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Simulation and experimental research on top blown burner lance used for chrome ore smelting reduction process

机译:用于铬矿石冶炼减少过程的仿真与实验研究

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摘要

Chrome ore smelting reduction process in converter for crude stainless steel production has won increasing attention because of utilizing cheap chrome ore as raw material instead of ferrochromium alloy, which can reduce the production cost significantly. Thermodynamic and kinetic mechanisms of chrome ore smelting reduction have been well investigated by previous studies. How to improve the dissolution rate and reduction rate of chrome ore in actual production is the key problem of industrial application. In this paper, a method of using combustion flame to convey chrome ore powder was studied. Numerical simulation works were carried out to study the structure of top blown burner lance blowing propane combustion flame and chrome ore powder simultaneously. Optimal design of burner lance was confirmed and made for experiment. Flame measurement experiment was carried out to study the flame characteristics before and after powder addition, indicating that the addition of powder helps to prolong the flame length. Then a pilot experiment of chrome ore smelting reduction was carried out in a 0.5 ton submerged arc furnace, metallurgical effects under conditions with and without combustion flame were compared and analyzed. The results showed that the combustion flame can not only preheat the chrome ore powder, but also heat the molten slag of impact zone, obtaining better reaction rate and higher chrome ore yield.
机译:铬矿石冶炼减少工艺在原油不锈钢生产中赢得了越来越多的关注,因为利用廉价的铬矿作为原料而不是铬铁合金,可以显着降低生产成本。先前的研究已经很好地研究了铬矿石熔融减少的热力学和动力学机制。如何提高铬矿石在实际生产中的溶出速率和减少率是工业应用的关键问题。本文研究了使用燃烧火焰来传达铬矿粉末的方法。进行了数值模拟作品,以研究顶部吹塑燃烧吹瓶吹塑火焰和铬矿粉的结构。确认并进行了实验的最佳设计。进行火焰测量实验以研究粉末添加前后的火焰特性,表明添加粉末有助于延长火焰长度。然后在0.5吨浸没的电弧炉中进行铬矿石熔炼熔炼熔炼试验试验,比较和没有燃烧火焰的条件下的冶金效应和分析。结果表明,燃烧火焰不仅可以预热铬矿粉,还可以加热冲击区的熔渣,得到更好的反应速率和更高的铬矿产率。

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