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An Approach of Segregation in Modeling Continuous flow Tank Bioleach Systems

机译:连续流槽生物浸出系统建模中的隔离方法

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Published models apply particle size to predict bioleaching reactor performance. In this study mathematical models predicting the overall reaction rate of a bioleach reactor system are developed to establish which particle parameters are necessary to describe reactor performance. Since the intrinsic leaching rate is surface area dependent, the inlet particle size and residence time are model inputs. Three models, distinguished by the incorporation of age and/or size distributions, were developed from first principles through a segregation approach. Explicit dependence on the age distribution, allows the model extension to unsteady state behavior and imperfect mixing. The models are validated against pilot plant data for pyrite-arsenopyrite concentrates obtained from the Fairview Mine in South Africa. Simulation results indicate that only a model that considers both the particle age and size distribution is in good agreement with the data.
机译:已发布的模型应用粒度预测生物浸出反应器的性能。在这项研究中,建立了预测生物浸出反应器系统总反应速率的数学模型,以建立描述反应器性能所必需的颗粒参数。由于固有的浸出速率取决于表面积,因此入口颗粒尺寸和停留时间是模型输入。通过区分方法,从最初的原则出发,开发出了三种模型,它们结合了年龄和/或大小分布。显式依赖于年龄分布,允许模型扩展到非稳态行为和不完美的混合。该模型已针对从南非Fairview矿获得的黄铁矿-毒砂矿精矿的试点工厂数据进行了验证。仿真结果表明,只有同时考虑颗粒年龄和粒度分布的模型才能与数据很好地吻合。

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