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Insights into the Formation of Titanium in the TiROTM Process

机译:深入了解TiROTM工艺中钛的形成

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The TiROTM process is a new process being developed at CSIRO for the direct continuous production of titanium powder. The reaction takes place in a fluidised bed reactor (FBR) at temperatures between 650°C and 712°C. Titanium tetrachloricle and magnesium powder with a d50 around 150 μm are injected into the FBR with an argon carrier gas. A seed bed of pre-existing product is required to initiate the reaction. The product particles are spheroidal and range in size with d50 from 300 to 700 μm. They comprise a matrix of magnesium chloride with micron sized titanium particles uniformly dispersed throughout. The likely reaction mechanism is discussed. Environmental Scanning Electron Microscopy (ESEM) and electron probe microanalysis of polished sections of product particles indicates the reaction starts on the surface of freshly added magnesium particles which become encapsulated with product. The reaction appears to continue on two fronts as the magnesium is consumed;at the interface o the magnesium core and surrounding reaction products and,at the outer surface of the particle. Completely reacted particles contain some or no internal voidage. Product particles are larger than predicted based on reaction stoichiometry. Their growth is attributed to agglomeration within the bed.
机译:TiROTM工艺是CSIRO研发的一种直接连续生产钛粉的新工艺。该反应在流化床反应器(FBR)中在650℃和712℃之间的温度下进行。将d50约为150μm的四氯化钛和镁粉与氩气一起注入FBR中。需要预先存在的产物的种子床来引发反应。产物颗粒为球形,尺寸范围为d50,为300至700μm。它们包含氯化镁基质和微米大小的钛颗粒,均匀地分散在整个基质中。讨论了可能的反应机理。环境扫描电子显微镜(ESEM)和产品细部抛光的电子探针显微分析表明,反应开始于刚加入产品的镁颗粒表面,然后被产品封装。随着镁的消耗,该反应似乎在两个方面继续进行;在镁核与周围反应产物的界面处以及在颗粒的外表面处。完全反应的颗粒没有内部空隙或没有内部空隙。产物颗粒大于基于反应化学计量的预测。它们的生长归因于床内的聚结。

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