首页> 外文会议>2007 American Water Works Association annual conference and exposition (ACE 07) >Investigating the Synergy of an Electrolytic reactor for Bromide Removal with Downstream Treatment Processes
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Investigating the Synergy of an Electrolytic reactor for Bromide Removal with Downstream Treatment Processes

机译:用下游处理工艺研究用于去除溴化物的电解反应器的协同作用

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Meeting the Stage 1/2 Disinfectant/Disinfection By Product Rules is a balancing act for most utilities. The Castaic Lake Water Agency (Agency) treats imported water from the California Aqueduct (West Branch of State Water Project) at its two water treatment plants. Although the water settles in two major reservoirs prior to treatment, high THM concentrations have been experienced in the past upon addition of free chlorine for distribution system residual. To complicate matters, the presence of bromide ion in the range of 100 to 300 μg/L is problematic for two reasons: 1) ozone is applied at both water treatment plants for preoxidation, which reacts with the bromide ion to form bromate by-product, and 2) upon addition of free chlorine, brominated disinfection by-products (e.g. THMs and HAAs) are formed. These brominated by-products have been linked to greater health risks. rnTo address this issue, several prototypes of an electrolytic process were tested at the Agency. Promising results were obtained in terms of bromide, DBP minimization, and microbial inactivation. A Tailored Collaboration project sponsored by AwwaRF was developed with the Agency to further advance the testing. The main purpose of the project was to further characterize and develop technology to fully understand its potential for full-scale drinking water treatment. Optimal ranges of power amperage and of contact time for bromide removal and DBP formation potential reduction were identified. The feasibility and synergy of an electrolytic reactor in a conventional water treatment plant were tested and discussed. Scalability issues were addressed.
机译:对于大多数公用事业来说,达到阶段1/2消毒剂/按产品消毒规则是平衡的行为。卡斯塔奇湖水务局(代理商)在其两个水处理厂处理从加利福尼亚渡槽(州水务计划西分部)进口的水。尽管在处理之前水会沉淀在两个主要的水库中,但是过去在添加游离氯作为分配系统残留物时,会经历高THM浓度。使事情复杂化的是,存在100至300μg/ L范围内的溴离子是有问题的,其原因有两个:1)臭氧在两个水处理厂中都进行了预氧化,臭氧与溴离子反应形成溴酸盐副产物2)加入游离氯后,会形成溴化消毒副产物(例如THM和HAA)。这些溴化副产物与更大的健康风险有关。为了解决这个问题,原子能机构对电解工艺的几个原型进行了测试。在溴化物,最小化DBP和微生物灭活方面获得了可喜的结果。与原子能机构共同开发了由AwwaRF赞助的量身定制的合作项目,以进一步推进测试。该项目的主要目的是进一步表征和开发技术,以充分了解其在大规模饮用水处理中的潜力。确定了用于去除溴化物和减少DBP形成电位的最佳功率强度和接触时间。测试和讨论了常规水处理厂中电解反应器的可行性和协同作用。解决了可伸缩性问题。

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