Systematic review2021

[Probabilistic Risk Assessment of Arsenic Exposure Through Drinking Water Intake in Chinese Residents]

Qin N, Liu YW, Hou R, Wang CY, Wang BB, Duan XL

Huan jing ke xue= Huanjing kexue · 3 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Systematic review (indexed by PubMed)
Studied in
People
Main outcome
No health outcome

Who paid for it

Funding
Funding not disclosed

Publication

Published
2021-07-08 · Huan Jing Ke Xue · vol. 42 · issue 7 · pp. 3338–3347
Publisher
National Institutes of Health
Cited
2 citations · more than 61% of similar papers · 0.3× the field average
References
0 works
Access
Paywalled
Research areas
Human Health and Disease · Fluoride Effects and Removal
Keywords
Arsenic, Environmental health, Arsenic contamination of groundwater, Environmental science, Risk assessment, Probabilistic logic, Environmental chemistry, Medicine, Statistics, Chemistry, Mathematics, Computer science, Computer security
MeSH
arsenic, water pollutants, chemical, risk assessment, environmental exposure, china, drinking water

6 authors

From CN

  • Ning QinBeijing Drainage Group (China); University of Science and Technology Beijing
  • Yun-Wei LiuUniversity of Science and Technology Beijing
  • Rong HouUniversity of Science and Technology Beijing
  • Cai-Yun WangBeijing Drainage Group (China)
  • Bei-Bei WangUniversity of Science and Technology Beijing
  • Xiao-Li DuanUniversity of Science and Technology Beijing

Abstract

The total arsenic concentrations of the three main drinking water types in China were determined through a systematic literature review. The distribution models of drinking water exposure parameters for different age groups were obtained using the regression method. The carcinogenic and non-carcinogenic risks of different population groups caused by arsenic exposure through different drinking water types were evaluated by a probabilistic risk assessment. The results showed that the geometric mean of total arsenic content in all the drinking water samples in China was (13.0±38.1) μg·L-1. The highest arsenic content was found in the Inner Mongolia Autonomous Region, followed by Guangxi and Shanxi. Based on the relevant standards for drinking water quality, the probability exceeding the threshold value of groundwater and source water is 23.2% and 18.4%, respectively. According to the results of non-carcinogenic risk assessment, the probability of the residents drinking well water and surface water from the water source area exceeding the daily average exposure dose threshold was 24.0% and 19.5%, respectively. According to the carcinogenic risk assessment, the median of carcinogenic risk caused by arsenic in drinking water in China was 3.22×10-5, which is acceptable. The population group of 18-45 years old had the highest risk, and the median LCR was 1.37×10-5. There was still a certain probability that the LCR of drinking well water and surface water would exceed the acceptable risk level recommended by the US EPA. In conclusion, the potential health risks caused by arsenic exposure through drinking water intake exist among Chinese residents. Further control of the arsenic concentration in drinking water is required to reduce the health risk and improve the safety of drinking water. Meanwhile, it is suggested to strengthen the research on risk threshold to provide a scientific basis for the residents' health protection.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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