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中国汉水中下游水质的时空变化评价。

Spatiotemporal variation evaluation of water quality in middle and lower Han River, China.

机构信息

Jiangxi Academy of Water Science and Engineering, Nanchang, China.

State Key Laboratory of Water Resources & Hydropower Engineering, Wuhan University, Wuhan, China.

出版信息

Sci Rep. 2022 Aug 19;12(1):14125. doi: 10.1038/s41598-022-16808-w.

Abstract

As the water source for the middle route of the South-to-North Water Transfer Project, the Han River in China plays a role of the world's largest inter-basin water transfer project. However, this human-interfered area has suffered from over-standard pollution emission and water blooms in recent years, which necessitates urgent awareness at both national and provincial scales. To perform a comprehensive analysis of the water quality condition of this study area, we apply both the water quality index (WQI) and minimal WQI (WQI) methods to investigate the spatiotemporal variation characteristics of water quality. The results show that 8 parameters consisting of permanganate index (PI), chemical oxygen demand (COD), total phosphorus (TP), fluoride (F-), arsenic (As), plumbum (Pb), copper (Cu), and zinc (Zn) have significant discrepancy in spatial scales, and the study basin also has a seasonal variation pattern with the lowest WQI values in summer and autumn. Moreover, compared to the traditional WQI, the WQI model, with the assistance of stepwise linear regression analysis, could exhibit more accurate explanation with the coefficient of determination (R) and percentage error (PE) values being 0.895 and 5.515%, respectively. The proposed framework is of great importance to improve the spatiotemporal recognition of water quality patterns and further helps develop efficient water management strategies at a reduced cost.

摘要

作为南水北调中线工程的水源地,中国的汉江在世界最大的跨流域调水工程中发挥着重要作用。然而,近年来,这个受人类干预的地区遭受了超标污染排放和水华的困扰,这在国家和省级层面都需要引起紧急关注。为了全面分析研究区域的水质状况,我们应用水质指数(WQI)和最小 WQI(WQI)方法来研究水质的时空变化特征。结果表明,高锰酸盐指数(PI)、化学需氧量(COD)、总磷(TP)、氟化物(F-)、砷(As)、铅(Pb)、铜(Cu)和锌(Zn)这 8 个参数在空间尺度上存在显著差异,研究流域还存在季节性变化模式,夏季和秋季的 WQI 值最低。此外,与传统的 WQI 相比,WQI 模型在逐步线性回归分析的辅助下,可以更准确地解释,其决定系数(R)和百分比误差(PE)值分别为 0.895 和 5.515%。该框架对于提高水质模式的时空识别能力具有重要意义,并有助于以更低的成本制定更有效的水资源管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0638/9391420/c1d946b5271a/41598_2022_16808_Fig1_HTML.jpg

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