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Impacts of permanganate/bisulfite pre-oxidation on DBP formation during the post chlorine disinfection of ciprofloxacin-contaminated waters

机译:高锰酸盐/亚硫酸氢盐预氧化对环氯杂环污染水后氯消毒过程中DBP形成的影响

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Bisulfite-activated permanganate (PM/BS) oxidation process can oxidize ciprofloxacin in complex water matrices rapidly. However, effects of PM/BS pre-oxidation on the formation of disinfection byproducts (DBPs) during post-chlorination of ciprofloxacin-contaminated waters need to be addressed. This study investigated the formation of trihalomethanes (THMs), haloacetonitriles (HANs), haloketones and trichloronitromethane during chlorination of ciprofloxacin-contaminated humic acid (HA), bovine serum albumin (BSA) and alginate solutions, and revealed the effects of PM/BS pre-oxidation on ciprofloxacin degradation and DBP formation during post-chlorination, considering the presence of Br~-. Only THMs and HANs were quantifiable. THMs were the most abundant. Ciprofloxacin-contaminated HA exhibited the highest formation potential of DBPs and integrated toxic risk value (ITRV). In the absence of Br~-, PM/BS pre-oxidation reduced or hardly affected the toxicity risks derived from DBPs formed from the post-chlorination. However, the presence of Br~- greatly reduced the degradation of ciprofloxacin (30-50%) in various waters. In the ciprofloxacin-contaminated waters containing Br~-, the total ITRVs of DBPs formed from post-chlorination increased by 60%-800% with PM/BS pre-oxidation, attributing to the enhanced formation of DBPs especially bromochloroacetonitrile and dibromoacetonitrile. Overall, PM/BS is a potential pre-oxidation technology for the treatment of ciprofloxacin-contaminated waters without bromide.
机译:亚硫酸氢盐活化的高锰酸盐(PM / BS)氧化方法可以迅速氧化复杂水基质中的环丙沙星。然而,需要解决在环氯酰杂环酰胺污染水后氯化过程中PM / BS预氧化对消毒副产物(DBPS)的形成的影响。本研究研究了三卤代甲烷(THM),卤代乙腈(HANS),卤代酮和三氯硝基甲烷在环丙沙星污染的腐殖酸(HA),牛血清白蛋白(BSA)和藻酸盐溶液中的形成,并揭示了PM / BS前的影响 - 考虑到Br〜 - - - 氯化后环丙沙星降解和DBP形成的氧化,考虑到Br〜 - - - - 甲基。只有THM和HANS可量化。 thm是最丰富的。环丙沙星污染的HA表现出DBPS和综合毒性风险价值(ITRV)的最高形成电位。在没有BR〜 - 的情况下,PM / BS预氧化还原或几乎影响了从氯化后形成的DBPS衍生的毒性风险。然而,BR〜 - 大大降低了各种水中环丙沙星(30-50%)的降解。在含有Br〜 - 的环丙沙星污染水中,由氯化后形成的DBP的总ITRV增加了60%-800%,PM / BS预氧化增加了60%-800%,归因于Dbps的增强形成,尤其是溴氯乙腈和二溴乙腈。总体而言,PM / BS是用于治疗不含溴化物的环丙沙星污染水的潜在预氧化技术。

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