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首页> 外文期刊>Environmental Science and Pollution Research >Impact of temperature on the dynamics of organic matter and on the soil-to-plant transfer of Cd, Zn and Pb in a contaminated agricultural soil
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Impact of temperature on the dynamics of organic matter and on the soil-to-plant transfer of Cd, Zn and Pb in a contaminated agricultural soil

机译:温度对有机质动态的影响以及污染农业土壤中CD,Zn和Pb土壤对植物转移的影响

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Predicting the soil-to-plant transfer of metals in the context of global warming has become a major issue for food safety. It requires a better understanding of how the temperature alters the bioavailability of metals in cultivated soils. This study focuses on one agricultural soil contaminated by Cd, Zn and Pb. DGT measurements were performed at 10, 20 and 30 A degrees C to assess how the bioavailability of metals was affected by a rise in soil temperature. A lettuce crop was cultivated in the same conditions to determine if the soil-to-plant transfer of metals increased with a rise in soil temperature. A gradual decline in Cd and Zn bioavailability was observed from 10 to 30 A degrees C, which was attributed to more intense complexation of metals in the pore water at higher temperatures. Together with its aromaticity, the affinity of dissolved organic matter (DOM) for metals was indeed suspected to increase with soil temperature. One main output of the present work is a model which satisfactorily explains the thermal-induced changes in the characteristics of DOM reported in Cornu et al. (Geoderma 162:65-70, 2011) by assuming that the mineralization of initial aliphatic compounds followed a first-order reaction, increased with soil temperature according to the Arrhenius law, and due to a priming effect, led to the appearance of aromatic molecules. The soil-to-plant transfer of Cd and Zn was promoted at higher soil temperatures despite a parallel decrease in Cd and Zn bioavailability. This suggests that plant processes affect the soil-to-plant transfer of Cd and Zn the most when the soil temperature rises.
机译:预测全球变暖背景下的土壤对植物的转移已成为食品安全的主要问题。它需要更好地理解温度如何改变耕种中金属的生物利用度。本研究侧重于CD,Zn和Pb污染的一种农业土壤。 DGT测量以10,20和30℃进行,以评估金属的生物利用度如何受土壤温度升高的影响。在相同的条件下培养生菜作物,以确定金属的土壤对植物转移是否随着土壤温度的增加而增加。从10至30℃观察到Cd和Zn生物利用度的逐渐下降,这归因于在较高温度下孔隙水中的金属更强烈的络合。与其芳香性一起,对金属的溶解有机物(DOM)的亲和力确实怀疑土壤温度增加。本作本作的一个主要产量是一种模型,令人满意地解释了Cornu等人报道的DOM特性的热诱导变化。 (Geoderma 162:65-70,2011)通过假设初始脂肪族化合物的矿化随后是一阶反应,根据Arrhenius Lave的土壤温度增加,并且由于引发效果,导致芳香族分子的外观。尽管CD和Zn生物利用度平行降低,但在较高的土壤温度下促进了CD和Zn的土壤和Zn的植物转移。这表明当土壤温度升高时,植物过程影响CD和Zn的土壤 - 植物转移。

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