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首页> 外文期刊>International Journal of Mining and Geo-Engineering >An improved model of continuous leaching systems using segregation approach
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An improved model of continuous leaching systems using segregation approach

机译:使用分离方法的连续浸出系统改进模型

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In this study, a simplified dissolution model has been developed to evaluate the performance of continuous leaching reactors. The model considers continuous reduction of the surface area of particles using the distribution of their size and residence time. The model was validated by the bioleaching of a pyrite-arsenopyrite concentrate in the pilot plant scale, which resulted in good agreement between the experimental data and the predicted values. The developed model was also used to predict the outlet mass density function of particles, whose results showed that the mean particle size would not necessarily decrease as the mean residence time in the leaching process decreased. Using this model, the effect of operating parameters (e.g., particle size distribution, inlet flow, reagent concentration, kinetic parameters, and the type of residence time distribution) on the reactor performance can be predicted. Therefore, the model can be used for dynamic and static analyses of leaching circuits as well as designing and optimizing the processing plants.
机译:在该研究中,已经开发了一种简化的溶解模型来评估连续浸出反应器的性能。该模型考虑使用其尺寸和停留时间的分布连续减少粒子的表面积。通过在试验厂规模中浓缩的吡钛矿 - 阿塞枯石浓缩物的生物浸出验证了该模型,这在实验数据和预测值之间达成了良好的一致性。开发的模型也用于预测颗粒的出口质量密度函数,其结果表明,随着浸出过程中的平均停留时间降低,平均粒度不一定会降低。可以预测使用该模型,可以预测对反应器性能的操作参数(例如,粒度分布,入口流动,试剂浓度,动力学参数和停留时间分布的效果)。因此,该模型可用于浸出电路的动态和静态分析以及设计和优化加工厂。

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