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The Evaluation on the Cadmium Net Concentration for Soil Ecosystems

机译:土壤生态系统中镉净含量的评价

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摘要

Yixing, known as the “City of Ceramics”, is facing a new dilemma: a raw material crisis. Cadmium (Cd) exists in extremely high concentrations in soil due to the considerable input of industrial wastewater into the soil ecosystem. The in situ technique of diffusive gradients in thin film (DGT), the ex situ static equilibrium approach (HAc, EDTA and CaCl2), and the dissolved concentration in soil solution, as well as microwave digestion, were applied to predict the Cd bioavailability of soil, aiming to provide a robust and accurate method for Cd bioavailability evaluation in Yixing. Moreover, the typical local cash crops—paddy and zizania aquatica—were selected for Cd accumulation, aiming to select the ideal plants with tolerance to the soil Cd contamination. The results indicated that the biomasses of the two applied plants were sufficiently sensitive to reflect the stark regional differences of different sampling sites. The zizania aquatica could effectively reduce the total Cd concentration, as indicated by the high accumulation coefficients. However, the fact that the zizania aquatica has extremely high transfer coefficients, and its stem, as the edible part, might accumulate large amounts of Cd, led to the conclusion that zizania aquatica was not an ideal cash crop in Yixing. Furthermore, the labile Cd concentrations which were obtained by the DGT technique and dissolved in the soil solution showed a significant correlation with the Cd concentrations of the biota accumulation. However, the ex situ methods and the microwave digestion-obtained Cd concentrations showed a poor correlation with the accumulated Cd concentration in plant tissue. Correspondingly, the multiple linear regression models were built for fundamental analysis of the performance of different methods available for Cd bioavailability evaluation. The correlation coefficients of DGT obtained by the improved multiple linear regression model have not significantly improved compared to the coefficients obtained by the simple linear regression model. The results revealed that DGT was a robust measurement, which could obtain the labile Cd concentrations independent of the physicochemical features’ variation in the soil ecosystem. Consequently, these findings provide stronger evidence that DGT is an effective and ideal tool for labile Cd evaluation in Yixing.
机译:宜兴被称为“陶瓷之都”,面临着一个新的难题:原材料危机。由于工业废水大量进入土壤生态系统,因此镉(Cd)以极高的浓度存在于土壤中。利用薄膜中的扩散梯度原位技术(DGT),非原位静态平衡方法(HAc,EDTA和CaCl2)以及土壤溶液中的溶解浓度以及微波消解来预测Cd的Cd生物利用度。旨在为宜兴市镉的生物利用度评估提供一个可靠而准确的方法。此外,我们选择了典型的当地经济作物-稻田和Zizania aquatica-进行Cd的积累,目的是选择对土壤Cd污染具有耐受性的理想植物。结果表明,两种应用植物的生物量足够敏感,可以反映出不同采样点的明显区域差异。高蓄积系数表明,水生氧化锆可以有效降低总Cd浓度。然而,由于iz子水生植物具有极高的转移系数,并且其茎作为可食部分可能会积累大量的镉,因此得出结论,z子水生植物不是宜​​兴的理想经济作物。此外,通过DGT技术获得并溶解在土壤溶液中的不稳定Cd浓度与生物群积累的Cd浓度呈显着相关。然而,异地方法和微波消解获得的Cd浓度与植物组织中Cd浓度的相关性很差。相应地,建立了多元线性回归模型,用于对可用于镉生物利用度评估的不同方法的性能进行基础分析。与通过简单线性回归模型获得的系数相比,通过改进的多元线性回归模型获得的DGT的相关系数没有显着改善。结果表明,DGT是一种可靠的测量方法,它可以获取不稳定的Cd浓度,而与土壤生态系统中理化特征的变化无关。因此,这些发现提供了更有力的证据,证明DGT是宜兴市不稳定Cd评估的有效和理想工具。

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