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Immobilizer-assisted management of metal-contaminated agricultural soils for safer food production

机译:防盗器辅助管理受金属污染的农业土壤,以实现更安全的食品生产

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摘要

Production of food crops on metal contaminated agricultural soils is of concern because consumers are potentially exposed to hazardous metals via dietary intake of such crops or crop derived products. Therefore, the current study was conducted to develop management protocols for crop cultivation to allow safer food production. Metal uptake, as influenced by pH change-induced immobilizing agents (dolomite, steel slag, and agricultural lime) and sorption agents (zeolite and compost), was monitored in three common plants representative of leafy (Chinese cabbage), root (spring onion) and fruit (red pepper) vegetables, in a field experiment. The efficiency of the immobilizing agents was assessed by their ability to decrease the phytoavailability of metals (Cd, Pb, and Zn). The fruit vegetable (red pepper) showed the least accumulation of Cd (0.16-0.29 mg kg~(-1) DW) and Pb (0.2-0.9 mg kg~(-1) DW) in edible parts regardless of treatment, indicating selection of low metal accumulating crops was a reasonable strategy for safer food production. However, safer food production was more likely to be achievable by combining crop selection with immobilizing agent amendment of soils. Among the immobilizing agents, pH change-induced immobilizers were more effective than sorption agents, showing decreases in Cd and Pb concentrations in each plant well below standard limits. The efficiency of pH change-induced immobilizers was also comparable to reductions obtained by 'clean soil cover' where the total metal concentrations of the plow layer was reduced via capping the surface with uncontaminated soil, implying that pH change-induced immobilizers can be practically applied to metal contaminated agricultural soils for safer food production.
机译:在金属污染的农业土壤上生产粮食作物是令人关注的,因为消费者可能通过饮食摄入此类作物或作物衍生产品而暴露于有害金属。因此,进行了当前的研究以开发用于作物栽培的管理方案以允许更安全的食品生产。在代表叶子的(大白菜),根(大葱)的三种常见植物中监测了受pH变化诱导的固定剂(白云石,钢渣和农业石灰)和吸附剂(沸石和堆肥)影响的金属吸收。和水果(红辣椒)蔬菜,在野外实验中。通过固定剂降低金属(镉,铅和锌)的植物利用率的能力来评估其效率。不论处理如何,可食用部分中的水果蔬菜(红辣椒)显示的Cd(0.16-0.29 mg kg〜(-1)DW)和Pb(0.2-0.9 mg kg〜(-1)DW)的积累最少。低积累金属作物是提高食品安全性的合理策略。但是,通过将作物选择与土壤固定剂改良剂相结合,更可能实现更安全的食品生产。在固定剂中,pH变化诱导的固定剂比吸附剂更有效,显示出每棵植物中Cd和Pb的浓度都大大低于标准限值。 pH改变诱导型固定剂的效率也可与“清洁土壤覆盖”所获得的减少效果相媲美,“清洁土壤覆盖”通过用未污染的土壤覆盖表面来降低犁层的总金属浓度,这意味着pH改变诱导型固定剂可以实际应用。金属污染的农业土壤,以提高食品生产的安全性。

著录项

  • 来源
    《Journal of Environmental Management》 |2012年第2012期|p.88-95|共8页
  • 作者单位

    Division of Environmental Science (&) Ecological Engineering, College of Life and Environmental Sciences, Korea University, Seoul, Republic of Korea,Department of Agronomy and Oriental Medicine Resource, Cyeongnam National University of Science and Technology, Republic of Korea,Han-River Environment Research Center, 627 Yangsu-ri, Yangseo-myeon, Yangpyeong-kun, Kyounggi-do, Republic of Korea;

    Division of Environmental Science (&) Ecological Engineering, College of Life and Environmental Sciences, Korea University, Seoul, Republic of Korea;

    Division of Environmental Science (&) Ecological Engineering, College of Life and Environmental Sciences, Korea University, Seoul, Republic of Korea;

    Division of Environmental Science (&) Ecological Engineering, College of Life and Environmental Sciences, Korea University, Seoul, Republic of Korea;

    Center for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA 5095, Australia;

    Coal Center, 30 Chungjin-dong Street, Jongno-gu, Seoul 110-727, Republic of Korea;

    Coal Center, 30 Chungjin-dong Street, Jongno-gu, Seoul 110-727, Republic of Korea;

  • 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

    crop management; phytoavailability; immobilization; red pepper; chinese cabbage; spring onion;

    机译:作物管理;植物利用率固定辣椒;白菜;葱;

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