Department of Civil and Environmental Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055, People's Republic of China.
INRS Eau, Terre et Environnement, 490, rue de la Couronne, Québec, G1K 9A9, Canada.
Environ Geochem Health. 2020 Mar;42(3):849-861. doi: 10.1007/s10653-019-00312-8. Epub 2019 May 15.
Eutrophication has become great concern in recent years due to the fact that rivers, lakes, and reservoirs are the main drinking water source. Studies have been performed to enhance the removal of algae with ClO pre-oxidation, but there was high potential in the formation of chlorite and chlorate. In this study, ultra-sonication was employed to assist algae removal and control disinfection by-products formation in ClO pre-oxidation processes. It was found that solo ultra-sonication for 10 min (algae removal 86.11 ± 2.16%) could achieve similar algae removal efficiency as that with solo ClO (0.5 mg/L) pre-oxidation for 10 min (algae removal 87.10 ± 3.50%). In addition, no formations of chlorite and chlorate were detected in solo ultra-sonication process. Five-minutes ultra-sonication followed by 5-min 0.5 mg/L ClO treatment (total treatment time 10 min; algae removal 93.55 ± 3.22%) provided a better performance on algae removal compared to the solo ClO (0.5 mg/L) pre-oxidation for 10 min. Moreover, chlorite was undetectable. It suggests that the utilization of ultra-sonication in ClO pretreatment for algae removal has highly prevented the formations of chlorite and chlorate.
近年来,由于河流、湖泊和水库是主要的饮用水源,富营养化问题引起了极大关注。已经进行了研究,以通过 ClO 预氧化来增强藻类的去除,但形成亚氯酸盐和氯酸盐的潜力很大。在这项研究中,采用超声空化来辅助 ClO 预氧化过程中的藻类去除和控制消毒副产物的形成。结果发现,单独超声处理 10 分钟(藻类去除率 86.11±2.16%)可以达到与单独 ClO(0.5mg/L)预氧化 10 分钟(藻类去除率 87.10±3.50%)相似的藻类去除效率。此外,在单独超声处理过程中未检测到亚氯酸盐和氯酸盐的形成。5 分钟超声处理后再进行 5 分钟 0.5mg/L ClO 处理(总处理时间 10 分钟;藻类去除率 93.55±3.22%)与单独 ClO(0.5mg/L)预氧化 10 分钟相比,在藻类去除方面表现更好。而且,亚氯酸盐无法检出。这表明在 ClO 预处理中使用超声空化来去除藻类可以很好地防止亚氯酸盐和氯酸盐的形成。