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Temperature Measurement in a Titanium Sponge and Mathematical Modeling for the Vacuum Distillation in Kroll Process

机译:钛海绵中的温度测量和Kroll工艺中真空蒸馏的数学建模

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摘要

The vacuum distillation process in the Kroll process has been developed to remove residual chlorine from titanium sponge. Despite the efforts to improve the productivity of the process, it takes more than a couple of days to produce desirable quality of the titanium sponge in a commercial scale operation. Though it is important to understand the nature of this process, it is quite difficult because of the complexity of non-linearity in I transfer and vaporization.The temperature inside the titanium sponge during the distillation process was successfully measured. It revealed that there are two temperature stagnant periods which correspond to the vaporization of Mg and MgCl_2 respectively. It was also found that the penetration of the heat to the center of the sponge cake is a very process and that it takes more than 30 hours.A mathematical model to describe the heat transfer and vaporization kinetic has been developed. The can regenerate the temperature measurement data successfully. The model calculation results show that topochemical vaporization of Mg and MgCl_2 and that the vaporization rate is mainly controlled by the heat kr in the titanium sponge. The effect of the operation parameters on the process performance was investigated using the model calculation. It indicates that the reduction in the amount of residual Mg and MgCl_2 would be effective to reduce the distillation processing time.
机译:已经开发出kroll工艺中的真空蒸馏过程以除去来自钛海绵的残留氯。尽管努力提高了该过程的生产力,但在商业规模运营中产生了几天的时间才能产生钛海绵的理想质量。虽然了解这个过程的性质非常重要,但由于I转移和蒸发中的非线性的复杂性是非常困难的。钛海绵内的温度成功测量了蒸馏过程中的温度。揭示存在两个温度停滞期,其分别对应于Mg和MgCl_2的蒸发。还发现热量渗透到海绵饼的中心是一个非常过程,并且它需要超过30小时。通过开发出现传热和汽化动力学的数学模型。可以成功再生温度测量数据。模型计算结果表明,Mg和MgCl_2的类别化学蒸发以及汽化速率主要由钛海绵中的热kr控制。使用模型计算研究了操作参数对过程性能的影响。它表明残留Mg和MgCl_2的量的减少将有效地降低蒸馏处理时间。

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