首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Moisture effect on the combustion of a single copper concentrate particle in a flash smelting furnace
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Moisture effect on the combustion of a single copper concentrate particle in a flash smelting furnace

机译:水分对闪速熔炉中单个铜精矿颗粒燃烧的影响

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摘要

A mathematical model has been presented to study the combustion of a single copper concentrate particle with high moisture content. By using the presented model, the effect of particle moisture content on particle temperature, sulfur oxidation, and combustion heat generation has been evaluated. The mineralogical composition of the commonly used concentrate at Khatoonabad flash smelting furnace has been used in this study. It was found that the particle moisture content is removed in the sub-second time range and thus the moisture has marginal impact on the variation of particle temperature and on the reaction rate when the gas temperature is assumed to be constant in the reaction shaft. When a concentrate with high moisture content is charged, the particle size enlargement due to the agglomeration of concentrate particles causes an abrupt fall in the particle reaction rate.
机译:已经提出了数学模型来研究具有高水分含量的单个铜精矿颗粒的燃烧。通过使用提出的模型,已经评估了颗粒水分含量对颗粒温度,硫氧化和燃烧热产生的影响。这项研究使用了Khatoonabad闪速熔炼炉常用浓缩物的矿物学组成。已经发现,在亚秒级的时间范围内去除了颗粒的水分含量,因此当假定反应室中的气体温度恒定时,水分对颗粒温度的变化和反应速率具有边际影响。当装入具有高水分含量的浓缩物时,由于浓缩物颗粒的团聚而引起的粒径增大导致颗粒反应速率急剧下降。

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