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Preparation and crystallization of glass-ceramics derived from iron-rich copper slag

机译:富铁铜渣衍生的微晶玻璃的制备与结晶

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In this paper, the glass-ceramics were prepared and the iron was recovered from the iron-rich copper slag in the same process, which includes slag-melting, iron-glass separation and glass-crystallization. The results show that the iron was separated from copper slag and the residual slag was transformed into light-color glass-ceramics successfully. The crystallization kinetics, crystal phase and microstructure of glass-ceramics heated at different crystallization temperatures between 900 °C and 1100 °C were estimated by DSC, FTIR, XRD and SEM. It is found that the crystallization of the glass samples takes place via surface crystallization mechanism. The major crystalline phase is anorthite and the minor phases are quartz and diopside, the size of which increases with the rise in crystallization temperature. The optimal physical-chemical properties are achieved at 950 °C, with bulk density of 2.69 g/cm3, water absorption of 0.05% and porosity of 0.06%.
机译:本文以熔渣熔化,铁-玻璃分离和玻璃结晶的相同工艺制备了微晶玻璃,并从富铁铜渣中回收了铁。结果表明,铁与铜渣是分离的,残留的渣可以成功地转化为浅色微晶玻璃。通过DSC,FTIR,XRD和SEM估计了在900℃至1100℃之间不同结晶温度下加热的玻璃陶瓷的结晶动力学,晶相和微观结构。发现玻璃样品的结晶是通过表面结晶机理发生的。主晶相为钙长石,次晶相为石英和透辉石,其尺寸随结晶温度的升高而增大。最佳的物理化学性能在950°C时实现,堆积密度为2.69 g / cm3,吸水率为0.05%,孔隙率为0.06%。

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