GroundTruth, Kwa-Zulu Natal, South Africa.
Centre for Water Resources Research, Pietermaritzburg, University of KwaZulu-Natal, Kwa-Zulu Natal, South Africa.
Integr Environ Assess Manag. 2024 Sep;20(5):1463-1472. doi: 10.1002/ieam.4937. Epub 2024 May 7.
Improved freshwater resource management requires the implementation of widespread, effective, and timely water quality monitoring. Conventional monitoring methods are often inhibited by financial, infrastructural, and human capacity limitations, especially in developing regions. This study aimed to validate the citizen-scientist-operated transparency or clarity tube (hereafter "clarity tube") for measuring water clarity as a proxy for total suspended solids (TSS) concentration, a critical quality metric in river systems and wastewater treatment works (WWTW) effluent in Southern Africa. Clarity tubes provided a relatively accurate and precise proxy for TSS in riverine lotic systems and WWTW effluent, revealing significant inverse log-linear relationships between clarity and TSS with r = 0.715 and 0.503, respectively. We demonstrate that clarity-derived estimates of TSS concentration (TSS) can be used to estimate WWTW compliance with WWTW effluent TSS concentration regulations. The measurements can then be used to engage with WWTW management, potentially affecting WWTW performance. Overall, these findings demonstrate the usefulness of clarity tubes as low-cost, accessible, and easy-to-use citizen science tools for high spatial and temporal resolution water quality monitoring, not only in rivers in Southern Africa but also in WWTW effluent for estimating compliance, with strong global relevance to the sustainable development goals (SDGs). Integr Environ Assess Manag 2024;20:1463-1472. © 2024 The Authors. Integrated Environmental Assessment and Management published by Wiley Periodicals LLC on behalf of Society of Environmental Toxicology & Chemistry (SETAC).
改进淡水资源管理需要广泛、有效和及时地实施水质监测。传统的监测方法往往受到财政、基础设施和人力能力的限制,特别是在发展中地区。本研究旨在验证公民科学家操作的透明度或清澈度管(简称“清澈度管”)作为总悬浮固体(TSS)浓度的替代物来测量水的清澈度,TSS 是南非河流系统和废水处理厂(WWTW)出水的关键质量指标。清澈度管为河流流动系统和 WWTW 废水提供了相对准确和精确的 TSS 替代物,表明清澈度与 TSS 之间存在显著的逆对数线性关系,r 值分别为 0.715 和 0.503。我们证明,清澈度衍生的 TSS 浓度(TSS)估计值可用于估计 WWTW 对 WWTW 废水 TSS 浓度法规的遵守情况。然后可以使用这些测量值与 WWTW 管理部门进行沟通,这可能会影响 WWTW 的性能。总体而言,这些发现表明清澈度管作为低成本、可及且易于使用的公民科学工具,非常适合用于高时空分辨率水质监测,不仅在南非的河流中,而且在 WWTW 废水中用于估计合规性方面,具有很强的全球相关性,符合可持续发展目标(SDGs)。《综合环境评估与管理》2024 年;20:1463-1472。©2024 作者。综合环境评估与管理由 Wiley 期刊 LLC 代表环境毒理与化学学会(SETAC)出版。