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基于流域单元的巢湖周边景观综合特征对河流水质的影响

[Effect of Integrated Landscape Characteristics Around Chaohu Lake on River Water Quality Based on Watershed Units].

作者信息

Wang Jie, Liu An-An, Zhang Jun-Wu, Chen Qing-Song, Yang Hui-Wen

机构信息

School of Resources and Environmental Engineering, Anhui University, Hefei 230601, China.

Anhui Province Key Laboratory of Wetland Ecosystem Protection and Restoration, Anhui University, Hefei 230601, China.

出版信息

Huan Jing Ke Xue. 2024 Jun 8;45(6):3214-3224. doi: 10.13227/j.hjkx.202306084.

Abstract

Considering the impact of differences in watershed characteristics on river water quality, with the Chaohu Lake Basin as the research object, based on the data of water quality, meteorology, topography, soil, and remote sensing images of the river monitoring points from October 2019 to September 2020, the watershed unit at each monitoring point was divided through digital terrain analysis, and the comprehensive landscape characteristics based on the watershed unit were explored through the comprehensive use of correlation analysis, redundancy analysis, and multiple regression analysis to investigate the influence of comprehensive landscape characteristics based on watershed units (including land use, climate, topography, soil, etc.) on the water quality of rivers around Chaohu Lake. The results showed that:① the water quality of rivers around Chaohu Lake had large spatial differences, with the main pollutants being total nitrogen and ammonia nitrogen. Most of the rivers had total nitrogen concentrations exceeding the Class V water quality standards, and the areas with serious nitrogen and phosphorus pollution were concentrated in the urban area of Hefei and the surrounding rivers, as well as in the middle and lower reaches of the Fengle and Hangbu Rivers. ② The comprehensive landscape characteristics of the watershed unit had a significant impact on the river water quality. Among them, the proportion of built-up land, the density of patches, the dispersion and juxtaposition index, and the Shannon diversity index were positively correlated with the water quality indicators, whereas the proportion of forest and grassland and the spreading index were negatively correlated with the water quality indicators. ③ In different seasons, the effect of the integrated landscape characteristics of the watershed unit on river water quality was stronger in the wet season than in the dry season, which was mainly caused by the difference in precipitation in the dry and wet seasons.

摘要

考虑到流域特征差异对河流水质的影响,以巢湖流域为研究对象,基于2019年10月至2020年9月河流监测点的水质、气象、地形、土壤及遥感影像数据,通过数字地形分析划分各监测点的流域单元,并综合运用相关性分析、冗余分析和多元回归分析探究基于流域单元的综合景观特征(包括土地利用、气候、地形、土壤等)对巢湖周边河流水质的影响。结果表明:①巢湖周边河流的水质存在较大空间差异,主要污染物为总氮和氨氮。多数河流的总氮浓度超过Ⅴ类水质标准,氮磷污染严重的区域集中在合肥市区及周边河流,以及丰乐河和杭埠河中下游。②流域单元的综合景观特征对河流水质有显著影响。其中,建设用地比例、斑块密度、分散与并列指数以及香农多样性指数与水质指标呈正相关,而森林和草地比例以及蔓延指数与水质指标呈负相关。③在不同季节,流域单元综合景观特征对河流水质的影响在湿季比干季更强,这主要是由干湿季降水差异造成的。

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