Efficient Leaching Process of Valuable Elements from Gibbsite Ore Materials in Talet Seleim, Southwestern, Sinai, Egypt Using Green and Ecofriendly Lixiviant Agent: Optimization, Kinetic and Thermodynamic Study

A. Salem
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Abstract

Abstract Here, valuable elements in Talet Seleim, Southwestern Sinai, Egypt, were leached using methanesulfonic acid (MSA) as an environmentally friendly lixiviant agent. The effects of methanesulfonic acid (MSA) concentration, time of leaching reaction, temperature, liquid/solid ratio (L/S) and stirring speed on dissolution of valuable elements in MSA were studied. The optimized conditions for dissolution of various metals were: methanesulfonic acid concentration; 150g/L, dissolution time; 300 min, temperature; 363K, liquid to solid ratio; 4 ml/g and stirring speed; 400 rpm. The dissolution efficiency of Zn, Cu, Ni and Pb are 81.8%, 79.47%, 76.6%, and 70.7%, respectively under the optimal conditions. Different mathematical kinetic models for the dissolution process in MSA were studied since it is very important for economic metal dissolution. The experimental data were best fitted by pseudo-second-order homogeneous reaction model for zinc (Zn), copper (Cu) and nickel (Ni), whilst lead (Pb) was best fitted by the diffusion through the product or ash layer. The activation energies of the dissolution processes of different metals were evaluated. Overall, the MSA leaching system provides an efficient, clean and green method for dissolution of valuable metals. It can be a promising alternative to inorganic acids. GRAPHICAL ABSTRACT
绿色环保型浸出剂高效浸出埃及西奈西南部Talet Seleim三水石矿料中有价元素工艺:优化、动力学和热力学研究
摘要以甲烷磺酸(MSA)为环境友好型浸出剂,对埃及西奈西南部的Talet Seleim中有价元素进行了浸出研究。研究了甲基磺酸浓度、浸出反应时间、浸出温度、液固比(L/S)和搅拌速度对甲基磺酸中有价元素溶解的影响。各种金属的最佳溶解条件为:甲磺酸浓度;150g/L,溶解时间;300分钟,温度;363K,液固比;4 ml/g,搅拌速度;400 rpm。在最佳条件下,Zn、Cu、Ni和Pb的溶解效率分别为81.8%、79.47%、76.6%和70.7%。由于MSA对金属的经济溶解具有重要意义,因此研究了MSA溶解过程的不同数学动力学模型。锌(Zn)、铜(Cu)和镍(Ni)的拟二阶均相反应模型最适合拟合实验数据,铅(Pb)的拟合模型最适合通过产物层或灰层扩散。测定了不同金属溶解过程的活化能。总的来说,MSA浸出系统提供了一种高效、清洁和绿色的方法来溶解有价金属。它是一种很有前途的无机酸替代品。图形抽象
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CiteScore
2.30
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