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An integrated geospatial correlation analysis and human health risk assessment approach for investigating abandoned industrial sites

机译:综合地理空间相关分析与调查废弃工业场地的人体健康风险评估方法

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摘要

An integrated geospatial correlation analysis (GCA)-human health risk assessment (HHRA) approach was developed to investigate abandoned industrial sites featured by heterogeneous contamination data. Critical areas of high health risk concerns can be prioritized for remediation using the integrated approach. An abandoned chemical complex site in Hubei, China was investigated as a case study. GCA and HHRA were performed using soil and groundwater sampling data collected in 2016 and 2019. Benzene, chlorobenzene, dichlorobenzenes, 2-nitrochlorobenzene, and α-hexachlorocyclohexane were determined to be critical contaminants in soil. The 2019 sampling data revealed new contaminated locations that were not found in the 2016 sampling campaign. High concentrations (89.81-386.55 mg/L) of vinyl chloride were also found in groundwater samples. Several critical location clusters of high concentrations of dichlorobenzenes, chlorobenzene, and α-hexachlorocyclohexane were found within the site according to the GCA outcomes. These contaminants could pose significant cancer and non-cancer risks to onsite workers. The critical areas were ranked according to cancer and non-cancer risks estimated by HHRA, respectively, for informed remediation planning. Among the critical contaminants, α-hexa-chlorocyclohexane, 2-nitrochlorobenzene, and 1,4-dichlorobenzene in soil, as well as vinyl chloride in ground-water, contributed a predominant part to the total health risk. The integrated approach can be used to assess the contamination of other similar abandoned industrial complex sites.
机译:开发了一种集成的地理空间相关分析(GCA) - 努力健康风险评估(HHRA)方法,以调查异构污染数据特征的废弃工业遗址。使用综合方法可以优先考虑高健康风险的关键领域。中国湖北省被遗弃的化学复合品景点被调查为案例研究。 GCA和HHRA采用2016年和2019年收集的土壤和地下水采样数据进行。苯,氯苯,二氯苯,2-硝基氯苯和α-六氯环己烷被确定为土壤中的关键污染物。 2019年采样数据显示2016年采样活动中未发现的新污染位置。在地下水样品中也发现了高浓度(89.81-386.55mg / L)氯乙烯。根据GCA结果,在现场发现了几种高浓度二氯苯,氯苯和α-六氯环己烷的临界位置簇。这些污染物可能会对现场工人带来显着的癌症和非癌症风险。关键区域分别根据HHRA的癌症和非癌症风险排名,分别为明智的修复计划。在临界污染物中,α-六氯氯己烷,2-硝基氯苯和1,4-二氯苯,以及地下水中的氯乙烯,导致总健康风险的主要部分。综合方法可用于评估其他类似废弃的工业复杂部位的污染。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112891.1-112891.15|共15页
  • 作者单位

    School of Engineering University of British Columbia Okanagan 3333 University Way Kelowna BC V1V 1V7 Canada;

    School of Engineering University of British Columbia Okanagan 3333 University Way Kelowna BC V1V 1V7 Canada;

    College of Resources and Environment Huazhong Agricultural University Wuhan Hubei 430070 China;

    WZU-UNBC Joint Research Institute of Ecology and Environment Wenzhou University (WZU) Wenzhou Zhejiang Province 325035 China Environmental Engineering Program University of Northern British Columbia 3333 University Way Prince George BC V2N 4Z9 Canada;

    School of Resource and Environmental Science Wuhan University Wuhan Hubei 430070 China;

    School of Engineering University of British Columbia Okanagan 3333 University Way Kelowna BC V1V 1V7 Canada;

    School of Engineering University of British Columbia Okanagan 3333 University Way Kelowna BC V1V 1V7 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abandoned chemical complex; Contaminated site; Soil and groundwater sampling; Geospatial correlation analysis; Human health risk assessment;

    机译:被遗弃的化学综合体;受污染的网站;土壤和地下水采样;地理空间相关分析;人类健康风险评估;

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