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Disinfection of Water Containing Natural Organic Matter by Using Ozone-Initiated Radical Reactions

机译:臭氧引发的自由基反应对天然有机物进行消毒

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摘要

Ozone is widely used to disinfect drinking water and wastewater due to its strong biocidal oxidizing properties. Recently, it was reported that hydroxyl radicals (·OH), resulting from ozone decomposition, play a significant role in microbial inactivation when Bacillus subtilis endospores were used as the test microorganisms in pH controlled distilled water. However, it is not yet known how natural organic matter (NOM), which is ubiquitous in sources of drinking water, affects this process of disinfection by ozone-initiated radical reactions. Two types of water matrix were considered for this study. One is water containing humic acid, which is commercially available. The other is water from the Han River. This study reported that hydroxyl radicals, initiated by the ozone chain reaction, were significantly effective at B. subtilis endospore inactivation in water containing NOM, as well as in pH-controlled distilled water. The type of NOM and the pH have a considerable effect on the percentage of disinfection by hydroxyl radicals, which ranged from 20 to 50%. In addition, the theoretical T value of hydroxyl radicals for 2-log B. subtilis removal was estimated to be about 2.4 × 104 times smaller than that of ozone, assuming that there is no synergistic activity between ozone and hydroxyl radicals.
机译:臭氧因其强大的杀菌作用而被广泛用于饮用水和废水消毒。最近,据报道,当在控制pH的蒸馏水中将枯草芽孢杆菌内生孢子用作测试微生物时,由臭氧分解产生的羟基自由基(· OH)在微生物失活中起着重要作用。但是,目前尚不清楚饮用水源中普遍存在的天然有机物(NOM)如何通过臭氧引发的自由基反应影响这一消毒过程。本研究考虑了两种类型的水基质。一种是含有腐殖酸的水,其是可商购的。另一个是来自汉江的水。这项研究报告说,由臭氧链反应引发的羟基自由基在含NOM的水以及pH值控制的蒸馏水中对枯草芽孢杆菌内生孢子的灭活具有显着的效果。 NOM的类型和pH值对被羟基自由基消毒的百分比有很大影响,范围从20%到50%。另外,假设臭氧之间不存在协同活性,则用于去除2-log枯草芽孢杆菌的羟基自由基的理论T值约为臭氧的2.4×10 4 倍。和羟基自由基。

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