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Photocatalytic Oxidation of Selected Organic Contaminants and Inactivation of Microorganisms in a Continuous Flow Reactor Packed With Titania-Doped Silica

机译:光催化氧化选定的有机污染物及其在用二氧化钛 - 掺杂二氧化硅包装的连续流动反应器中的微生物灭活

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Two annular continuous flow reactors with nominal volumes of 400 mL and 150 mL were packed with silica gel pellets that were doped with titania (TiO{sub}2) (12 wt%). The reactors were configured with UV lamps in the center of the reactors. SOC oxidation experiments were performed in a single-pass mode with bicarbonate ions present and in a low dissolved oxygen environment. SOC concentrations decreased (ranging from 40% to 95%) without bicarbonate present. These removal efficiencies were not affected by moderate bicarbonate concentrations (up to 200 mg/L as NaHCO{sub}3) or low dissolved oxygen levels (2 mg/L). Microbial experiments were performed for the inactivation of selected viruses and bacteria. The log [N{sub}0/N] values resulting from two hours of 254-nm UV irradiation for the bacteriophages ΦX-174, PRD-1, and MS-2 were 1.67, 1.43, and 1.65, respectively. The log [N{sub}0/N] values resulting from two hours of 254-nm UV irradiation for the bacteria Escherichia coli, Staphylococcus aureus, and Pseudomonas aeruginosa were 1.70, 1.40, and 1.62, respectively. In some instances experiments performed without pellets in the reactor produced greater inactivation, but in all experiments inactivation was below drinking water disinfection requirements.
机译:用400mL和150mL的标称体积两个环形连续流反应器填充有被掺杂有二氧化钛的是硅胶颗粒(氧化钛{子} 2)(12重量%)。将反应器配置为与UV灯在反应器的中心。 SOC氧化实验在单通模式与存在的碳酸氢根离子和在低溶解氧的环境中进行。 SOC浓度下降(从40%到95%)在没有碳酸氢盐存在。这些去除效率(高达200毫克/升碳酸氢钠作为{子} 3)没有受到中等碳酸氢盐浓度或低溶解氧水平(2毫克/升)。微生物实验为选定的病毒和细菌灭活执行。日志[N {子} 0 / N]从​​两小时分别254纳米UV照射的噬菌体φX-174,PRD-1和MS-2分别为1.67,1.43,和1.65,得到的值。日志[N {子} 0 / N]从​​两小时分别为细菌大肠杆菌,金黄色葡萄球菌和绿脓杆菌是1.70,1.40,和1.62,254纳米UV照射得到的值。在一些实例中,而不在反应器中进行的粒料实验产生更大的失活,但在所有的实验中失活低于饮用水消毒要求。

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