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Escalating health risk of thallium and arsenic from farmland contamination fueled by cement-making activities: A hidden but significant source

机译:通过水泥活动的农田污染从农田污染升级的健康风险:隐藏但重要的来源

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摘要

Soil-to-vegetable migration of toxic metal(loid)s is a pivotal pathway of human exposure to chemical intoxication. Thallium (Tl) and arsenic (As) are highly toxic metal(loid)s but their co-occurrence in soils and vegetables remain poorly understood. Herein, the present study focuses on potential health risk arising from co-occurrence of Tl-As in various common vegetables cultivated in different farmlands around an industrial area featured by cement production activities. The results reveal obvious co-contamination of Tl (2.28 ± 1.39 mg/kg) and As (102.0 ± 66.7 mg/kg) in soils. Fine particles bearing sulfide and other minerals associated with Tl and As are detected in fly ash from cement plant, which can be migrated by wind over a long distance with hidden but inevitable pollution. Bioaccumulation Factor (BCf) and Enrichment Factor (EF) show that taro and corn preferentially accumulate Tl especially in underground parts. Hazard Quotient (HQ) indicates that consumption of these vegetables may result in chronic poisoning and/or even carcinogenic risk. The study highlights that the pathway and high risk of co-contamination of Tl-As in the nearby farmlands posed by cement-making activities should be highly concerned.
机译:毒性金属的土壤对蔬菜迁移(懒惰)S是人类暴露于化学中毒的关键途径。铊(TL)和砷(AS)是高度毒性的金属(LOID)S,但它们在土壤和蔬菜中的共同发生仍然难以理解。在此,本研究侧重于从水泥生产活动的不同农田种植的各种常见蔬菜中产生的潜在健康风险。结果揭示了TL(2.28±1.39mg / kg)的明显共污染,土壤中的(102.0±66.7mg / kg)。含有硫化物的细颗粒和与T1相关的其他矿物质,以及从水泥厂的粉煤灰中检测到,可以通过潮流迁移到隐藏但不可避免的污染中。生物累积因子(BCF)和富集因子(EF)表明芋头和玉米优先积累TL,特别是在地下部分。危险商(HQ)表明这些蔬菜的消耗可能导致慢性中毒和/或甚至致癌风险。该研究突出显示,在附近的TL-如附近的农田共同污染的途径和高风险应该受到高度关注。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|146603.1-146603.11|共11页
  • 作者单位

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key Laboratory of Land Surface Pattern and Simulation Institute of Geographic Sciences and Natural Resources Research Chinese Academy of Sciences Beijing 700101 China;

    School of Environment and Chemical Engineering Foshan University Foshan Guangdong China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

    Key laboratory of Water Quality and Conservation in the Pearl River Delta School of Environmental Science and Engineering Guangzhou University Guangzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tl-As co-contamination; Cement plant; Soil-vegetable-human system; Risk assessment;

    机译:TL-作为共污染;水泥厂;土壤蔬菜 - 人体系统;风险评估;

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