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Use of Quartz-Containing Materials as Fluxes in Copper Smelting Production

机译:使用含石英材料作为铜冶炼生产的助熔剂

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Using x-ray phase, chemical, and thermal (20-1200A degrees C) analysis methods, phase composition and thermal properties are evaluated for three specimens of quartz-containing materials used as fluxes in copper smelting production. It is established that quartz in specimens on heating to 1000-1200A degrees C undergoes enantiothropic polymorphic transformation by a scheme: alpha-quartz -> beta-quartz -> beta-cristobalite. In order to evaluate the efficiency of using materials as fluxes for copper smelting production, equations are proposed for calculating fluxing capacity depending on their chemical and phase composition. A dependence is given for the amount of slag formed as a result of slagging flux impurity oxides on material phase and chemical compositions on whose basis losses of nonferrous and precious metals are evaluated. It is suggested that flux materials are heated to a temperature for the start of polymorphic transformations accompanying quartz recrystallization (560A degrees C) before charging into a metallurgical unit.
机译:使用X射线相,化学和热(20-1200A℃)分析方法,对三个用作铜冶炼生产的助熔剂使用的石英材料标本评价相结合物和热性能。建立在加热至1000-1200A℃的标本中的石英通过方案进行映射多态性转化:α-石英 - >β-石英 - >β-ristobalite。为了评估使用材料作为铜冶炼生产的助熔剂的效率,提出了根据其化学和相位组成来计算助熔剂的方程。作为在材料相的熔渣杂质氧化物上形成的熔渣量的熔渣的量,评价了有色和贵金属的基础损失的化学组合物。建议在充电进入冶金单元之前,将助焊剂材料加热到用于伴随石英再结晶(560A℃)的多态性变换的开始。

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