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首页> 外文期刊>Radiochemistry >Matrices for Immobilization of the Rare Earth-Actinide Waste Fraction, Synthesized by Cold Crucible Induction Melting
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Matrices for Immobilization of the Rare Earth-Actinide Waste Fraction, Synthesized by Cold Crucible Induction Melting

机译:冷坩埚感应熔炼合成的稀土Act系元素废物固定化基质

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摘要

The structure of eight samples containing simulated rare earth-actinide fraction of high-level waste was studied. Samples of weight from 0.2 to 6 kg were prepared by cold crucible induction melting followed by crystallization of the melt. The target phases (britholite, pyrochlore, zirconolite, rhombic and monoclinic rare earth titanates) prevail in all the matrices; glass, zirconolite, and rutile were detected as impurities, sometimes in significant amounts. These phases do not contain waste components (rutile) or are stable in solutions (zirconolite); therefore, their presence should not impair the properties of the matrix. The possibility of controlling the phase composition of the matrix by introducing zirconium or aluminum oxide into the charge was demonstrated.
机译:研究了八种含有高放废物中模拟的稀土-系元素分数的样品的结构。通过冷坩埚感应熔化然后使熔体结晶来制备重量为0.2至6kg的样品。在所有基质中都存在目标相(水铝石,烧绿石,锆石,菱形和单斜晶的钛酸钛)。玻璃,锆石和金红石被检测为杂质,有时含量很高。这些相不包含废物成分(金红石)或在溶液中稳定(锆石)。因此,它们的存在不应损害基质的性能。证明了通过将锆或氧化铝引入到装料中来控制基质的相组成的可能性。

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