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Thermodynamic modelling of the formation of zinc-manganese ferrite spinel in electric arc furnace dust

机译:电弧炉粉尘中锌锰铁氧体尖晶石形成的热力学模型

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摘要

Electric arc furnace dust is generated when automobile scrap, containing galvanized steel, is remelted in an electric arc furnace. This dust is considered as a hazardous waste in most countries. Zinc is a major component of the dust and can be of significant commercial value. Typically, the majority of the zinc exists as zinc oxide (ZnO) and as a zinc-manganese ferrite spinel ((Zn_xMn_yFe_(1-x-y))Fe_2O_4). The recovery of the zinc from the dust in metal recycling and recovery processes, particularly in the hydrometallurgical extraction processes, is often hindered by the presence of the mixed ferrite spinel. However, there is a paucity of information available in the literature on the formation of this spinel. Therefore, in the present research, the equilibrium module of HSC Chemistry~? 6.1 was utilized to investigate the thermodynamics of the formation of the spinel and the effect of variables on the amount and the composition of the mixed ferrite spinel. It is proposed that the mixed ferrite spinel forms due to the reaction of iron-manganese particulates with both gaseous oxygen and zinc, at the high temperatures in the freeboard of the furnace above the steel melt. Based on the thermodynamic predictions, methods are proposed for minimizing the formation of the mixed ferrite spinel.
机译:包含镀锌钢的汽车废料在电弧炉中重熔时,会产生电弧炉粉尘。在大多数国家/地区,这些灰尘被视为有害废物。锌是粉尘的主要成分,具有重要的商业价值。通常,大多数锌以氧化锌(ZnO)和锌锰铁氧体尖晶石((Zn_xMn_yFe_(1-x-y))Fe_2O_4的形式存在。混合铁素体尖晶石的存在常常阻碍在金属回收和回收过程中,特别是在湿法冶金提取过程中从粉尘中回收锌。但是,在文献中关于这种尖晶石的形成的信息很少。因此,在本研究中,HSC化学的平衡模6.1用于研究尖晶石形成的热力学以及变量对混合铁素体尖晶石的数量和组成的影响。有人提出,铁锰尖晶石的混合是由于铁锰颗粒与气态氧和锌的反应,在钢液上方的炉干部的高温下形成的。基于热力学预测,提出了减少混合铁氧体尖晶石形成的方法。

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