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利用废弃食用油对铜渣中磁性铁进行还原熔炼及动力学分析。

Smelting reduction and kinetics analysis of magnetic iron in copper slag using waste cooking oil.

机构信息

State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Kunming University of Science and Technology, Kunming, 650093, China.

Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, China.

出版信息

Sci Rep. 2017 May 25;7(1):2406. doi: 10.1038/s41598-017-02696-y.

Abstract

To improve the recovery of copper, the viscosity of copper molten slag is decreased by the reduction of magnetic iron, which, in turn, accelerates the settling and separation of copper droplets from the slag. A new technology is proposed in which waste cooking oil is used as a reductant to reduce magnetic iron in the copper smelting slag and consequently reduce carbon emissions in the copper smelting process. A kinetic model of the reduction of magnetic iron in copper slag by waste cooking oil was built using experimental data, and the accuracy of the model was verified. The results indicated that the magnetic iron content in the copper slag decreased with increasing reduction time and an increase in temperature more efficiently reduced magnetic iron in the copper slag. The magnetic iron in the copper slag gradually transformed to fayalite, and the viscosity of the copper molten slag decreased as the magnetic iron content decreased during the reduction process. The reduction of magnetic iron in the copper molten slag using waste cooking oil was a first-order reaction, and the rate-limiting step was the mass transfer of FeO through the liquid boundary layer.

摘要

为了提高铜的回收率,通过降低磁性铁来降低铜熔渣的粘度,这反过来又加速了铜液滴从渣中的沉降和分离。提出了一种新的技术,即利用废食用油作为还原剂来还原铜冶炼渣中的磁性铁,从而减少铜冶炼过程中的碳排放。利用实验数据建立了废食用油还原铜渣中磁性铁的动力学模型,并验证了模型的准确性。结果表明,随着还原时间的增加和温度的升高,铜渣中的磁性铁含量降低得更有效。铜渣中的磁性铁逐渐转化为磁铁矿,随着还原过程中磁性铁含量的降低,铜熔渣的粘度也降低。废食用油还原铜熔渣中的磁性铁是一级反应,限制步骤是 FeO 通过液相间层的质量传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46ef/5445075/4ed37389ac1b/41598_2017_2696_Fig1_HTML.jpg

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