Ensuring microbial water quality for on-site water reuse: Importance of online sensors for reliable operation

IF 7.2 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Water Research X Pub Date : 2024-01-01 DOI:10.1016/j.wroa.2024.100215
Eva Reynaert , Deepthi Nagappa , Jürg A. Sigrist , Eberhard Morgenroth
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Abstract

A growing number of cities and regions are promoting or mandating on-site treatment and reuse of wastewater, which has resulted in the implementation of several thousand on-site water reuse systems on a global scale. However, there is only limited information on the (microbial) water quality from implemented systems. The focus of this study was on two best-in-class on-site water reuse systems in Bengaluru, India, which typically met the local water quality requirements during monthly compliance testing. This study aimed to (i) assess the microbial quality of the reclaimed water at a high temporal resolution (daily or every 15 min), and (ii) explore whether measurements from commercially available sensors can be used to improve the operation of such systems. The monitoring campaign revealed high variations in microbial water quality, even in these best-in-class systems, rendering the water inadequate for the intended reuse applications (toilet flushing and landscape irrigation). These variations were attributed to two key factors: (1) the low frequency of chlorination, and (2) fluctuations of the chlorine demand of the water, in particular of ammonium concentrations. Such fluctuations are likely inherent to on-site systems, which rely on a low level of process control. The monitoring campaign showed that the microbial water quality was most closely related to oxidation–reduction potential (ORP) and free chlorine sensors. Due to its relatively low cost and low need for maintenance, the ORP emerges as a compelling candidate for automating the chlorination to effectively manage variations in chlorine demand and ensure safe water reuse. Overall, this study underscores the necessity of integrating treatment trains, operation, and monitoring for safe on-site water reuse.

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确保现场回用水的微生物水质:在线传感器对可靠运行的重要性
越来越多的城市和地区正在推广或强制要求对废水进行现场处理和回用,这导致全球范围内实施了数千套现场水回用系统。然而,有关已实施系统的(微生物)水质的信息非常有限。本研究的重点是印度班加罗尔的两个最佳现场水回用系统,这两个系统在每月的达标测试中通常都能达到当地的水质要求。这项研究的目的是:(i) 以较高的时间分辨率(每天或每 15 分钟)评估再生水的微生物质量;(ii) 探讨是否可以利用市售传感器的测量结果来改进此类系统的运行。监测活动发现,即使在这些一流的系统中,微生物水质的变化也很大,导致水不能满足预期的回用用途(冲洗厕所和景观灌溉)。这些变化归因于两个关键因素:(1) 加氯频率低,(2) 水的氯需求量波动,特别是氨浓度的波动。这种波动很可能是现场系统固有的,因为现场系统依赖于低水平的过程控制。监测活动表明,微生物水质与氧化还原电位(ORP)和游离氯传感器的关系最为密切。由于氧化还原电位的成本相对较低,维护需求也较少,因此成为自动加氯的理想选择,可有效管理氯需求的变化,确保水的安全回用。总之,这项研究强调了整合处理列车、运行和监控以实现安全现场水回用的必要性。
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来源期刊
Water Research X
Water Research X Environmental Science-Water Science and Technology
CiteScore
12.30
自引率
1.30%
发文量
19
期刊介绍: Water Research X is a sister journal of Water Research, which follows a Gold Open Access model. It focuses on publishing concise, letter-style research papers, visionary perspectives and editorials, as well as mini-reviews on emerging topics. The Journal invites contributions from researchers worldwide on various aspects of the science and technology related to the human impact on the water cycle, water quality, and its global management.
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