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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Generation of magnesium for in situ desulphurisation-investigations on influence of inert gas flowrate
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Generation of magnesium for in situ desulphurisation-investigations on influence of inert gas flowrate

机译:原位脱硫镁的产生-对惰性气体流量影响的研究

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In situ generation of magnesium by the reduction of its oxide is being considered by researchers as a possible means of effective desulphurisation of liquid iron. Generation of magnesium in this process will be affected by the flow rate of inert gas. The influence of the flow rate of inert gas on the degree of reduction of magnesium oxide by aluminium was studied. The liberation of magnesium increases with increase in flowrate of inert gas. A mathematical model was developed to predict the influence of argon flow rate on the degree of reduction. The reduction was significantly influenced by temperature. Whereas the degree of reduction was about 30% at 1473 K, it was about 85% at 1673 K. SEM studies showed that the reduction of the oxide with aluminium was a complex process. A part of magnesium vapour generated during reduction was trapped inside the (oxide + aluminium) tablets. Temperature, flowrate of argon, and the porosity of the tablets were parameters that critically influenced the degree of reduction.
机译:研究人员认为通过还原镁的氧化物就地生成镁是将铁水有效脱硫的一种可能方法。在此过程中,镁的生成将受到惰性气体流速的影响。研究了惰性气体流量对铝还原氧化镁的影响。镁的释放随惰性气体流量的增加而增加。建立了数学模型以预测氩气流量对还原度的影响。温度的降低明显降低了还原率。还原度在1473 K时约为30%,而在1673 K时约为85%。SEM研究表明,用铝还原氧化物是一个复杂的过程。还原过程中产生的一部分镁蒸气被捕集在(氧化物+铝)片剂内部。温度,氩气流量和片剂的孔隙率是严重影响还原度的参数。

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