结晶
钼酸钠
钼酸盐
硼硅酸盐玻璃
去玻璃化
魔角纺纱
钼
核裂变产物
钠
分析化学(期刊)
光谱学
铯
结晶学
化学
材料科学
核磁共振波谱
无机化学
裂变产物
放射化学
立体化学
物理
有机化学
量子力学
色谱法
作者
Scott Kroeker,Sophie Schuller,John E. C. Wren,Brandon J. Greer,Adel Mesbah
摘要
Sodium borosilicate base glasses modeled on French nuclear waste materials were prepared to test the dependence of crystallization product quantity and distribution on cesium‐ and molybdenum‐loading and glass cooling rate. Scanning electron microscopy shows the presence of micrometer‐sized domains of Mo‐rich crystalline precipitates. X‐ray diffraction patterns are complex but reveal the presence of sodium molybdates and CsNaMoO 4 ·2 H 2 O . 133 Cs and 23 Na magic‐angle spinning NMR spectroscopy exhibit distinct peaks for glassy and crystalline phases which can be quantified to obtain the identities of the individual compounds that are formed as well as the fractions of these nuclei in particular crystalline phases. In these model systems, 1 mol% Mo can be entirely incorporated into the glassy network whereas 2.5 and 5 mol% Mo produce significant quantities of crystalline phases, with little dependence on cooling rate. Cesium content appears to have a weak influence on crystallization behavior. Sodium molybdate and sodium‐cesium molybdate hydrate are the dominant devitrification phases in all cases.
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