Assessment of hydrochemical characteristics of the Taudaha lake, Kathmandu, Nepal

R. Pant, Ganga Paudel, Bindu Dahal, K. Bishwakarma, Sanjeeb Sharma, S. Shrestha, M. L. Sharma, Mahesh Prasad Awasthi
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引用次数: 2

Abstract

Taudaha Lake is an important lake in central Nepal because of its cultural, aesthetic, ecological and economic values. The assessments of water quality and hydrochemical characteristics were carried out by collecting samples from 20 different sites of the lake in August 2021. Analysis of temperature, pH, electrical conductivity, total dissolved solids, turbidity, dissolved oxygen, total hardness, major cations (Ca2+, Mg2+, Na+, K+, Fe3+ and NH4+) and major anions (HCO3-, Cl-, NO3-, SO42- and PO43-) were carried out to assess the overall hydrochemistry of the lake. The obtained data were interpreted by using multivariate statistical techniques to explore pollution sources and characteristics of sampling points and compared with WHO and irrigation guidelines. Slightly alkaline water with less distinct spatial variation was found. The pattern of major ions is in order of Ca2+> Mg2+> Na+> K+> Fe3+> NH4+ and HCO3-> Cl-> SO42-> NO3-> PO43-.  All parameters lie within the limit of WHO guidelines. Principal component analysis (PCA) provides four major components with 73.06% cumulative variance and hierarchical cluster analysis classifies five clusters. Results of PCA, CA, Piper, Gibbs, and mixing plots suggested that the hydrochemistry of the lake is primarily controlled by underlying carbonate-dominate lithology. Similarly, Wilcox diagram suggests that lake water is not severely affected by anthropic pollution and is suitable for irrigational purposes. It is recommended for further study on seasonal, and depth-wise water quality variations along with socio-ecological and ecotourism perspectives in the future.
尼泊尔加德满都陶达哈湖水化学特征评价
陶达哈湖因其文化、美学、生态和经济价值而成为尼泊尔中部的一个重要湖泊。2021年8月,通过收集湖泊20个不同地点的样本,对水质和水化学特征进行了评估。通过分析温度、pH、电导率、总溶解固形物、浊度、溶解氧、总硬度、主要阳离子(Ca2+、Mg2+、Na+、K+、Fe3+和NH4+)和主要阴离子(HCO3-、Cl-、NO3-、SO42-和PO43-)来评价湖泊的整体水化学。利用多元统计技术对获得的数据进行解释,以探索污染源和采样点的特征,并与世卫组织和灌溉指南进行比较。微碱性水空间变化不明显。主要离子的排列顺序为Ca2+> Mg2+> Na+> K+> Fe3+> NH4+和HCO3-> Cl-> SO42-> NO3-> PO43-。所有参数都在世卫组织准则的限制范围内。主成分分析(PCA)提供了4个主成分,累积方差为73.06%,层次聚类分析分类出5个聚类。PCA图、CA图、Piper图、Gibbs图和混合图结果表明,该湖的水化学主要受下伏碳酸盐岩岩性控制。同样,Wilcox图表明,湖水没有受到人为污染的严重影响,适合用于灌溉目的。建议在未来进一步研究季节和深度水质变化以及社会生态和生态旅游的观点。
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