Optimization of leaching parameters for the extraction of copper from hematite-dominated copper ore using Response Surface Methodology (RSM)

T.J. Ayodele, A.A. Daniyan, A.A. Adeleke, O.O. Ola-Omole
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Abstract

The optimization of recovery of copper from Akiri hematite-dominated copper ore using hydrometallurgy was investigated in this study. The Akiri copper ore deposit hosts a high-grade copper mineral from which copper metal can be extracted. However, the ore is dominated by gangue minerals that need to be mechanically reduced for efficient copper recovery. The purpose of this study is to optimize the extraction of the metal from hematite-dominated copper ore. The experiments that were carried out in the course of this study include crushing, pulverization,mineralogical and chemical characterizations of the sample and sulpheric acid leaching. Response surface methodology was used to optimize the system parameters namely;temperature, concentration of the leachant and contact time so that an efficient method will be developed for the extraction of copper.Chalcopyrite, covellite and cuprite are the copper minerals while the gangues minerals were quartz ,mica, hematite,etc.on the characterization of the copper ore. The major oxides in the ore are hematite ,copper oxide and silica and revealed that the ore contains 4.61% copper and 65.8% iron. Effect of three independent factors like concentration ,temperature and contact time for copper extraction from the hematite-dominated copper ore was studied.Central composite design method was applied to the proposed quadratic model that connect the factors used for best copper extraction at the best process condition. The work shows that concentration of the acid was the best efficient factor for copper extraction compare to temperature and contact time. This may be as a result of high value of F-statistics for the concentration of the leachant, which effects to high level of copper extraction.Experimental and predicted values for weight loss from the copper ore were obtained as 39.10% and 39.03% at optimum conditions, respectively. The optimum conditions of 1.5M acid concentration, 90oC reaction temperature and 90minutes contact time were obtained and from which 6.64%Cu at recovery of 92.0% and 2.31%Fe was obtained without stirring. Also, the ore was subjected to leaching with stirring at 400rpm with the optimum conditions obtained to know the effect. The grade obtained was 7.84% Cu at recovery of 83.51% and iron content 5.47%. This shows that leaching without stirring is the best option against leaching with stirring to extract the copper and to reduce the iron and other gangues contents in the copper ore.The activation energies were estimated as 13.20kJ/mol and 22.67kJ/mol for liquid film diffusion and diffusion product layer respectively, the values indicate that the leaching rate is controlled by diffusion process.
响应面法优化赤铁矿铜矿石中铜浸出工艺参数
研究了湿法冶金从Akiri赤铁矿为主的铜矿石中回收铜的最佳工艺。Akiri铜矿床拥有一种高品位的铜矿物,可以从中提取铜金属。然而,矿石以脉石矿物为主,需要机械还原才能有效回收铜。本研究的目的是优化从赤铁矿为主的铜矿石中提取金属的工艺。在本研究过程中进行的实验包括破碎、粉碎、样品的矿物学和化学表征以及硫酸浸出。利用响应面法对浸出液温度、浸出液浓度和接触时间等系统参数进行了优化,以期开发出一种高效的铜提取方法。铜矿物主要为黄铜矿、钴铜矿和铜矿,脉石矿物主要为石英、云母、赤铁矿等。矿石中主要氧化物为赤铁矿、氧化铜和二氧化硅,铜含量为4.61%,铁含量为65.8%。研究了浓度、温度和接触时间三个独立因素对赤铁矿铜矿石提铜的影响。采用中心复合设计方法,建立了影响最佳工艺条件下铜提取率的各因素之间的二次模型。研究表明,与温度和接触时间相比,酸的浓度是萃取铜的最有效因素。这可能是由于浸出液浓度的f统计值较高,影响了铜的高水平萃取。在最佳工艺条件下,铜矿石的失重实验值和预测值分别为39.10%和39.03%。最佳条件为酸浓度1.5M,反应温度90℃,接触时间90min,在不搅拌的情况下可获得cu含量为6.64%,回收率为92.0%,fe含量为2.31%。并对该矿石进行了400rpm搅拌浸出试验,获得了最佳浸出条件,了解浸出效果。铜品位为7.84%,回收率为83.51%,铁含量为5.47%。结果表明,不搅拌浸出比搅拌浸出更有利于铜的浸出和降低铜中铁等脉石的含量。液膜扩散和扩散产物层的活化能分别为13.20kJ/mol和22.67kJ/mol,表明浸出速率受扩散过程控制。
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CiteScore
0.10
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0.00%
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126
审稿时长
11 weeks
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