The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis

Water resource is an important part of human living and production. With the modernization of cities, the problem of groundwater contamination is becoming more and more serious. It is outstanding to effectively assess the risk of groundwater contamination to human health. This paper proposes a human...

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Main Authors: Yue Pan, Xiankui Zeng, Xinyu Gao, Jichun Wu, Dong Wang
Format: Article
Language:English
Published: Atlantis Press 2018-12-01
Series:Journal of Risk Analysis and Crisis Response (JRACR)
Subjects:
Online Access:https://www.atlantis-press.com/article/125905627.pdf
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spelling doaj-d83ad448e19d42feb59fd10a5c9ecfcc2020-11-24T23:54:37ZengAtlantis PressJournal of Risk Analysis and Crisis Response (JRACR)2210-85052018-12-018410.2991/jrarc.2018.8.4.4The Human Health Risk Assessment Based on Process Simulation and Uncertainty AnalysisYue PanXiankui ZengXinyu GaoJichun WuDong WangWater resource is an important part of human living and production. With the modernization of cities, the problem of groundwater contamination is becoming more and more serious. It is outstanding to effectively assess the risk of groundwater contamination to human health. This paper proposes a human health risk assessment method based on the simulation of contaminant transport process and parameter uncertainty analysis. The method combines health risk assessment with groundwater contaminant transport processes and applies the TOUGH2 program to simulate the temporal and spatial distribution of contaminant in groundwater. In order to improve the accuracy of the assessment results, the influence of the uncertainty of the transport model on human health risk assessment is taken into account. And the key parameter (e.g., the permeability) of the transport model is inversed by Markov chain Monte Carlo simulation method. Based on a sandbox experiment, the human health risk exposed to a typical dense non-aqueous phase liquids contaminant tetrachloroethylene (PCE) is evaluated by considering the parameter uncertainty of the PCE transport model, which confirmed that the method can provide decision-making information for the management and prevention of contaminated sites.https://www.atlantis-press.com/article/125905627.pdfHuman health riskDense non-aqueous phase liquidsModel parameterUncertainty
collection DOAJ
language English
format Article
sources DOAJ
author Yue Pan
Xiankui Zeng
Xinyu Gao
Jichun Wu
Dong Wang
spellingShingle Yue Pan
Xiankui Zeng
Xinyu Gao
Jichun Wu
Dong Wang
The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
Journal of Risk Analysis and Crisis Response (JRACR)
Human health risk
Dense non-aqueous phase liquids
Model parameter
Uncertainty
author_facet Yue Pan
Xiankui Zeng
Xinyu Gao
Jichun Wu
Dong Wang
author_sort Yue Pan
title The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
title_short The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
title_full The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
title_fullStr The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
title_full_unstemmed The Human Health Risk Assessment Based on Process Simulation and Uncertainty Analysis
title_sort human health risk assessment based on process simulation and uncertainty analysis
publisher Atlantis Press
series Journal of Risk Analysis and Crisis Response (JRACR)
issn 2210-8505
publishDate 2018-12-01
description Water resource is an important part of human living and production. With the modernization of cities, the problem of groundwater contamination is becoming more and more serious. It is outstanding to effectively assess the risk of groundwater contamination to human health. This paper proposes a human health risk assessment method based on the simulation of contaminant transport process and parameter uncertainty analysis. The method combines health risk assessment with groundwater contaminant transport processes and applies the TOUGH2 program to simulate the temporal and spatial distribution of contaminant in groundwater. In order to improve the accuracy of the assessment results, the influence of the uncertainty of the transport model on human health risk assessment is taken into account. And the key parameter (e.g., the permeability) of the transport model is inversed by Markov chain Monte Carlo simulation method. Based on a sandbox experiment, the human health risk exposed to a typical dense non-aqueous phase liquids contaminant tetrachloroethylene (PCE) is evaluated by considering the parameter uncertainty of the PCE transport model, which confirmed that the method can provide decision-making information for the management and prevention of contaminated sites.
topic Human health risk
Dense non-aqueous phase liquids
Model parameter
Uncertainty
url https://www.atlantis-press.com/article/125905627.pdf
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