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[东江源流域景观格局对水质的尺度效应]

[Scale Effects of Landscape Pattern on Water Quality in Dongjiang River Source Watershed].

作者信息

Chen You-Liang, Zou Wen-Min, Liu Xing-Gen, Zeng Jin-Feng, Li Dan, Zheng Han-Yi

机构信息

School of Geosciences and Info-Physics, Central South University, Changsha 410000, China.

School of Civil and Surveying & Mapping Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

出版信息

Huan Jing Ke Xue. 2022 Nov 8;43(11):5053-5063. doi: 10.13227/j.hjkx.202201128.

Abstract

Based on water quality monitoring data and land use data, Dongjiang River source watershed water quality variation characteristics from 2017 to 2019 and the relationships between the landscape pattern of the Dongjiang River source watershed and water quality were analyzed using spatial analysis, correlation analysis, and redundancy analysis. The results showed that:① the water quality of the Dongjiang River source watershed improved overall, but the total nitrogen pollution was still severe. As of 2019, the annual average concentration of total nitrogen in all sampling points exceeded the type Ⅲ water quality standard. ② At the landscape level, water quality was positively correlated with landscape shape index, number of patches, and Shannon's diversity index but negatively correlated with largest patch index and aggregation index. Considering the land use type, construction land was the primary source of total nitrogen and total phosphorus. Landscape shape index and number of forest patches were positively correlated with NH-N. The number of forest patches was positively correlated with total phosphorus. However, the largest patch index and aggregation index of the forest were negatively correlated with total phosphorus. The number of patches of grassland was positively correlated with total phosphorus. The aggregation index of grassland was negatively correlated with total phosphorus. ③ It is suggested that management departments should focus on the optimization of the landscape pattern within the 2000 m buffer zone of monitoring points. The reasonable allocation of urban sewage-centralized treatment facilities, strengthening management of abandoned mining areas, improvement of intensive treatment of cultivated land, and construction of shelterbelt in areas where cultivated land is concentrated are beneficial for the water quality of Dongjiang River source watershed.

摘要

基于水质监测数据和土地利用数据,运用空间分析、相关性分析和冗余分析方法,对东江源流域2017—2019年水质变化特征以及东江源流域景观格局与水质的关系进行了分析。结果表明:①东江源流域水质总体有所改善,但总氮污染仍较为严重。截至2019年,各采样点总氮年均浓度均超过Ⅲ类水质标准。②在景观水平上,水质与景观形状指数、斑块数量和香农多样性指数呈正相关,与最大斑块指数和聚集度指数呈负相关。从土地利用类型来看,建设用地是总氮和总磷的主要来源。景观形状指数和森林斑块数量与氨氮呈正相关。森林斑块数量与总磷呈正相关。然而,森林的最大斑块指数和聚集度指数与总磷呈负相关。草地斑块数量与总磷呈正相关。草地聚集度指数与总磷呈负相关。③建议管理部门应重点优化监测点2000 m缓冲区内的景观格局。合理布局城市污水集中处理设施,加强对废弃矿区的管理,提高耕地集约化治理水平,在耕地集中区域建设防护林带,有利于东江源流域水质改善。

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