Water quality assessment and pollution threat to safe water supply for three river basins in Malaysia

水质 环境科学 污染 污染物 供水 水资源管理 原水 流域 水污染 水资源 资源(消歧) 构造盆地 环境工程 水文学(农业) 地理 计算机科学 工程类 环境化学 古生物学 生物 有机化学 化学 岩土工程 地图学 计算机网络 生态学
作者
Jia Xing Loi,Adeline Seak May Chua,Mohamad Fairus Rabuni,Chee Keong Tan,Sai Hin Lai,Yasuyuki Takemura,Kazuaki Syutsubo
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:832: 155067-155067 被引量:72
标识
DOI:10.1016/j.scitotenv.2022.155067
摘要

Pollution in raw water poses increasing threats to safe water supply in many developing countries. Therefore, a comprehensive water quality assessment is essential to provide various stakeholders the information to deal with this problem. This study applies chemometrics to interpret a recent 10-year water quality data from three major river basins (Selangor River basin, Langat River basin, and Klang River basin) frequented by water supply disruptions in Selangor, Malaysia. We present the application of selected chemometrics approaches, namely agglomerative hierarchical cluster analysis, principal component analysis, factor analysis and Man-Kendall trend analysis. The results showed three spatial groups of monitoring stations with similar land use practices and pollution characteristics. Besides spatial differences, periodic variations were observed when similar pollutants exhibited different pollution loads during rainy and dry periods. We found that nitrogen species, total suspended solids, and dissolved solids represented the major pollution loads in the studied basins. The results further confirmed a significant increasing trend in ammonia pollution. Our study demonstrates how ammonia pollutant is likely to pose a threat to water supply and highlights the vulnerability of Selangor's water resource system to water pollution. The results of this study could facilitate decision making towards more holistic strategies, specifically, incorporating ammonia treatment facilities into the conventional water treatment plant will help achieve smooth water supply operations.
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