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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Prediction Model for Cadmium Transfer from Soil to Carrot (Daucus carota L) and Its Application To Derive Soil Thresholds for Food Safety
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Prediction Model for Cadmium Transfer from Soil to Carrot (Daucus carota L) and Its Application To Derive Soil Thresholds for Food Safety

机译:镉从土壤转移到胡萝卜(Daucus carota L)的预测模型及其在衍生性食品安全性土壤阈值中的应用

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摘要

At present, soil quality standards used for agriculture do not fully consider the influence of soil properties on cadmium (Cd) uptake by crops. This study aimed to develop prediction models for Cd transfer from a wide range of Chinese soils to carrot (Daucus carota L.) using soil properties and the total or available soil Cd content. Path analysis showed soil pH and organic carbon (OC) content were the two most significant properties exhibiting direct effects on Cd uptake factor (ratio of Cd concentration in carrot to that in soil). Stepwise multiple linear regression analysis also showed that total soil Cd, pH, and OC were significant variables contributing to carrot Cd concentration, explaining 90% of the variance across the 21 soils. Soil thresholds for carrot (cultivar New Kuroda) cropping based on added or total Cd were then derived from the food safety standard and were presented as continuous or scenario criteria.
机译:当前,用于农业的土壤质量标准并未充分考虑土壤特性对农作物吸收镉(Cd)的影响。这项研究的目的是利用土壤性质和土壤中总的或可利用的土壤镉含量,开发出将镉从多种中国土壤转移至胡萝卜(胡萝卜)的预测模型。通径分析表明,土壤pH和有机碳(OC)含量是两个最重要的特性,对Cd吸收因子(胡萝卜中Cd浓度与土壤中Cd浓度之比)具有直接影响。逐步多元线性回归分析还显示,土壤中Cd,pH和OC总量是影响胡萝卜Cd浓度的重要变量,解释了21种土壤中90%的变化。然后根据食品安全标准得出基于添加或总镉的胡萝卜(新黑田品种)的土壤阈值,并将其作为连续或情景标准。

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