长江水质的空间分异及环境因子在多尺度上的影响
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X522

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国家重点研发计划项目(2021YFC3201005)


Spatial differentiation of water quality in the Yangtze River and the impact of environmental factors on multiple scales
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    摘要:

    在长江流域干支流共布设69个点位,对主要水质参数进行评估与空间自相关分析,并探讨不同空间尺度下多环境因素对长江水质的影响。结果表明,长江流域水质较好,近半数采样点达到3类及以上水平,干支流之间差异明显。DO、TP和TN在整体上有明显聚集趋势,但局部空间中又具有特定的分布特征。另外,不同空间尺度下水质参数与影响因素之间关系复杂,且地理加权回归(Geographically weighted regression,GWR)模型应用效果总是优于普通最小二乘法(Ordinary least squares,OLS)模型。在全局尺度上,降水和水体面积对水质具有积极作用,是DO和NH3-N的主要影响因素;而气温和夜间灯光则表现出消极作用,是TP、TN、高锰酸盐指数和WQI(综合污染状况指数)的关键相关因素,其中气温还对水体 pH起到重要作用。在局部尺度上,多种影响因素与水质参数之间存在着复杂关联,在不同空间尺度上的作用存在差异,主要体现在归一化植被指数(Normalized difference vegetation index,NDVI)、人口密度和建设用地的影响上。综上,本研究深入探讨了多空间尺度下水质变化的主要驱动机制,为长江水质保护与调控提供了重要依据。

    Abstract:

    A total of 69 sites were deployed in the main and tributary streams of the Yangtze River Basin to evaluate and analyze the spatial autocorrelation of main water quality parameters and to explore the influence of multiple environmental elements on the water quality of the Yangtze River at different spatial scales. The results showed that nearly half of the sampling sites had water quality of category 3 or above, with obvious differences between the main streams and tributaries. DO, TP and TN had obvious aggregation trends on the whole, but had specific distribution characteristics in the local space. In addition, the relationship between water quality parameters and influencing factors at different spatial scales is complex, and the application of Geographically Weighted Regression model is always better than Ordinary Least Squares model. At the global scale, precipitation and water body area positively contributed to water quality and were the main factors influencing DO and NH3-N, while temperature and nighttime lighting had negative effects and were the key correlates of TP, TN, permanganate index, and WQI (composite pollution status index), with temperature also significantly influencing water body pH. At the local scale, there were complex correlations between multiple influencing factors and water quality parameters, with differences in their roles at different spatial scales, mainly in the effects of NDVI (Normalized difference vegetation index), population density and built-up land. In summary, this study thoroughly explored the main driving mechanisms of water quality changes at multiple spatial scales, providing an important basis for the protection and regulation of water quality in the Yangtze River.

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林豪杰,张芮青,王孜晔,乔桥,闫振广.长江水质的空间分异及环境因子在多尺度上的影响[J].上海海洋大学学报,2025,34(4):905-918.
LIN Haojie, ZHANG Ruiqing, WANG Ziye, QIAO Qiao, YAN Zhenguang. Spatial differentiation of water quality in the Yangtze River and the impact of environmental factors on multiple scales[J]. Journal of Shanghai Ocean University,2025,34(4):905-918.

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  • 收稿日期:2024-10-23
  • 最后修改日期:2024-12-08
  • 录用日期:2025-01-18
  • 在线发布日期: 2025-07-13
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