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Kinetic Study of the Leaching of Low-Grade Manganese Ores by Using Pretreated Sawdust as Reductant

机译:预处理木屑为还原剂浸出低品位锰矿的动力学研究

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The reductive leaching of manganese from a low-grade manganese oxide ore was investigated by using pretreated sawdust as the reductant in a sulfuric acid medium. The effects of stirring speed, liquid/solid ratio, sawdust/ore mass ratio, sulfuric acid concentration, reaction temperature, and time on the manganese extraction were examined. It was found that the leaching efficiency is strongly dependent on temperature and acid concentration. The leaching efficiency of manganese reached 94.1% under the optimal conditions: stirring speed of 300 rpm, liquid/solid ratio of 8:1, mass ratio of sawdust to ore 0.25, sulfuric acid concentration of 1 mol/L and a temperature of 363 K for 180 min. The kinetic analysis was carried out based on the shrinking core model, which indicated that the reductive leaching process was controlled by the chemical reaction. The reaction orders with respect to the sulfuric acid concentration and mass ratio of sawdust are 1.66 and 0.57, respectively. The apparent activation energy for the leaching process has been calculated using the Arrhenius expression and was found to be 51.7 kJ/mol.
机译:通过在硫酸介质中使用预处理的木屑作为还原剂,研究了从低品位氧化锰矿石中还原还原浸出锰的方法。研究了搅拌速度,液/固比,锯末/矿石质量比,硫酸浓度,反应温度和时间对锰萃取的影响。发现浸出效率强烈地取决于温度和酸浓度。在以下最佳条件下,锰的浸出效率达到94.1%:搅拌速度为300 rpm,液/固比为8:1,锯末与矿石的质量比为0.25,硫酸浓度为1 mol / L,温度为363 K持续180分钟基于收缩核模型进行动力学分析,表明还原浸出过程受化学反应控制。关于木屑的硫酸浓度和质量比的反应阶数分别为1.66和0.57。已使用Arrhenius表达式计算了浸出过程的表观活化能,发现为51.7 kJ / mol。

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