Craik Stephen A, Smith Daniel W, Chandrakanth Mysore, Belosevic Miodrag
Department of Civil and Environmental Engineering, University of Alberta, Rm. 304 Environmental Engineering Building, Edmonton AB, Canada T6G 2M8.
Water Res. 2003 Sep;37(15):3622-31. doi: 10.1016/S0043-1354(03)00285-9.
Static mixers may be used to dissolve gaseous ozone in water treatment facilities in order to provide protection against the waterborne parasite Cryptosporidium parvum. The objective of this study was to determine the effect of a brief exposure to turbulent gas-liquid mixing conditions in a static mixer on inactivation of C. parvum oocysts by ozone. Inactivation measured in an ozone contacting apparatus that employed a static mixer for ozone dissolution was compared to predictions based on a previously published kinetic model of C. parvum inactivation by dissolved ozone in gently stirred batch reactors. Although initial contact in the static mixer had no immediate effect on the oocysts, a 20% increase in the rate of inactivation during subsequent contact with dissolved ozone was observed. Increasing the degree of turbulence within the static mixer did not yield additional inactivation. Use of static mixers for dissolution of ozone in drinking water treatment systems may provide limited enhancement of C. parvum inactivation by dissolved ozone.
在水处理设施中,静态混合器可用于将气态臭氧溶解于水中,以防范水源性寄生虫微小隐孢子虫。本研究的目的是确定在静态混合器中短暂暴露于湍流气液混合条件下,臭氧对微小隐孢子虫卵囊的灭活效果。将采用静态混合器溶解臭氧的臭氧接触装置中的灭活情况,与基于先前发表的在温和搅拌间歇式反应器中溶解臭氧对微小隐孢子虫灭活的动力学模型所做的预测进行比较。尽管在静态混合器中的初始接触对卵囊没有立即产生影响,但在随后与溶解臭氧接触期间,观察到灭活率提高了20%。增加静态混合器内的湍流程度并未带来额外的灭活效果。在饮用水处理系统中使用静态混合器溶解臭氧,可能会有限地增强溶解臭氧对微小隐孢子虫的灭活效果。