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基于水环境质量提升的农业非点源污染关键源区识别

李智轩 杜新忠 庞树江 雷秋良 刘宏斌 贾茂平 王明哲 王丽君

生态学报2026,Vol.46Issue(9):4523-4535,13.
生态学报2026,Vol.46Issue(9):4523-4535,13.DOI:10.20103/j.stxb.202510312851

基于水环境质量提升的农业非点源污染关键源区识别

Identification of critical source areas for agricultural non-point source pollution toward watershed water quality improvement

李智轩 1杜新忠 2庞树江 1雷秋良 2刘宏斌 2贾茂平 3王明哲 3王丽君3

作者信息

  • 1. 河北工程大学数理科学与工程学院,邯郸 056038
  • 2. 中国农业科学院农业资源与农业区划研究所农业农村部面源污染控制重点实验室,北京昌平土壤质量国家野外科学观测研究站,北方干旱半干旱耕地高效利用全国重点实验室,北京 100081
  • 3. 河北省保定水文勘测研究中心,保定 071000
  • 折叠

摘要

Abstract

Agricultural non-point source pollution(ANPS)has become a significant contributor to watershed water pollution.And the scientific identification of critical source areas(CSAs)constitutes a crucial aspect of water environment management.Existing studies primarily identify CSAs based on pollution intensity,yet often fail to guarantee actual pollution reduction efficacy in environmental engineering practices.Therefore,building upon pollution-intensity screening,this study introduced the"mitigation-reduction ratio"to quantify a new indicator of sub-basin management potential and thereby constructed an optimized framework for CSAs identification.Taking Wangkuai Reservoir in the Beijing-Tianjin-Hebei region as a case study,we calibrated the SWAT model using spatial,attribute,and water quality data from 2010 to 2023(NSE>0.5,MAPE<0.1,and R2>0.65).Furthermore,a fast non-dominated sorting approach was employed to identify sub-basins exhibiting consistently high pollution levels across various hydrological year scenarios.An improved radar chart method was then applied to evaluate the integrated pollution reduction effects after implementing measures such as fertilizer reduction and vegetative buffer strips.Ultimately,CSAs with both high pollution levels and high mitigation potential were identified.The results indicate that 46%of the sub-basins are high pollution risk areas,among which sub-basins 1,8,12,13,28,32,36,and 37 were identified as CSAs.Compared with the traditional unit area load method,this method reduces treatment area by 3.31%,increases pollution removal by 4.17%and 22.00%,and enhances mitigation potential by 0.83 and 0.98,achieving dual optimization of cost and environmental benefits.This study provides technical support for ANPS control in other watersheds with similar climatic and topographic characteristics.

关键词

农业非点源污染/关键源区/SWAT模型/非支配排序/削减效率

Key words

agricultural non-point source pollution/critical source areas/SWAT model/non-dominated sorting/reduction efficiency

引用本文复制引用

李智轩,杜新忠,庞树江,雷秋良,刘宏斌,贾茂平,王明哲,王丽君..基于水环境质量提升的农业非点源污染关键源区识别[J].生态学报,2026,46(9):4523-4535,13.

基金项目

国家重点研发计划项目(2024YFD1700803,2023YFA1009001) (2024YFD1700803,2023YFA1009001)

生态学报

OACHSSCD

1000-0933

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