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The performance of quaternized magnetic microspheres on control of disinfection by-products and toxicity in drinking water

机译:季铵化磁性微球对饮用水消毒副产物和毒性的控制作用

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The aim of this study was to evaluate the performance of quaternized magnetic microspheres (NDMP) on control of disinfection by-products (DBPs) and toxicity in drinking water. High concentrations of dissolved organic carbon (6.7 mg/L) and bromide (185 μg/L) were present in the raw water. The NDMP showed good performance on removing dissolved organic matter, bromide and dissolved organic nitrogen. In the present study, we investigated the formation potential (FP) of DBPs as well as the human hepatoma cells cytotoxicity and genotoxicity before and after resin treatment. The results showed that the FP of trihalomethanes (THMs), haloacetic acids (HAAs) and haloacetonitriles (HANs) were greatly reduced by the NDMP treatment with maximum removal efficiency of 73%, 56% and 81%, respectively. Additionally, the NDMP resin greatly reduced the cytotoxicity and genotoxicity of the raw water during subsequent chlorination. With increasing bromide levels, the FP of THMs, HAAs and HANs were increased by 31%, 36% and 27%, respectively. On the contrary, the FP of THMs, HAAs and HANs were reduced by 85%, 77% and 69% when the ammonia concentration reached to 10.5 mg/L. The addition of bromide increased the toxicity after chlorination due to the formation of more toxic brominated DBPs. NDMP can efficiently control the DBPs formation and toxicity in treated water, which provide us a new kind of advanced drinking water treatment technology in the future.
机译:这项研究的目的是评估季铵化磁性微球(NDMP)在控制消毒副产物(DBP)和饮用水中的毒性方面的性能。原水中存在高浓度的溶解有机碳(6.7 mg / L)和溴化物(185μg/ L)。 NDMP在去除溶解的有机物,溴化物和溶解的有机氮方面表现出良好的性能。在本研究中,我们调查了树脂处理前后DBPs的形成潜力(FP)以及人肝癌细胞的细胞毒性和基因毒性。结果表明,NDMP处理可大大降低三卤甲烷(THMs),卤乙酸(HAAs)和卤乙腈(HANs)的FP值,最大去除率分别为73%,56%和81%。另外,NDMP树脂在随后的氯化过程中大大降低了原水的细胞毒性和遗传毒性。随着溴化物含量的增加,THM,HAA和HAN的FP分别增加31%,36%和27%。相反,当氨浓度达到10.5 mg / L时,THM,HAAs和HAN的FP分别降低了85%,77%和69%。由于形成了毒性更高的溴化DBP,溴的添加增加了氯化后的毒性。 NDMP可以有效地控制处理后水中DBP的形成和毒性,这为我们将来提供了一种新型的高级饮用水处理技术。

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