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Study of Thermal Behavior in a Kroll Reactor for the Optimization of Ti Sponge Production

机译:Kroll反应器中热行为的钛海绵生产优化研究

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The titanium reduction from titanium tetrachloride (TiCl_4) by molten magnesium pool, called the Kroll process, is regarded as a well-known process for the commercial-scale production of titanium sponge. Purified titanium tetrachloride vapor reduced by magnesium, forms sponge titanium with generating excessive heal. The heal transfer phenomena in a Kroll reactor should be thoroughly understood for productivity and quality enhancement. In this work, a computational modeling method to describe the thermal behavior in the TiCl_4 reduction reactor was investigated and validated with the measured temperature distribution in a 500kg titanium sponge-capacity pilot-scale reactor in terms of various reduction ratios. The approach model for heat flow phenomenon in a reduction reactor could be utilized as a tool to predict the influence of operating process parameters on the optimization of Kroll process.
机译:通过熔融镁池从四氯化钛(TiCl_4)中还原钛,称为Kroll工艺,被认为是商业规模生产海绵钛的公知方法。被镁还原的纯化的四氯化钛蒸气,形成海绵钛并产生过度的愈合。应该全面了解Kroll反应器中的传热现象,以提高生产率和质量。在这项工作中,研究了一种描述TiCl_4还原反应器中热行为的计算模型方法,并根据500kg海绵钛容量中试规模反应器中各种还原率的实测温度分布进行了验证。还原反应器中热流现象的逼近模型可以用作预测运行工艺参数对Kroll工艺优化的影响的工具。

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