[Characteristics of Water Environment and Its Influencing Factors in Zhari Namco Basin, Xizang].

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-08-08 DOI:10.13227/j.hjkx.202309086
Zhi-Long Li, Hui-Fang Zhang, Chang-Bing Liu, Xu Chen, Zhuo-Ga Suo-Na, DE-Ji Yang-Zong, Yun-Qiao Zhou, Xue-Rui Niu, Hui-Ke Dong, Xiao-Ping Wang
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Abstract

Zhari Namco is situated in the alpine grassland belt of northwestern Xizang with a fragile ecological environment. As the third-largest lake in Xizang, there has been a long-term lack of research data concerning its basin water environment. In an effort to elucidate the surface water environment characteristics of the basin and the factors influencing them, an extensive investigation was conducted from August 2021 to June 2022, encompassing periods of high flow, low flow, and base flow. Further, the study also involved comprehensive assessments of the water chemistry characteristics and spatial-temporal variation in lake sampling sites of the basin that were not significant by using mathematical statistics, hydrochemical analysis, correlation analysis, and principal component analysis. The findings revealed the following: ① The water in the Zhari Namco Basin exhibited an alkaline nature, with dominant ionic compositions in the lake comprising Na+, SO42-, and Cl-, whereas the rivers were primarily characterized by Ca2+, HCO3-, and SO42-. ② The main pollutants exceeding established standards included sulfates, arsenic, chlorides, and total phosphorus. The study identified significant spatiotemporal variations in water quality. Temporally, the exceedance of sulfates, arsenic, and total phosphorus was most pronounced during high-flow periods, followed by that during low-flow and base flow periods, with chloride levels showing less temporal variation. Spatially, river water quality surpassed that of the lakes, with arsenic, total phosphorus, TDS, sulfate, chloride, K+, and Na+ concentrations in lakes 1 to 2 orders of magnitude higher than those in rivers. Water qualities exceeding the established standard were primarily found in the lake, with less spatial variations within the lake itself. ③ Hydrochemical processes within the basin were found to be primarily influenced by natural phenomena, including evaporation-concentration and rock weathering. Various elements entered the lakes via surface runoff, where they continuously accumulated under the influence of evaporation-concentration processes, ultimately leading to exceedances. ④ Temporal variations in water quality were primarily attributed to increased elemental loss and intensified evaporation during high-flow periods. The spatial discrepancies in water quality were predominantly a consequence of the differing hydrodynamic conditions between flowing water bodies and enclosed water bodies.

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[西藏扎日南木错盆地水环境特征及其影响因素]。
扎日南木错位于西藏西北部高寒草原地带,生态环境脆弱。作为西藏第三大湖泊,其流域水环境研究资料长期匮乏。为阐明流域地表水环境特征及其影响因素,从 2021 年 8 月至 2022 年 6 月,对流域内的大流量期、小流量期和基流期进行了广泛调查。此外,研究还采用数理统计、水化学分析、相关分析和主成分分析等方法,对流域内不显著的湖泊取样点的水化学特征和时空变化进行了综合评估。研究结果表明: ① 扎日南木错盆地的水呈碱性,湖泊中的主要离子成分为 Na+、SO42- 和 Cl-,而河流中的主要离子成分为 Ca2+、HCO3- 和 SO42-。超过既定标准的主要污染物包括硫酸盐、砷、氯化物和总磷。研究发现水质存在明显的时空变化。从时间上看,硫酸盐、砷和总磷的超标情况在大流量期间最为明显,其次是小流量和基本流量期间,氯化物含量的时间变化较小。从空间上看,河流水质超过了湖泊水质,湖泊中的砷、总磷、TDS、硫酸盐、氯化物、K+ 和 Na+ 浓度比河流中的高出 1 到 2 个数量级。水质超过规定标准的主要是湖泊,湖泊本身的空间变化较小。流域内的水化学过程主要受自然现象的影响,包括蒸发浓缩和岩石风化。各种元素通过地表径流进入湖泊,在蒸发浓缩过程的影响下不断累积,最终导致超标。水质的时间变化主要归因于高流量期间元素流失增加和蒸发加剧。水质的空间差异主要是流动水体和封闭水体之间不同的水动力条件造成的。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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