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Crystal structure control of aluminized clay minerals on the mobility of caesium in contaminated soil environments

机译:铝化粘土矿物质晶体结构控制在污染土壤环境中铯的迁移率

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Radioactive caesium pollution resulting from Fukushima Dai-ichi and Chernobyl nuclear plant accidents involves strong interactions between Cs+ and clays, especially vermiculite-type minerals. In acidic soil environments, such as in Fukushima area, vermiculite is subjected to weathering processes, resulting in aluminization. The crystal structure of aluminized clays and its implications for Cs+ mobility in soils remain poorly understood due to the mixture of these minerals with other clays and organic matter. We performed acidic weathering of a vermiculite to mimic the aluminization process in soils. Combination of structure analysis and Cs+ extractability measurements show that the increase of aluminization is accompanied by an increase in Cs+ mobility. Crystal structure model for aluminized vermiculite is based on the interstratification of unaltered vermiculite layers and aluminized layers within the same particle. Cs+ in vermiculite layers is poorly mobile, while the extractability of Cs+ is greatly enhanced in aluminized layers. The overall reactivity of the weathered clay (cation exchange capacity, Cs+ mobility) is then governed by the relative abundance of the two types of layers. The proposed layer model for aluminized vermiculite with two coexisting populations of caesium is of prime importance for predicting the fate of caesium in contaminated soil environments.
机译:福岛傣族和切尔诺贝利核植物事故产生的放射性铯污染涉及CS +和粘土之间的强相互作用,尤其是蛭石型矿物质。在酸性土壤环境中,例如在福岛区域,蛭石经受耐候工艺,导致铝。由于这些矿物质与其他粘土和有机物质的混合物,铝化粘土的晶体结构及其对Cs +迁移率的影响仍然明显不佳。我们对蛭石进行酸性风化以模拟土壤中的铝化过程。结构分析和CS +提取性测量的组合表明,铝化的增加伴随着CS +移动性的增加。铝化蛭石的晶体结构模型基于同一颗粒内未改变的蛭石层和铝化层的替代性。蛭石层中的CS +移动性差,而CS +的可提取性在铝化层中大大增强。随后由两种类型的层的相对丰度控制风化粘土(阳离子交换能力,CS +移动性)的整体反应性。具有两个共存铯的铝化蛭石的所提出的层模型是预测污染土壤环境中铯的命运的主要重要性。

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