首页> 外文期刊>Environmental Science and Pollution Research >Formation potentials of bromate and brominated disinfection by-products in bromide-containing water by ozonation
【24h】

Formation potentials of bromate and brominated disinfection by-products in bromide-containing water by ozonation

机译:臭氧处理含溴水中溴酸盐和溴化消毒副产物的形成潜力

获取原文
获取原文并翻译 | 示例
       

摘要

The ozonation involved in drinking water treatment raises issues of water quality security when the raw water contains bromide (Br-). Br- ions may be converted to bromate (BrO3-) during ozonation and some brominated disinfection by-products (Br-DBPs) in the following chlorination. In this study, the effects of ozone (O-3) dosage, contact time, pH, and Br- and ammonia (NH3-N) concentrations on the formation of BrO3- and Br-DBPs have been investigated. The results show that decreasing the initial Br- concentration is an effective means of controlling the formation of BrO3-. When the concentration of Br- was lower than 100 mu g/L, by keeping the ratio of O-3 dosage to dissolved organic carbon (DOC) concentration at less than 1, BrO3- production was effectively suppressed. The concentration of BrO3- steadily increased with increasing O-3 dosage at high Br- concentration (> 900 mu g/L). Additionally, a longer ozonation time increased the concentrations of BrO3- and total organic bromine (TOBr), while it had less impact on the formation potentials of brominated trihalomethanes (Br-THMFP) and haloacetic acids (Br-HAAFP). Higher pH value and the presence of ammonia may lead to an increase in the formation potential of BrO3- and Br-DBPs.
机译:当原水中含有溴化物(Br-)时,饮用水处理中涉及的臭氧处理会提高水质安全性。在臭氧化过程中,溴化物可能会转化为溴酸盐(BrO3-),而在随后的氯化过程中,溴化物可能会转化为溴化消毒副产物(Br-DBPs)。在这项研究中,已研究了臭氧(O-3)用量,接触时间,pH以及Br-和氨(NH3-N)浓度对BrO3-和Br-DBPs形成的影响。结果表明,降低初始Br-浓度是控制BrO3-形成的有效手段。当Br-的浓度低于100μg/ L时,通过将O-3剂量与溶解性有机碳(DOC)的浓度之比保持在小于1,有效地抑制了BrO3-的产生。在高Br-浓度(> 900μg / L)下,随着O-3剂量的增加,BrO3-的浓度稳定增加。此外,更长的臭氧化时间增加了BrO3-和总有机溴(TOBr)的浓度,同时对溴化三卤甲烷(Br-THMFP)和卤代乙酸(Br-HAAFP)的形成潜力影响较小。较高的pH值和氨的存在可能导致BrO3-和Br-DBPs的形成潜力增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号