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Evaluation of shrinking core model in leaching process of Pomalaa nickel laterite using citric acid as leachant at atmospheric conditions

机译:用柠檬酸作为途径在大气条件下用柠檬酸浸出过程中核心模型的评价

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Most of kinetics studies related to leaching process used shrinking core model to describe physical phenomena of the process. Generally, the model was developed in connection with transport and/or reaction of reactant components. In this study, commonly used internal diffusion controlled shrinking core model was evaluated for leaching process of Pomalaa nickel laterite using citric acid as leachant. Particle size was varied at 60-70, 100-120, -200 meshes, while the operating temperature was kept constant at 358 K, citric acid concentration at 0.1 M, pulp density at 20% w/v and the leaching time was for 120 minutes. Simulation results showed that the shrinking core model was inadequate to closely approach the experimental data. Meanwhile, the experimental data indicated that the leaching process was determined by the mobility of product molecules in the ash layer pores. In case of leaching resulting large product molecules, a mathematical model involving steps of reaction and product diffusion might be appropriate to develop.
机译:大多数动力学研究与浸出过程有关使用缩小核心模型来描述该过程的物理现象。通常,该模型是与反应物组分的运输和/或反应开发的。在该研究中,评价常用的内部扩散控制的核对核心模型,用于使用柠檬酸作为途径浸出Pomalaa镍横向的浸出过程。粒度在60-70,100-12,-200纤维上变化,而操作温度在358 k下保持恒定,柠檬酸浓度为0.1μm,纸浆密度为20%w / v,浸出时间为120分钟。仿真结果表明,缩收核心模型不充分,以密切接近实验数据。同时,实验数据表明,浸出过程由灰层孔中产物分子的迁移率决定。在浸出所产生的大产品分子的情况下,涉及反应步骤和产品扩散的数学模型可能适当地发展。

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