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Reaction Mechanism and Thermodynamics of Segregation Roasting of Iron Oxide

机译:氧化铁偏析的反应机理和热力学

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This paper presents the reduction mechanism of iron recovery from pure ferric oxide by the segregation roasting-magnetic separation process both from the chemical reaction and physical phenomena point of view. In segregation roasting process, coal is used as the reducing agent and calcium chloride as chlorinating agent. Segregation roasting of iron oxide has been studied at different temperatures from 800 to 1000°C varying the chloride and carbon percentages. The same experimental conditions have been adopted to recover iron from mill scale by the process of segregation roasting. By segregation roasting, iron oxide is reduced by a combination of chlorination, volatilization and hydrogen reduction. Elucidation of the reaction mechanism of segregation process is being attempted in this present study. Characterization of the segregated iron particles recovered after magnetic separation both from ferric oxide and mill scale is studied by electron probe microscopy analyzer.
机译:从化学反应和物理现象的角度,提出了通过偏析-焙烧-磁分离法从纯氧化铁中回收铁的还原机理。在隔离焙烧过程中,煤用作还原剂,氯化钙用作氯化剂。已经研究了在800到1000°C的不同温度下氧化铁的偏析焙烧,改变了氯化物和碳的百分比。已经采用了相同的实验条件,通过偏析焙烧工艺从轧制规模中回收铁。通过分离焙烧,通过氯化,挥发和氢还原的组合来还原氧化铁。在本研究中试图阐明分离过程的反应机理。通过电子探针显微镜分析仪研究了从三氧化二铁和轧制氧化皮中磁分离后回收的偏析铁颗粒的特性。

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