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An Evaluation of Single Phase Ceramic Formulations for Plutonium Disposition

机译:单相陶瓷配方对钚处理的评价

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Ceramics are promising potential hosts for the immobilization of actinide containing wastes. Work has been reported in the literature on multiphase systems, such as SYNROC [1], and on single phase systems such as pyrochlores [2] and zirconia [3], but assessment of the different wasteforms by direct comparison of literature data is not always easy due to the different processing and fabrication routes employed. In this study a potential range of different ceramic systems were investigated for plutonium disposition using the same processing scheme. Durable actinide containing minerals exist in nature and provided excellent target phases for the titanate, zirconate, silicate and phosphate based formulations examined here [4]. The Ce solid solution limits for each particular substitution mechanism were established and the processing parameters required to produce high quality ceramic specimens were optimised. Importantly, this was achieved within the constraints of a generic processing route suitable for fabrication of Pu bearing samples.
机译:陶瓷是有希望的潜在主机含锕系废物的固定化。工作已报道在多相系统中,诸如人造岩石[1],和在单相系统的文献如烧绿石[2]和氧化锆[3],但由​​文献数据的直接比较不同wasteforms的评估并非总是容易由于所采用的不同处理和制造路线。在这项研究中不同的陶瓷系统的电位范围进行了研究,使用相同的处理方案钚处置。耐用含锕矿物存在于自然界中,为钛酸盐,锆酸盐,硅酸盐和磷酸盐基制剂这里检查[4]提供了极好的目标相位。对每个特定的替换机制Ce的固溶体极限,建立和生产高品质的陶瓷标本所需的处理参数进行优化。重要的是,这是适合于莆承载样本的制造的通用处理路径的约束内实现。

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