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首页> 外文期刊>Chemosphere >How the distribution coefficient of ~(238)U in natural soils is affected by the method used to obtain the soil solution and its dependency on structural characteristics
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How the distribution coefficient of ~(238)U in natural soils is affected by the method used to obtain the soil solution and its dependency on structural characteristics

机译:〜(238)U在天然土壤中的分布系数如何受到土壤溶液获得方法及其对结构特征的依赖性的影响

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摘要

A systematic study on desorption of uranium in a natural soil has been carried out to reduce the level of uncertainty associated with the method employed to determine the values of the distribution coefficient (K-d). Generally, the operating method used to extract and analyze the soil solution determines the K-d values. Here, the centrifugation method has been used to obtain soil solution extracts. Several procedural parameters have been considered such as incubation time, the level of soil moisture relative to saturation (saturation degree) and centrifugation speed (equivalent to effective suction). In order to analyze the influence of soil structural characteristics, this study considers three grain-size fractions of soil: loamy coarse sand, loamy fine sand, and loam, all of which are obtained from a natural soil collected in a uranium mineralized area. Our results indicate that neither incubation time nor centrifugation speed influence the determination of K-d for uranium. The results also indicate that the level of soil moisture is the most important factor for determining U-238-K-d. It has been shown that the influence of moisture on K-d also depends on the structural characteristic of the soil. For the loamy coarse sand subsample, the moisture level during the incubation period showed a significant influence on the K-d. In addition, through the use of regression analysis, the pH was identified as the cofactor with the greatest influence on K-d of uranium. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了减少与确定分配系数(K-d)值所用方法有关的不确定性,已经对天然土壤中铀的解吸进行了系统的研究。通常,用于提取和分析土壤溶液的操作方法确定K-d值。在这里,离心方法已经用于获得土壤溶液提取物。已经考虑了几个程序参数,例如孵育时间,相对于饱和度的土壤湿度水平(饱和度)和离心速度(等效于有效吸力)。为了分析土壤结构特征的影响,本研究考虑了土壤的三个颗粒级分:肥沃的粗砂,肥沃的细砂和沃土,它们都是从铀矿化地区收集的天然土壤中获得的。我们的结果表明,孵育时间和离心速度均不会影响铀K-d的测定。结果还表明,土壤水分含量是确定U-238-K-d的最重要因素。已经表明,水分对K-d的影响还取决于土壤的结构特征。对于肥沃的粗砂子样品,温育期的水分含量对K-d表现出显着影响。另外,通过回归分析,pH被确定为对铀K-d影响最大的辅助因子。 (C)2019 Elsevier Ltd.保留所有权利。

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