A Kinetic Comparison between Laboratory and Industrial Scales in the Copper Blowing Process

A. Roselló, J. Martínez, F. Carrillo
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引用次数: 1

Abstract

An experimental investigation into the oxidation kinetics of molten sulfide has been conducted at laboratory scale to provide information concerning the influence of the gas feed (flow and oxygen pressure) and melt temperature on the desulfurization rate. Data showed that the reaction rate was strongly dependent on the gas flow rate and significantly from oxygen pressure, whereas the influence of temperature was negligible. The variation of the sulfur conversion with the operation time was similar to that found in industrial trials when “white metal” was blown to blister copper in a Peirce-Smith converter. A unique equation for both scales could be established. This correlation made it possible to calculate the operation time in the converter at different gas flow rates and oxygen enrichments.
实验室与工业吹铜过程的动力学比较
在实验室规模上对熔融硫化物的氧化动力学进行了实验研究,以提供有关气体进料(流量和氧气压力)和熔体温度对脱硫速率的影响的信息。数据表明,反应速率与气体流速密切相关,与氧气压力密切相关,而温度的影响可以忽略不计。硫转化率随操作时间的变化类似于在工业试验中发现的,当“白色金属”在皮尔斯-史密斯转炉中吹到起泡铜时。可以建立两个尺度的唯一方程。这种相关性使得计算不同气体流速和氧浓度下转炉的操作时间成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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