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Atmospheric deposition of hazardous elements and its accumulation in both soil and grain of winter wheat in a lead-zinc smelter contaminated area, Central China

机译:中国中部铅锌冶炼厂污染地区的冬小麦土壤和谷物中有害元素的大气沉积及其积累

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摘要

Hazardous elements (HEs) and its deposition from atmosphere have become a major healthy and environmental concern worldwide, however, the risks to food safety of deposited HE are still largely unknown, especially for wheat grains (Triticum aestivum L.). This research was to characterize atmospheric deposition of high HEs [such as lead (Pb), cadmium (Cd) and arsenic (As)] at deposited site (TS) and assess its impacts on the soil and winter wheat accumulation in a lead-zinc smelter contaminated area of Central China. Results indicated that deposited As, Cd and Pb at TS site were 31.15,15.94 and 281.86 mg m~(-2) during the winter wheat growing season, contributing 86.9%, 81.7% and 80.4% to the annual total, respectively. Most of deposited HEs were retained in top 35-cm soil, resulting in soil Cd concentration above the national soil regulatory limit (0.6 mg kg~(-1); GB 15618-2018). The newly deposited HEs could contribute 57.7-88.2% and 16.2-29.1% to total HEs of wheat grains in clean soil based on a soil transplanted experiment and in contaminated soil based on a two-year in-situ experiment, respectively. Moreover, the newly deposited HEs significantly increased HE concentration of wheat grain by 22.9-57.5% in the contaminated soil when an immobilizing amendment were applied (p < 0.05), and grain Cd concentration exceeded the national grain limit (0.1 mg kg~(-1); GB 2762-2017). Thus, deposited HE could be accumulated in soil and wheat grain and decrease the remediation effectiveness of passivation amendments in contaminated soils, which would raise a public awareness of HE deposition and provide a scientific data in support of environmental pollution control and remediation.
机译:有害元素(HEs)及其从大气中的沉积已成为全球关注的主要健康和环境问题,但是,沉积的HE的食品安全风险仍然是未知的,尤其是对于小麦籽粒(Triticum aestivum L.)。这项研究的目的是在沉积位点(TS)表征高HEs(例如铅(Pb),镉(Cd)和砷(As))的大气沉积,并评估其对铅锌土壤和冬小麦累积的影响中国中部的冶炼厂污染区。结果表明,冬小麦生长季,TS位点的As,Cd和Pb的沉积量分别为31.15、15.94和281.86 mg m〜(-2),分别占年度总量的86.9%,81.7%和80.4%。大部分沉积的HE保留在表层35 cm的土壤中,导致土壤Cd浓度超过国家土壤法规限值(0.6 mg kg〜(-1); GB 15618-2018)。根据土壤移植试验和两年原位试验,新沉积的HE分别占清洁土壤中小麦籽粒总HE的57.7-88.2%和16.2-29.1%。此外,当应用固定化改良剂时,新沉积的高铁在污染土壤中使小麦籽粒的高铁含量显着增加了22.9-57.5%(p <0.05),并且镉的镉含量超过了国家谷物限量(0.1 mg kg〜(- 1); GB 2762-2017)。因此,沉积的HE可能在土壤和小麦籽粒中积累,并降低了钝化剂在受污染土壤中的修复效果,这将提高公众对HE沉积的认识,并提供支持环境污染控制和修复的科学数据。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|135789.1-135789.9|共9页
  • 作者单位

    National Research Center for Geoanalysis Key Laboratory of Eco-environmental Geochemistry Ministry of Land and Resources Beijing 100037 China;

    Institute of Botany Jiangsu Province and Chinese Academy of Sciences Nanjing Botanical Garden Mem. Sun Yat-Sen Nanjing 210014 China;

    School of Environmental Science Nanjing Xiaozhuang University Nanjing 211171 China;

    Institute of Environmental Science of Jiyuan City Jiyuan 459000 China;

    Department of Agriculture and Environmental Science. Lincoln University of Missouri Jefferson City MO 65201 USA;

    Nanjing Institute of Environmental Science Ministry of Ecology and Environment of the Pepople's Republic of China Nanjing 210042 China;

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

    Hazardous element (HE); Atmospheric deposition; Soil contamination; Winter-wheat grain; Food safety;

    机译:有害元素(HE);大气沉积;土壤污染;冬小麦籽粒;食品安全;

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