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An invisible soil acidification: Critical role of soil carbonate and its impact on heavy metal bioavailability

机译:看不见的土壤酸化:土壤碳酸盐的关键作用及其对重金属生物利用度的影响

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摘要

It is well known that carbonates inhibit heavy metals transferring from soil to plants, yet the mechanism is poorly understood. Based on the Yangtze River delta area, we investigated bioaccumulation of Ni and Cd in winter wheat as affected by the presence of carbonates in soil. This study aimed to determine the mechanism through which soil carbonates restrict transport and plant uptake of heavy metals in the wheat cropping system. The results indicate that soil carbonates critically influenced heavy metal transfer from soil to plants and presented a tipping point. Wheat grains harvested from carbonates-depleted (due to severe leaching) soils showed Ni and Cd concentrations 2–3 times higher than those of the wheat grains from carbonates-containing soils. Correspondingly, the incidence of Ni or Cd contamination in the wheat grain samples increased by about three times. With the carbonate concentration >1% in soil, uptake and bioaccumulation of Ni and Cd by winter wheat was independent with the soil pH and carbonate content. The findings suggest that soil carbonates play a critical role in heavy metal transfer from soil to plants, implying that monitoring soil carbonate may be necessary in addition to soil pH for the evaluating soil quality and food safety.
机译:众所周知,碳酸盐会抑制重金属从土壤到植物的转移,但机理尚不清楚。基于长江三角洲地区,我们调查了受土壤碳酸盐存在影响的冬小麦中镍和镉的生物积累。这项研究旨在确定土壤碳酸盐限制小麦种植系统中重金属迁移和植物吸收的机制。结果表明,土壤碳酸盐严重影响了重金属从土壤到植物的转移,并呈现出临界点。从贫瘠碳酸盐土壤(由于严重浸出)收获的小麦籽粒中的镍和镉含量比含碳酸盐土壤中的小麦籽粒中的镍和镉含量高2-3倍。相应地,小麦籽粒样品中镍或镉污染的发生率增加了约三倍。当土壤中碳酸盐浓度> 1%时,冬小麦对镍和镉的吸收和生物积累与土壤pH和碳酸盐含量无关。研究结果表明,土壤碳酸盐在重金属从土壤到植物的转移中起着至关重要的作用,这暗示着除了监测土壤pH值以外,还需要监测土壤碳酸盐以评估土壤质量和食品安全。

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