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Pretreatment of Hanford Medium-Curie Wastes by Fractional Crystallization

机译:分步结晶法对汉福德中菜废料进行预处理

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Acceleration of the schedule for decontamination of the Hanford site using bulk vitrification requires implementation of a pretreatment operation. Medium-curie waste must be separated into two fractions: one is to go to a waste treatment and immobilization plant, and a second, which is low-activity waste, is to be processed by bulk vitrification. The work described here reports research on using fractional crystallization for that pretreatment. Sodium salts are crystallized by evaporation of water from solutions simulating those removed from single-shell tanks, while leaving cesium in solution. The crystalline products are then recovered and qualified as low-activity waste, which is suitable upon redissolution for processing by bulk vitrification. The experimental program used semibatch operation in which a feed solution was continuously added to maintain a constant level in the crystallizer while evaporating water. The slurry recovered at the end of a run was filtered to recover product crystals, which were then analyzed to determine their composition. The results demonstrated that targets on cesium separation from the solids, fractional recovery of sodium salts, and sulfate content of the recovered salts can be achieved by the process tested.
机译:加快使用批量玻璃化对汉福德场地进行消毒的时间表需要实施预处理操作。中居里垃圾必须分为两部分:一是去废物处理和固定化工厂,第二是低活性废物,要通过整体玻璃化处理。这里描述的工作报告了使用分步结晶进行预处理的研究。钠盐通过模拟溶液从单壳罐中除去的溶液中的水分蒸发而结晶,同时将铯留在溶液中。然后将结晶产物回收并鉴定为低活性废物,其适合于重新溶解后通过本体玻璃化进行处理。实验程序使用半间歇操作,其中连续添加进料溶液以在结晶器中保持恒定水平,同时蒸发水。将运行结束时回收的浆液进行过滤,以回收产物晶体,然后对其进行分析以确定其组成。结果表明,通过测试的方法可以实现铯从固体中分离,钠盐的部分回收以及回收的盐中硫酸盐含量的目标。

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