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High Throughput Salt Separation from Uranium Deposits with Multilayer Porous Crucibles

机译:用多层多孔坩埚从铀沉积物分离高通量盐分离

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It is very important to increase the throughput of the salt separation system owing to the high uranium content of spent nuclear fuel and high salt fraction of uranium dendrites in pyroprocessing. Multilayer porous crucible system was proposed to increase a throughput of the salt distiller in this study. An integrated sieve-crucible assembly was also investigated for the practical use of the porous crucible system. The salt evaporation behaviors were compared between the conventional nonporous crucible and the porous crucible. Two step weight reductions took place in the porous crucible, whereas the salt weight reduced only at high temperature by distillation in a nonporous crucible. The first weight reduction in the porous crucible was caused by the liquid salt penetrated out through the perforated crucible during the temperature elevation until the distillation temperature. Multilayer porous crucibles have a benefit to expand the evaporation surface area.
机译:由于溶解核燃料的高铀含量和溶解铀枝颗粒的高铀含量,增加盐分离系统的产量是非常重要的。提出了多层多孔坩埚系统,以增加本研究中盐蒸馏器的产量。还研究了一种集成的筛坩埚组装以进行多孔坩埚系统的实际使用。在传统的无孔坩埚和多孔坩埚之间比较盐蒸发行为。在多孔坩埚中发生了两步重量,而盐重量仅在高温下通过蒸馏在无孔坩埚中减少。多孔坩埚中的第一重量减轻是由在温度升高期间穿过穿孔坩埚穿过的液体盐引起的,直至蒸馏温度。多层多孔坩埚有益处扩大蒸发表面积。

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