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Study of the effect of Kaolin in the mortar of cement matrices by confinement of ion exchange resins

机译:通过限制离子交换树脂研究高岭土在水泥基砂浆中的作用

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Radioactive waste arising as a result of nuclear activities should be safely managed from its generation to final disposal in an appropriate conditioned form to reduce the risk of radiation exposure of technical personnel and of the public and to limit contamination of the environment. The immobilization of low and intermediate level radioactive wastes in cementitious matrices is the most commonly used technique to produce inexpensive waste matrix that complies with regulatory requirements in order to protect humans and the environment against nuisance caused by ionizing radiation. Cement based materials are used in radioactive waste management to produce stable waste forms. This matrix constitutes the first build engineering barrier in disposal facilities. In this work, the kaolin is used to enhance the mechanical performance of the matrix of confinement of ion exchange resins by gradually replacing the sand in mortar with kaolin clay. The Kaolin clay sample was a special pure product, sourced from a foreign country. The maximum quantity of resins that can be incorporated into the mortar formulation without the packages losing their strength is 13.915% which results in a better mechanical strength at 6.7686 MPA compression with kaolin.
机译:核活动产生的放射性废物,从产生到最终处置,都应以适当的条件形式进行安全管理,以减少技术人员和公众受到辐射的风险,并限制对环境的污染。将低水平和中等水平的放射性废物固定在水泥质基质中是生产符合监管要求的廉价废物基质的最常用技术,目的是保护人类和环境免受电离辐射造成的滋扰。水泥基材料用于放射性废物管理,以产生稳定的废物形式。该矩阵构成了处置设施中的第一个建筑工程障碍。在这项工作中,高岭土用于通过逐步用高岭土代替砂浆中的沙子来增强离子交换树脂封闭基质的机械性能。高岭土样品是一种特殊的纯产品,来自国外。在不降低包装强度的情况下,可以掺入砂浆配方中的最大树脂量为13.915%,这在用高岭土压缩6.7686 MPA时具有更好的机械强度。

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