期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
含碘水折点加氯过程中消毒副产物的生成影响机制 被引量:2
1
作者 张肸同 徐斌 +5 位作者 张天阳 刘志 朱静萍 高炜 沈玉琼 芮旻 《净水技术》 CAS 2020年第2期81-90,共10页
文中重点考察含碘水折点加氯过程中消毒副产物(DBPs)的生成特性,包括常规含碳类DBPs(C-DBPs)和新型含氮类DBPs(N-DBPs)。旨在通过探索不同碘离子浓度(I^-)、溴碘摩尔比(Br^-/I^-)、天然有机物(NOM)浓度以及pH条件下C-DBPs和N-DBPs的生... 文中重点考察含碘水折点加氯过程中消毒副产物(DBPs)的生成特性,包括常规含碳类DBPs(C-DBPs)和新型含氮类DBPs(N-DBPs)。旨在通过探索不同碘离子浓度(I^-)、溴碘摩尔比(Br^-/I^-)、天然有机物(NOM)浓度以及pH条件下C-DBPs和N-DBPs的生成趋势,寻求一种最佳的氯投加方式,从而减少消毒副产物的生成。试验研究结果表明,当水中只存在I^-时,沿折点加氯曲线生成的C-DBPs和N-DBPs主要是三氯甲烷(TCM)和二氯乙腈(DCAN),且随着加氯量的增加,TCM和DCAN生成浓度均逐渐增加,折点以后浓度增加更明显。当加氯量一定时,随着I^-浓度的升高,TCM和DCAN生成量反而略有下降。而当水中同时含有Br^-、I^-时,折点加氯过程中会额外产生多种具有更高细胞毒性的溴代C-DBPs[二溴一氯甲烷(DBCM)、一氯二溴甲烷(CDBM)和三溴甲烷(TBM)]和溴代N-DBPs[一溴一氯乙腈(BCAN)和二溴乙腈(DBAN)]。随着Br^-/I^-增加,TBM和DBAN浓度逐渐升高并成为主要DBPs。随着NOM浓度升高,TCM和DCAN生成量增大并逐渐饱和。pH不仅会影响折点加氯过程中氯形态变化,还会影响DBPs的生成,其中pH值=6.0时TCM生成量最少,pH值=8.0时DCAN生成量最少。 展开更多
关键词 折点加氯 碘离子(I^-) 溴离子(Br^-) 含碳消毒副产物(c-dbps) 含氮消毒副产物(N-dbps)
下载PDF
原水输水管道中消毒副产物生成势的影响因素 被引量:1
2
作者 王月婷 许航 +2 位作者 林晨烁 陈桃源 陈卫 《净水技术》 CAS 2019年第10期43-50,共8页
研究太湖流域某水厂原水输送管道沿程消毒副产物的生成势变化,并利用皮尔逊相关性分析其影响因素。结果表明:三氯甲烷生成势最高,二氯乙醛生成势最低;总生成势由高到低依次为三卤甲烷类、卤乙酸类、卤乙醛类;氯代副产物生成势的质量浓... 研究太湖流域某水厂原水输送管道沿程消毒副产物的生成势变化,并利用皮尔逊相关性分析其影响因素。结果表明:三氯甲烷生成势最高,二氯乙醛生成势最低;总生成势由高到低依次为三卤甲烷类、卤乙酸类、卤乙醛类;氯代副产物生成势的质量浓度约为溴代副产物的6.25倍;除二氯乙酸外的消毒副产物生成势出水相较于进水升高了18.61%~664.22%。此外,预氯化管段中各类副产物生成势及沿程升高比例基本高于未加氯管段,两管段变化趋势基本一致。温度与除一氯二溴甲烷外的三类甲烷类副产物生成势呈正相关;氨氮与各类副产物总生成势呈负相关;DOC与三卤甲烷类副产物生成势呈良好正相关,但与卤乙酸和卤乙醛类副产物生成势相关性不强,因而其可能适宜作为三卤甲烷生成势的指标;管道停留时间与大多数消毒副产物生成势正相关性良好。 展开更多
关键词 原水输送管道 含碳消毒副产物 消毒副产物生成势 氨氮 溶解性有机碳
下载PDF
Control of aliphatic halogenated DBP precursors with multiple drinking water treatment processes: Formation potential and integrated toxicity 被引量:15
3
作者 Yimeng Zhang Wenhai Chu +1 位作者 Dechang Yao Daqiang Yin 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第8期322-330,共9页
The comprehensive control efficiency for the formation potentials(FPs) of a range of regulated and unregulated halogenated disinfection by-products(DBPs)(including carbonaceous DBPs(C-DBPs), nitrogenous DBPs(N... The comprehensive control efficiency for the formation potentials(FPs) of a range of regulated and unregulated halogenated disinfection by-products(DBPs)(including carbonaceous DBPs(C-DBPs), nitrogenous DBPs(N-DBPs), and iodinated DBPs(I-DBPs)) with the multiple drinking water treatment processes, including pre-ozonation, conventional treatment(coagulation–sedimentation, pre-sand filtration), ozone-biological activated carbon(O_3-BAC) advanced treatment, and post-sand filtration, was investigated. The potential toxic risks of DBPs by combing their FPs and toxicity values were also evaluated.The results showed that the multiple drinking water treatment processes had superior performance in removing organic/inorganic precursors and reducing the formation of a range of halogenated DBPs. Therein, ozonation significantly removed bromide and iodide,and thus reduced the formation of brominated and iodinated DBPs. The removal of organic carbon and nitrogen precursors by the conventional treatment processes was substantially improved by O_3-BAC advanced treatment, and thus prevented the formation of chlorinated C-DBPs and N-DBPs. However, BAC filtration leads to the increased formation of brominated C-DBPs and N-DBPs due to the increase of bromide/DOC and bromide/DON.After the whole multiple treatment processes, the rank order for integrated toxic risk values caused by these halogenated DBPs was haloacetonitriles(HANs)》haloacetamides(HAMs) 〉haloacetic acids(HAAs) 〉 trihalomethanes(THMs) 〉 halonitromethanes(HNMs) 》I-DBPs(I-HAMs and I-THMs). I-DBPs failed to cause high integrated toxic risk because of their very low FPs. The significant higher integrated toxic risk value caused by HANs than other halogenated DBPs cannot be ignored. 展开更多
关键词 carbonaceous disinfection by-productsc-dbps Nitrogenous disinfection by-products(N-dbps Iodinated disinfection by-products(I-dbps Formation potential Toxic risk Drinking water treatment plant(DWTP)
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部