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Response Surface Methodology for Optimization of Copper Leaching from Refractory Flotation Tailings

机译:响应面法优化耐火浮选尾矿浸出铜

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Response surface methodology is used to optimize the leaching process for refractory flotation copper tailings. The proportion of the refractory combination oxide copper (chrysocolla) is 64.84%. At present, few studies have examined the leaching of chrysocolla. In this study, we examine the effects of several variables, including the amount of concentrated sulfuric acid, leaching temperature, and leaching time, on leaching efficiency. Using a response surface methodology, we develop a quadratic model relanbting all the above experimental variables with leaching efficiency. The resulting model is highly consistent with experimental data. According to the model, the factor with the greatest influence on leaching efficiency is the amount of concentrated sulfuric acid. According to the model, the optimal leaching conditions are 85 kg/t concentrated sulfuric acid, a leaching temperature of 68.51 °C, and a leaching time of 4.36 h. The actual measured leaching efficiency under these conditions is 85.86%, which is close to the value of 86.79% predicted by the model. We study the leaching processes using scanning electron microscopy (SEM) and energy dispersive spectrometry (EDS) surface scan analyses. Both methods allow us to explore the content of the main element and visually observe its distribution, allowing us to develop effective methods for treating low-grade oxide ores.
机译:响应面法用于优化难处理浮选铜尾矿的浸出过程。耐火组合氧化物铜(水晶硅橡胶)的比例为64.84%。目前,很少有研究检查过金丝雀胶的浸出。在这项研究中,我们研究了几种变量对浸出效率的影响,包括浓硫酸的量,浸出温度和浸出时间。使用响应面方法,我们开发了二次模型,将上述所有实验变量重新浸出,具有浸出效率。所得模型与实验数据高度一致。根据该模型,对浸出效率影响最大的因素是浓硫酸的量。根据该模型,最佳浸出条件为85 kg / t浓硫酸,浸出温度为68.51°C,浸出时间为4.36 h。在这些条件下,实际测得的浸出效率为85.86%,接近模型预测的86.79%。我们使用扫描电子显微镜(SEM)和能量分散光谱(EDS)表面​​扫描分析研究浸出过程。两种方法都使我们能够探索主要元素的含量并直观地观察其分布,从而使我们能够开发出有效的方法来处理低品位的氧化矿石。

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