首页> 外文会议>TMS Annual Meeting Exhibition >CARBON REFRACTORIES IN AN OXIDIZING PROCESS? COPPER SMELTING IN AN OUTOTEC~R AUSMELT TSL FURNACE WITH A UCAR~R CHILLKOTE~(TM) REFRACTORY SYSTEM
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CARBON REFRACTORIES IN AN OXIDIZING PROCESS? COPPER SMELTING IN AN OUTOTEC~R AUSMELT TSL FURNACE WITH A UCAR~R CHILLKOTE~(TM) REFRACTORY SYSTEM

机译:氧化过程中的碳耐火材料?铜冶炼在Outotec〜R Ausmelt TSL炉中,带有UCAR〜R Chillkote〜(TM)耐火系统

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Carbonaceous refractory materials are widely accepted in many reducing smelting processes such as iron and ferroalloys. Oxidizing processes such as copper concentrate smelting traditionally use magnesia and/or alumina/silica refractoiy materials. The main objection to the use of carbon-based refractories as the exposed working lining in oxidizing applications is the potential for free oxygen to react with the carbon at high temperature, which could rapidly degrade the refractory lining.In 2013, Outotec and GrafTech conducted joint trials of a thermally conductive, carbonaceous lining for smelting copper concentrates in the Outotec~R pilot-scale top-submerged-lance (TSL) furnace in Dandenong, Australia. This testwork had two equally important goals; to demonstrate the ability of carbon refractories to withstand oxidizing process conditions, while ensuring that neither furnace operating conditions nor process stability were negatively affected by the refractory material.The paper discusses the input parameters of the trials, key observations during the testwork program, and the results and conclusions from both process and refractoiy design standpoints.
机译:在许多减少铁和铁合金之类的许多减少熔炼方法中广泛接受碳质耐火材料。氧化过程如铜浓缩物冶炼传统上使用氧化镁和/或氧化铝/二氧化硅倒易材料。主要反对使用碳的耐火材料作为氧化应用中的暴露的工作衬里的含量是与碳在高温下反应的潜力,这可能会迅速降解耐火衬里。2013,Outotec和Graftech进行关节在澳大利亚丹内东的奥德泰〜R先导尺度顶层潜水(TSL)炉中冶炼铜精矿的导热,碳质衬里的试验。这个睾工有两个同样重要的目标;为了证明碳耐火材料承受氧化过程条件的能力,同时确保既不熔炉操作条件也不受耐火材料影响稳定性。本文讨论了试验的输入参数,验证程序期间的关键观察,以及从过程和拒绝设计角度的结果和结论。

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