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    豫北某地小麦根-茎-籽实对土壤重金属的富集特征及健康风险评价

    Characteristics of wheat root-stem-seed enrichment of soil heavy metals and health risk evaluation in a field of north Henan Province

    • 摘要:
      研究目的 农田土壤中重金属可被农作物通过根系吸收向籽实迁移,造成农产品安全问题并影响人体健康,受污染土地的安全评价与利用关系到国家资源生态安全,因此在探讨土壤重金属污染的前提下,进一步研究土壤-作物-人体系统中的重金属迁移转换具有重要意义。
      研究方法 本文以豫北某地为研究区,对该区土壤-小麦进行协同采样,分析小麦不同部位重金属含量并针对小麦籽实展开食用性安全等级评价,利用人体健康风险模型评价了食用小麦籽实重金属对人体存在的非致癌风险。
      研究结果 小麦Cd、Ni、Pb、As、Cu、Hg不同部位含量特征为:根>茎>籽实,Zn为籽实>根>茎,小麦籽实对Zn和Cu、Cd的富集系数较高,Cd的根、茎、籽实富集系数均较大;籽实中的Ni、Cd、Cu、Zn含量高值区与土壤重金属含量分布密切相关;研究区站点小麦籽实中Cd、As、Pb与食品污染物限量值比较后其站点超标率分别为20.4%、0.67%和12.9%。
      结论 小麦籽实中部分重金属含量与土壤重金属具有显著相关性,食用当地小麦对成人没有明显的非致癌风险,对儿童有一定的非致癌风险。后续需要对长期食用相关作物的人群进行跟踪研究。

       

      Abstract:
      This paper is the result of environmental geological survey engineering.
      Objective Heavy metals in farmland soil can be absorbed by crops through the root system and migrate to the seeds, causing safety problems of agricultural products and affecting human health, and the safety evaluation and utilisation of contaminated land is related to the ecological security of the national resources, so it is of great importance to explore the premise of heavy metal pollution in the soil, and to further study the heavy metal migration and conversion in the soil-crop-human body system. Therefore, under the premise of exploring soil heavy metal pollution, it is of great significance to further study the heavy metal migration and conversion in the soil-crop-body system.
      Methods This study focused on a specific area in northern Henan Province, where soil and wheat were collected simultaneously. The heavy metal concentrations in different parts of the wheat were analyzed, and an edibility safety rating was conducted for the wheat grains. A human health risk model was then used to assess the non-carcinogenic risks posed by heavy metals in edible wheat grains to human health.
      Results The distribution patterns of Cd, Ni, Pb, As, Cu, and Hg in different parts of wheat plants are as follows: roots > stems > seeds; for Zn, the order is seeds > roots > stems. Wheat seeds exhibit high accumulation coefficients for Zn, Cu, and Cd, and Cd shows relatively high accumulation coefficients in roots, stems, and seeds; The areas with high Ni, Cd, Cu, and Zn concentrations in seeds are closely correlated with the distribution of heavy metals in the soil; after comparing the Cd, As, and Pb levels in wheat seeds at study sites with food contaminant limit values, the exceedance rates at these sites were 20.4%, 0.67%, and 12.9%, respectively.
      Conclusions There is a significant correlation between the levels of certain heavy metals in wheat grains and heavy metals in the soil. Consuming locally grown wheat poses no apparent non-carcinogenic risk to adults, but carries a certain non-carcinogenic risk to children. Further follow-up studies are needed to monitor populations that consume these crops over the long term.

       

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