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Oxidative Roasting of Low Grade Zinc Sulfide Concentrate from Gagok Mine in Korea

机译:韩国高古克矿低品位硫化锌精矿的氧化焙烧

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摘要

A new process for utilizing low grade zinc sulfide concentrate containing a large amount of iron as a zinc and iron resource has been developed in Korea. The process largely consists of oxidative roasting and reduction-volatilization processes. In this process, zinc is recovered as zinc oxide form in the gas phase and iron is concentrated as partially reduced iron oxide compounds in the residue phase. In the present work, a kinetic study on the oxidative roasting of low grade zinc sulfide concentrate rich in iron obtained after several mineral separation processes at Gagok mine in Korea was experimentally investigated. The experiments were carried out to understand the oxidative roasting process of the zinc concentrate over a temperature range of 998 to 1073 K under air using a thermogravimetric method. The oxidative roasting rate of the zinc concentrate was found to be relatively fast under the whole temperature range and almost 95% of sulfur contained in the concentrate was removed after the oxidative roasting at 1073 K for 20 min. Sulfur removal ratio as a function of time has been analyzed by using a spherical shrinking-core model.
机译:韩国已经开发出一种利用含有大量铁的低品位硫化锌精矿作为锌和铁资源的新工艺。该过程主要由氧化焙烧和还原挥发过程组成。在该方法中,锌以气相形式的氧化锌形式被回收,铁以残余态的部分还原的氧化铁化合物的形式浓缩。在目前的工作中,通过实验研究了韩国Gagok矿的几种矿物分离工艺后获得的富含铁的低品位硫化锌精矿的氧化焙烧动力学。进行实验以了解使用热重法在空气中在998至1073 K的温度范围内锌精矿的氧化焙烧过程。发现在整个温度范围内,锌精矿的氧化焙烧速率相对较快,并且在1073 K氧化焙烧20分钟后,精矿中所含的几乎95%的硫被去除。通过使用球形收缩核模型分析了脱硫率随时间的变化。

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