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Evaluation of the impact of the CO/C reducer on the CO2 formation in the process of pyrometallurgical recovery of Fe from converter slag

机译:评价CO / C减速器对换算炉渣火数冶金恢复过程中CO2形成的影响

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The results of simulations of Fe recovery from steel slag containing iron oxides with C reducer dissolved in liquid slag and gaseous CO were presented in the paper.The simulations were performed with the use of a commercial program FactSage,and the calculations followed the procedure of dosing the reducer to slag in portions,each time reaching the state of thermodynamic equilibrium.The calculation procedure was realized sequentially,and the equilibrium composition of gaseous phase,nonmetallic phase and separated Fe was established at each calculation step.Gaseous products of CO and CO2 reduction were removed from the system with each successive calculation step.The simulation revealed that reaching comparable results of reduction requires using a considerable amount of CO.Moreover,the CO2 content in the gaseous phase and amount of separated Fe depend on the type of reducer.It was observed that the main mechanism was the reduction of iron with C.In this case the composition of gaseous products was mainly dominated by CO-CO2.
机译:本文介绍了含有溶解在液体渣和气态CO中的C减速器的钢渣的Fe储存的模拟结果。用商业计划常规进行模拟,计算遵循给药的过程在部分达到热力学平衡状态的情况下,减速器在部分中进行熔化。顺序地实现了计算过程,并在每个计算步骤中建立了气相,非金属相和分离的Fe的平衡组成。CO和CO2的CO和CO2还原产物从系统中除去了每个连续的计算步骤。模拟显示,使用相当数量的CO.MOREOVER达到相当的还原结果,在气相中的CO2含量和分离的Fe的量取决于减速器的类型。观察到主要机制是用C的铁还原。在这种情况下,气态P的组成啮齿动物主要由CO-CO2主导。

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