地质学报(英文版)2024,Vol.98Issue(2) :468-476.DOI:10.1111/1755-6724.15134

Identifying the Hydrochemical Characteristics,Genetic Mechanisms and Potential Human Health Risks of Fluoride and Nitrate Enriched Groundwater in the Tongzhou District,Beijing,North China

ZHANG Shouchuan LIU Kai MA Yan WANG Luyao SUN Junliang
地质学报(英文版)2024,Vol.98Issue(2) :468-476.DOI:10.1111/1755-6724.15134

Identifying the Hydrochemical Characteristics,Genetic Mechanisms and Potential Human Health Risks of Fluoride and Nitrate Enriched Groundwater in the Tongzhou District,Beijing,North China

ZHANG Shouchuan 1LIU Kai 2MA Yan 1WANG Luyao 1SUN Junliang3
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作者信息

  • 1. Chinese Academy of Geological Sciences,Beijing 100037,China
  • 2. Chinese Academy of Geological Sciences,Beijing 100037,China;School of Water Resources and Environment,China University of Geosciences(Beijing),Beijing 100083,China
  • 3. School of Water Resources and Environment,China University of Geosciences(Beijing),Beijing 100083,China
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Abstract

Fluoride and nitrate enriched groundwater are potential threats to the safety of the groundwater supply that may cause significant effects on human health and public safety,especially in aggregated population areas and economic hubs.This study focuses on the high F-and NO3-concentration groundwater in Tongzhou District,Beijing,North China.A total of 36 groundwater samples were collected to analyze the hydrochemical characteristics,elucidate genetic mechanisms and evaluate the potential human health risks.The results of the analysis indicate:Firstly,most of the groundwater samples are characterized by Mg-HCO3 and Na-HCO3 with the pH ranging from 7.19 to 8.28 and TDS with a large variation across the range 471-2337 mg/L.The NO3-concentration in 38.89%groundwater samples and the F-concentration in 66.67%groundwater samples exceed the permissible limited value.Secondly,F-in groundwater originates predominantly from water-rock interactions and the fluorite dissolution,which is also regulated by cation exchange,competitive adsorption of HCO3-and an alkaline environment.Thirdly,the effect of sewage disposal and agricultural activities have a significant effect on high NO3-concentration,while the high F-concentration is less influenced by anthropogenic activity.The alkaline environment favors nitrification,thus being conducive to the production of NO3-.Finally,the health risk assessment is evaluated for different population groups.The results indicate that high NO3-and F-concentration in groundwater would have the largest threat to children's health.The findings of this study could contribute to the provision of a scientific basis for groundwater supply policy formulation relating to public health in Tongzhou District.

Key words

fluoride concentration/nitrate pollution/genetic mechanism/health risk assessment/Tongzhou District

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基金项目

project of China Geological Survey(DD20221677-2)

fundamental research funds of Chinese Academy of Geological Sciences Basal Research Fund(JKYQN202307)

出版年

2024
地质学报(英文版)
中国地质学会

地质学报(英文版)

CSTPCD
影响因子:1.414
ISSN:1000-9515
参考文献量44
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