Empirical Model for Formulation of Crystal‐Tolerant HLW Glasses

J. Matyáš, A. Huckleberry, Carmen P. Rodriguez, J. Vienna, A. Kruger
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引用次数: 11

Abstract

Historically, high-level waste (HLW) glasses have been formulated with a low liquideus temperature (T{sub L}), or temperature at which the equilibrium fraction of spinel crystals in the melt is below 1 vol % (T{sub 0.01}), nominally below 1050 C. These constraints cannot prevent the accumulation of large spinel crystals in considerably cooler regions ({approx} 850 C) of the glass discharge riser during melter idling and significantly limit the waste loading, which is reflected in a high volume of waste glass, and would result in high capital, production, and disposal costs. A developed empirical model predicts crystal accumulation in the riser of the melter as a function of concentration of spinel-forming components in glass, and thereby provides guidance in formulating crystal-tolerant glasses that would allow high waste loadings by keeping the spinel crystals small and therefore suspended in the glass.
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耐晶高w玻璃配方的经验模型
从历史上看,高放废物(HLW)玻璃的配制具有低液相温度(T{sub L}),或熔体中尖晶石晶体的平衡分数低于1vol % (T{sub 0.01})的温度,名义上低于1050℃。这些限制不能阻止大尖晶石晶体在熔体空转期间在玻璃排出管相当冷的区域({大约}850℃)积累,并显著限制废物装载。这反映在大量的废玻璃上,并将导致高昂的资金、生产和处理成本。一个已开发的经验模型预测,晶体在熔体提升管中的积累是玻璃中尖晶石形成成分浓度的函数,从而为制定耐晶玻璃提供指导,通过保持尖晶石晶体小并因此悬浮在玻璃中,从而允许高废物负荷。
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