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Stability of Tungsten Crucible against Uranium, Rare Earth, Cadmium, and Chlorides for Cathode Process in Pyroprocessing

机译:用于铀,稀土,镉和氯化物的钨坩埚的稳定性在易于解放中的阴极法

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The stability of W against U, rare-earth (RE) elements, Cd, and various chlorides was evaluated by melting and distillation testing. Three runs were performed with a W crucible to examine its reactivity: (i) RE melting by induction heating, (ii) salt distillation test of U-dendrite and various chlorides, and (iii) Cd distillation test from U–Cd alloy. The W crucible remained stable after the RE melting test using induction melting, exhibiting its applicability for induction heating systems. The salt distillation test with the W crucible at 1050°C exhibited the stability of W against U and various chlorides, showing no interaction. The Cd distillation test with the W crucible at 500°C showed that the crucible was very stable against Cd, maintaining a shiny surface. These results reveal that the W crucible is stable under operation conditions for both salt and Cd distillation, suggesting the high potential utility of W as a crucible material for application in cathode processes in pyroprocessing.
机译:通过熔化和蒸馏试验评估W对U对抗U,稀土(RE)元素,CD和各种氯化物的稳定性。用W坩埚进行三次运行,以检测其反应性:(i)通过感应加热熔化,(ii)u-丁腈和各种氯化物的盐蒸馏试验,以及来自U-Cd合金的(III)Cd蒸馏试验。使用感应熔化再熔化试验后,W坩埚保持稳定,表现出其对感应加热系统的适用性。用1050℃的W坩埚的盐蒸馏试验表现出W对u和各种氯化物的稳定性,显示不具有相互作用。用500℃的W坩埚的Cd蒸馏试验显示坩埚对CD非常稳定,保持闪亮的表面。这些结果表明,W坩埚在盐和Cd蒸馏的操作条件下是稳定的,这表明W作为坩埚材料的高潜在效用,用于在易于解释中的阴极过​​程中应用。

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