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Mathematical Modeling of the Zinc Pressure Leach Process

机译:锌压力浸出过程的数学建模

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摘要

A comprehensive mathematical model is described for the zinc pressure leaching process. Generic kinetic expressions were derived from experimental data found in the literature for the following reaction events: (1) dissolution of marmatite, (Zn,Fe)S, (2) oxidation of ferrous to ferric, and (3) precipitation of lead jarosite. Aqueous solution properties, oxygen solubility, density, enthalpy, and vapor pressure, were correlated with solution composition and temperature. Subsequently, a kinetics-based model for simultaneous sulfide dissolution and iron precipitation in a multistage, three-phase reactor was developed. The population balance method was used for sulfide mineral material balances, and apparent equilibrium was assumed for iron precipitation. A gas-phase material balance was included, which allows for prediction of oxygen utilization. The model was solved for a particular operation of the Cominco Ltd. (Trail, BC) autoclave, and prediction results were shown to be in very good comparison with actual plant performance.
机译:描述了锌压力浸出过程的综合数学模型。通用动力学表达式是从文献中针对以下反应事件得到的实验数据得出的:(1)玛氏石的溶解,(Zn,Fe)S,(2)亚铁氧化为三价铁,以及(3)黄钾铁矾的沉淀。水溶液的性质,氧的溶解度,密度,焓和蒸气压与溶液的组成和温度相关。随后,建立了基于动力学的模型,用于在多级三相反应器中同时进行硫化物溶解和铁沉淀。人口平衡法用于硫化物矿物物质的平衡,而铁的沉淀则假定表观平衡。包括气相物料平衡,可以预测氧气的利用率。该模型已针对Cominco Ltd.(Trail,BC)高压釜的特定操作进行了求解,并且预测结果显示与工厂实际性能具有很好的对比。

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