphere.2011.03.030. Epub 2011 Apr 13.

Abstract

The protozoan parasites such as Cryptosporidiumparvum and Giardialamblia have been recognized as a frequent cause of recent waterborne disease outbreaks because of their strong resistance against chlorine disinfection. In this study, ozone and Fe(VI) (i.e., FeO(4)(2-)) were compared in terms of inactivation efficiency for Bacillus subtilis spores which are commonly utilized as an indicator of protozoan pathogens. Both oxidants highly depended on water pH and temperature in the spore inactivation. Since redox potential of Fe(VI) is almost the same as that of ozone, spore inactivation efficiency of Fe(VI) was expected to be similar with that of ozone. However, it was found that ozone was definitely superior over Fe(VI): at pH 7 and 20°C, ozone with the product of concentration×contact time (C¯T) of 10mgL(-1)min inactivate the spores more than 99.9% within 10min, while Fe(VI) with C¯T of 30mgL(-1) min could inactivate 90% spores. The large difference between ozone and Fe(VI) in spore inactivation was attributed mainly to Fe(III) produced from Fe(VI) decomposition at the spore coat layer which might coagulate spores and make it difficult for free Fe(VI) to attack live spores.

摘要

原生动物寄生虫,如小隐孢子虫和蓝氏贾第鞭毛虫,由于其对氯消毒的强抵抗力,已被认为是最近水传播疾病爆发的常见原因。在这项研究中,臭氧和六价铁(即 FeO(4)(2-))在枯草芽孢杆菌孢子的灭活效率方面进行了比较,枯草芽孢杆菌孢子通常用作原生动物病原体的指标。这两种氧化剂在孢子失活中都高度依赖水的 pH 值和温度。由于六价铁的氧化还原电位几乎与臭氧相同,因此预计六价铁的孢子失活效率与臭氧相似。然而,研究发现臭氧明显优于六价铁:在 pH 值为 7 和 20°C 时,臭氧在浓度×接触时间(C¯T)为 10mgL(-1)min 时,在 10min 内可使孢子失活超过 99.9%,而六价铁在 C¯T 为 30mgL(-1)min 时,只能使 90%的孢子失活。臭氧和六价铁在孢子失活方面的巨大差异主要归因于六价铁在孢子外壳层分解产生的三价铁,这可能会使孢子凝结,使游离的六价铁难以攻击活孢子。

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