Water and Environmental Engineering, Graduate School of Engineering, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan.
R&D Division, Kyowakiden Industry Co., Ltd., 10-2 Kawaguchi-machi, Nagasaki 852-8108, Japan.
Sci Total Environ. 2019 Jun 1;667:540-544. doi: 10.1016/j.scitotenv.2019.02.339. Epub 2019 Feb 23.
Safety of potable reuse can be enhanced by improved water quality monitoring techniques for assessing water treatment processes. This study evaluated the efficacy of online bacterial counting for continuous monitoring of reverse osmosis (RO) membranes to remove bacteria using real-time bacteriological commercial counters and an on-site pilot-scale RO system. Prior to on-site assessments, the online bacterial counting was verified by comparing the measurement of fluorescent particles in water with flow cytometry. During a seven day pilot test of RO treatment at a water reclamation plant, online bacterial counts in RO permeate were monitored below 15 counts/mL; whereas the bacterial counts in RO feed water were approximately 2500 to 10,000 counts/mL. Removal rates of bacterial counts ranged from 2.6 to 3.1-log (average = 2.9-log) by continuously monitoring bacterial removal. This is greater than a 2-log reduction frequently determined using other water quality surrogates (i.e., electrical conductivity). Overall, the continuous monitoring of bacteria in RO feed and permeate can be implemented without the addition of chemicals to provide near real-time bacterial counts to measure their reduction after RO treatment. This can be developed for continuous performance monitoring of the RO process, providing greater assurance of microbial water quality after RO treatment.
通过改进水质监测技术来评估水的处理过程,可提高饮用水再利用的安全性。本研究采用实时细菌商业计数器和现场中试反渗透 (RO) 系统,评估在线细菌计数对反渗透膜去除细菌的连续监测效果。在现场评估之前,通过比较水中荧光颗粒与流式细胞术的测量,对在线细菌计数进行了验证。在水再生厂进行的为期七天的反渗透处理中试期间,反渗透渗透水中的在线细菌计数监测值低于 15 计数/mL;而反渗透进水的细菌计数约为 2500 至 10000 计数/mL。通过连续监测细菌去除,细菌计数的去除率范围为 2.6 至 3.1-log(平均为 2.9-log)。这比使用其他水质替代物(即电导率)经常确定的 2-log 减少量更大。总体而言,无需添加化学物质即可对 RO 进水中的细菌进行连续监测,并对反渗透处理后的细菌减少量进行实时测量。这可以用于反渗透过程的连续性能监测,为反渗透处理后微生物水质提供更大的保证。