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Pilot scale evaluation of ozone versus peroxone for trihalomethane and bromate production.

机译:对三卤甲烷和溴酸盐生产的臭氧与过氧乐进行中试评估。

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A pilot plant located at the A. H. Weeks Water Treatment Plant in Windsor, ON was used to investigate the effects of peroxone (hydrogen peroxide + ozone) versus ozone on bromate and trihalomethane formation. The raw water source used in this study was the Detroit River. The peroxide dose was varied while ozone dose remained constant. The effect of adding peroxide prior to ozonation and after ozonation was investigated. The raw water bromide concentrations ranged between 12 and 47 mug/L.; The system in which peroxide was added after ozonation, the trihalomethane concentrations were found to be up to 46% higher compared to the ozone only system. In addition, increasing the hydrogen peroxide/ozone ratio from 0.1 to 0.35, led to an increase in trihalomethane concentrations from 5.1 mug/L to 9.1 mug/L, respectively. In terms of bromate formation, peroxone (post-ozonation) was able to reduce bromate concentration by 33% on average, compared to ozone. However, as the peroxide dose was increased the bromate formation also increased, from 6.0 mug/L to 10.5 mug/L for ratios of 0.1 and 0.35 respectively, although these values were still lower than that of the ozone samples. (Abstract shortened by UMI.)
机译:位于安大略省温莎市A. H. Weeks水处理厂的中试工厂用于研究过氧磷(过氧化氢+臭氧)与臭氧对溴酸盐和三卤甲烷形成的影响。本研究中使用的原水是底特律河。过氧化物剂量变化而臭氧剂量保持恒定。研究了在臭氧化之前和臭氧化之后添加过氧化物的效果。原水溴化物浓度范围为12至47杯/升。在臭氧处理后添加过氧化物的系统中,与仅使用臭氧的系统相比,发现三卤代甲烷的浓度高出46%。另外,将过氧化氢/臭氧比从0.1增加到0.35,导致三卤代甲烷浓度分别从5.1马克杯/升增加到9.1马克杯/升。就溴酸盐的形成而言,与臭氧相比,过氧酮(臭氧化后)平均可使溴酸盐浓度降低33%。但是,随着过氧化物剂量的增加,溴酸盐的形成也增加了,比率分别为0.1和0.35时,从6.0杯/升增加到10.5杯/升,尽管这些值仍然低于臭氧样品的值。 (摘要由UMI缩短。)

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