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Setting and stiffening of cementitious components in Cast Stone waste form for disposal of secondary wastes from the Hanford waste treatment and immobilization plant

机译:设置和硬化铸石废料中的水泥成分,以处理来自汉福德废料处理和固定化工厂的二次废料

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摘要

Cast Stone is a cementitious waste form, a viable option to immobilize secondary nuclear liquid wastes generated from the Hanford Waste Treatment and Immobilization Plant However, no study has been performed to understand the flow and stiffening behavior, which is essential to ensure proper workability and is important to safety in a nuclear waste field-scale application. X-ray diffraction, rheology, and ultrasonic wave reflection methods were used to understand the specific phase formation and stiffening of Cast Stone. Our results showed a good correlation between rheological properties of the fresh mixture and phase formation in Cast Stone. Secondary gypsum formation was observed with low concentration simulants, and the formation of gypsum was suppressed in high concentration simulants. A threshold concentration for the drastic change in stiffening was found at 1.56 M Na concentration. It was found that the stiffening of Cast Stone was strongly dependent on the concentration of simulant.
机译:铸石是水泥废物形式,是固定化汉福德废物处理和固定化装置产生的二次核液体废物的可行选择。但是,尚未进行了解流动和硬化行为的研究,这对于确保适当的可操作性是必不可少的。对于核废料领域规模应用的安全性至关重要。使用X射线衍射,流变学和超声波反射方法来了解铸石的特定相形成和硬化。我们的结果表明,新鲜混合物的流变特性与铸石中的相形成之间具有良好的相关性。在低浓度的模拟物中观察到二次石膏的形成,在高浓度的模拟物中抑制了石膏的形成。在1.56 M Na浓度下发现了急剧变化的阈值浓度。已经发现,铸石的刚度在很大程度上取决于模拟物的浓度。

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