李悦昭1,
陈瑞晖1,,
滕彦国1, 2,,
1.北京师范大学水科学研究院,100875,北京
2.地下水污染控制与修复教育部工程研究中心,100875,北京
基金项目:北京高精尖学科“陆地表层学”资助项目
详细信息
通讯作者:滕彦国(1974-),男,教授,博士生导师. 研究方向:环境地球化学. E-mail:teng1974@163.com
中图分类号:X53;P96计量
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被引次数:0
出版历程
收稿日期:2020-04-21
网络出版日期:2021-01-21
刊出日期:2021-05-08
Load and source of heavy metal pollution in the upper reaches of Fuxian Lake
Guangyu MA1,Yuezhao LI1,
Ruihui CHEN1,,
Yanguo TENG1, 2,,
1. College of Water Sciences, Beijing Normal University, 100875, Beijing, China
2. Engineering Research Center of Groundwater Pollution Control and Remediation of Ministry of Education, 100875, Beijing, China
摘要
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摘要
摘要:通过定量方法计算污染物负荷、开展污染源解析,是进行环境管理、风险防控以及污染治理的重要依据,也是制定环境保护政策的重要前提.本文应用逸度模型开展澄江县抚仙湖上游地区土壤重金属污染负荷计算,预测模拟抚仙湖区域环境中重金属分布状态.在此基础上,利用非负约束因子模型和化学质量平衡模型耦合开展污染源解析研究.结果表明:抚仙湖上游澄江县区域重金属主要存储在土壤介质中,占总量的80%以上;土壤中重金属主要来源于工业生产和化肥农药的使用,分别占40.16%和40.79%,是区域重金属污染防控管理的重点.污染负荷及来源解析结果能够为该地区环境质量评估及污染防控提供科学的数据支撑.
关键词:重金属/
复合模型/
来源解析/
抚仙湖
Abstract:Quantification of pollution load and identification of pollution source are important in environmental management, risk prevention and control, pollution control, and in formulating environmental protection policies.In the present work, we used the fugacity model to calculate and forecast soil load and distribution of heavy metal pollution in the upper reaches of Fuxian Lake.The non-negative constraint factor model and the chemical mass balance model were coupled to identify or decompose pollution sources.Heavy metals in the upper reaches of Fuxian Lake in Chengjiang County were found to be stored mainly in the soil medium, accounting for more than 80% of the surface area.The heavy metals in the soil were found to be mainly from industrial production, use of fertilizers and pesticides, accounting for 40.16% and 40.79% respectively.Consequently, these should be the focus of regional heavy metal pollution prevention and control management.Such analysis of pollution load and source identification as done in this work should, provide data support for environmental quality assessment and pollution prevention and control.
Key words:heavy metals/
compound model/
source apportionment/
Fuxian Lake