Title of article :
Kinetic model for quartz and spinel dissolution during melting of high-level-waste glass batch
Author/Authors :
Pokorny، نويسنده , , Richard and Rice، نويسنده , , Jarrett A. and Crum، نويسنده , , Jarrod V. and Schweiger، نويسنده , , Michael J. and Hrma، نويسنده , , Pavel، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
6
From page :
230
To page :
235
Abstract :
The dissolution of quartz particles and the growth and dissolution of crystalline phases during the conversion of batch to glass potentially affects both the glass melting process and product quality. Crystals of spinel exiting the cold cap to molten glass below can be troublesome during the vitrification of iron-containing high-level wastes. To estimate the distribution of quartz and spinel fractions within the cold cap, we used kinetic models that relate fractions of these phases to temperature and heating rate. Fitting the model equations to data showed that the heating rate, apart from affecting quartz and spinel behavior directly, also affects them indirectly via concurrent processes, such as the formation and motion of bubbles. Because of these indirect effects, it was necessary to allow one kinetic parameter (the pre-exponential factor) to vary with the heating rate. The resulting kinetic equations are sufficiently simple for the detailed modeling of batch-to-glass conversion as it occurs in glass melters. The estimated fractions and sizes of quartz and spinel particles as they leave the cold cap, determined in this study, will provide the source terms needed for modeling the behavior of these solid particles within the flow of molten glass in the melter.
Journal title :
Journal of Nuclear Materials
Serial Year :
2013
Journal title :
Journal of Nuclear Materials
Record number :
1357922
Link To Document :
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