首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The effect of isosaccharinic acid and gluconic acid on the retention of Eu(III), Am(III) and Th(IV) by calcite
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The effect of isosaccharinic acid and gluconic acid on the retention of Eu(III), Am(III) and Th(IV) by calcite

机译:异糖精酸和葡萄糖酸对方解石保留Eu(III),Am(III)和Th(IV)的影响

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摘要

Calcite is an important component of many potential host rocks currently under consideration for the disposal of radioactive wastes. Even in the chemically disturbed zone formed around a cementitious repository, this mineral remains largely unaffected by the hyper-alkaline waters migrating out of the near field. Thus, due to its abundance and geochemical stability, calcite could play an important role in the retardation of radionuclides released from a repository for nuclear wastes. Actinides are an important class of elements present in almost all radioactive waste streams, and for this reason, investigations of their retention behaviour under representative chemical conditions are particularly relevant to assessing safe disposal in the long term. Organic ligands originating from the degradation of cellulosic materials in the repository or present as cement additives could possibly reduce the retardation of tri- and tetravalent actinides due to the formation of stable metal-ligand complexes in solution. In this study, isosaccharinic acid (ISA) and gluconic acid (GLU) have been taken as representatives of cellulose degradation products and concrete admixtures, respectively. Batch-type sorption experiments have been conducted to investigate the effect of ISA and GLU on the retardation of Eu-152, Am-241 and Th-228 by calcite. Eu-152 and Am-241 are representatives of the trivalent lanthanides and actinides, respectively, and Th-228 is a representative of the tetravalent actinides.
机译:方解石是目前正在考虑处置放射性废物的许多潜在基质岩石的重要组成部分。即使在胶结储藏库周围形成的化学扰动带中,这种矿物质仍然基本上不受迁移到近地的高碱性水的影响。因此,由于方解石的丰度和地球化学稳定性,方解石在阻滞从核废料处置库释放的放射性核素中起着重要作用。 almost系元素是几乎所有放射性废物流中都存在的重要元素类别,因此,在代表性化学条件下对其保留行为的研究与长期评估安全处置特别相关。源于储存库中纤维素材料降解或作为水泥添加剂存在的有机配体可能会由于溶液中形成稳定的金属-配体络合物而降低三价和四价act系元素的阻滞作用。在这项研究中,异糖精酸(ISA)和葡萄糖酸(GLU)分别代表了纤维素降解产物和混凝土外加剂。进行了批式吸附实验,以研究ISA和GLU对方解石对Eu-152,Am-241和Th-228的阻滞作用。 Eu-152和Am-241分别是三价镧系元素和act系元素的代表,而Th-228是四价act系元素的代表。

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