首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >DEVELOPMENT OF LOW-PH CEMENTS FOR IMMOBILISATION OF INTERMEDIATE LEVEL RADIOACTIVE WASTE: ACHIEVEMENTS AND CHALLENGES
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DEVELOPMENT OF LOW-PH CEMENTS FOR IMMOBILISATION OF INTERMEDIATE LEVEL RADIOACTIVE WASTE: ACHIEVEMENTS AND CHALLENGES

机译:用于中级放射性废物免疫的低PH水泥的开发:成就和挑战

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Although cementation is a widely recognized solidification/ stabilization process for immobilisation of Intermediate Level Radioactive Waste (ILRW), the low resistance to hyperalkaline pore waters compromises the effectiveness of the process when Portland Cement (PC) is employed. Moreover the manufacture of PC is responsible for significant CO_2 emissions. In this context, low pH cements are environmentally more suitable and have emerged as a potential alternative for obtaining secure waste forms. This paper summarises the achievements on development of low-pH cements and the challenges of using these new materials for the ILRW immobilisation. The performance of waste forms is also discussed in terms of radionuclides release. Reactive magnesium oxide and magnesium phosphate cements are emphasised as they feature important advantages such as consumption of available constituents for controlling acid-base reactions, reduced permeability and higher density. Additionally, in order to identify new opportunities for study, the long-term modelling approach is also briefly discussed.
机译:虽然固井化是固定化中级放射性废物(ILRW)的公认的固化/稳定化方法,但是当使用波特兰水泥(PC)时,对高碱性孔隙水的低抵抗力会损害该方法的有效性。此外,PC的制造还导致大量的CO_2排放。在这种情况下,低pH值的水泥在环境上更合适,并且已成为获得安全废物形式的潜在替代品。本文总结了低pH水泥开发方面的成就以及将这些新材料用于ILRW固定化的挑战。废物形式的性能也根据放射性核素的释放进行了讨论。强调了反应性氧化镁和磷酸镁水泥,因为它们具有重要的优点,例如消耗了可用于控制酸碱反应的成分,降低了渗透性并提高了密度。此外,为了确定新的研究机会,还简要讨论了长期建模方法。

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