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铯在粉土和粘土中的吸附行为。

Sorption behavior of cesium on silt and clay soil fractions.

机构信息

Decommissioning Technology Research Division, Korea Atomic Energy Research Institute, Daedeok-daero, 989-111, Yuseong-gu, Daejeon, Republic of Korea.

Decommissioning Technology Research Division, Korea Atomic Energy Research Institute, Daedeok-daero, 989-111, Yuseong-gu, Daejeon, Republic of Korea.

出版信息

J Environ Radioact. 2021 Jul;233:106592. doi: 10.1016/j.jenvrad.2021.106592. Epub 2021 Mar 26.

Abstract

The effect of clay mineral composition on Cs adsorption behavior of silt and clay fractions (SC-fractions) of soil was investigated. Surface soil samples were collected within 2 km of Kori and Wolsong nuclear power plants in South Korea, and SC-fractions (<20 μm) were separated. The physicochemical properties of SC-fractions and types of clay minerals contained in the SC-fractions were analyzed. The cesium adsorption capacity of the SC-fractions, and affinity between the SC-fractions and Cs, were investigated by isothermal adsorption analysis using the dual-site Langmuir adsorption model. To understand selective adsorption of Cs, the radiocesium interception potential and distribution coefficient of the SC-fractions were analyzed in the presence or absence of competing ions. The radiocesium distribution coefficient of the SC-fractions showed a trend similar to that of the Langmuir sorption coefficient of high-affinity binding sites for Cs in the SC-fractions. The SC-fractions of Kori soils that contain only non-expandable clay minerals including highly weathered mica had low Cs adsorption capacity. However, the SC-fractions of Kori soils showed higher Cs adsorption selectivity compared to the SC-fractions of Wolsong soils containing expandable clay minerals and micaceous mineral with a low degree of weathering. It is predicted that the highly weathered micas have high affinity to Cs, and such clay minerals contribute the most to the adsorption process in dilute solutions.

摘要

研究了粘土矿物组成对土壤粉粒和粘粒(SC 粒级)中 Cs 吸附行为的影响。采集了韩国科里和梧仓核电站 2 公里范围内的表层土壤样品,并分离出 SC 粒级(<20μm)。分析了 SC 粒级的物理化学性质和所含粘土矿物的类型。采用双位 Langmuir 吸附模型进行等温吸附分析,研究了 SC 粒级的 Cs 吸附容量和 SC 粒级与 Cs 的亲和力。为了理解 Cs 的选择性吸附,在存在或不存在竞争离子的情况下,分析了 SC 粒级的放射性铯拦截势和分配系数。SC 粒级的放射性铯分配系数与 SC 粒级中高亲和力结合位点对 Cs 的 Langmuir 吸附系数呈相似趋势。仅含有高度风化云母等不可膨胀粘土矿物的科里土壤的 SC 粒级的 Cs 吸附容量较低。然而,与含有可膨胀粘土矿物和风化程度较低的云母矿物的梧仓土壤的 SC 粒级相比,科里土壤的 SC 粒级表现出更高的 Cs 吸附选择性。可以预测,高度风化的云母对 Cs 具有高亲和力,此类粘土矿物在稀溶液中的吸附过程中贡献最大。

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Sorption behavior of cesium on silt and clay soil fractions.铯在粉土和粘土中的吸附行为。
J Environ Radioact. 2021 Jul;233:106592. doi: 10.1016/j.jenvrad.2021.106592. Epub 2021 Mar 26.

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