Department of Civil and Environmental Engineering, University of Massachusetts, Amherst, MA, 01003, United States.
Department of Civil and Environmental Engineering, University of Rhode Island, Kingston, RI, 02889, United States.
Water Res. 2019 Jun 1;156:110-124. doi: 10.1016/j.watres.2019.02.051. Epub 2019 Mar 11.
This study investigated the effects of ferrate and ozone pre-oxidation on disinfection byproduct (DBP) formation from subsequent chlorination or chloramination. Two natural waters were treated at bench-scale under various scenarios (chlorine, chloramine, each with ferrate pre-oxidation, and each with pre-ozonation). The formation of brominated and iodinated DBPs in fortified natural waters was assessed. Results indicated ferrate and ozone pre-oxidation were comparable at molar equivalent doses for most DBPs. A net decrease in trihalomethanes (including iodinated forms), haloacetic acids (HAAs), dihaloacetonitrile, total organic chlorine, and total organic iodine was found with both pre-oxidants as compared to chlorination only. An increase in chloropicrin and minor changes in total organic bromine yield were caused by both pre-oxidants compared to chlorination only. However, ozone led to higher haloketone and chloropicrin formation potentials than ferrate. The relative performance of ferrate versus ozone for DBP precursor removal was affected by water quality (e.g., nature of organic matter and bromide concentration) and oxidant dose, and varied by DBP species. Ferrate and ozone pre-oxidation also decreased DBP formation from chloramination under most conditions. However, some increases in THM and dihaloacetonitrile formation potentials were observed at elevated bromide levels.
本研究考察了高铁酸盐和臭氧预氧化对后续氯化或氯胺消毒副产物(DBP)形成的影响。在各种情况下(氯、氯胺、分别进行高铁酸盐预氧化和预臭氧化),在台架规模下处理了两种天然水。评估了强化天然水中溴代和碘代 DBP 的形成情况。结果表明,对于大多数 DBP,高铁酸盐和臭氧预氧化在摩尔当量剂量上相当。与单独氯化相比,两种预氧化剂均导致三卤甲烷(包括碘代形式)、卤乙酸(HAAs)、二卤乙腈、总有机氯和总有机碘的净减少。与单独氯化相比,两种预氧化剂均导致氯仿和少量总有机溴产量增加。然而,与高铁酸盐相比,臭氧导致更高的卤酮和氯仿形成潜力。对于 DBP 前体去除,高铁酸盐相对于臭氧的相对性能受水质(例如,有机物的性质和溴化物浓度)和氧化剂剂量的影响,并因 DBP 种类而异。在大多数情况下,高铁酸盐和臭氧预氧化也降低了氯胺消毒副产物的形成。然而,在溴化物水平升高时,观察到 THM 和二卤乙腈形成潜力的一些增加。