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Mathematical modelling of oxidative leaching of nickel concentrate magnetic fraction

机译:镍精矿磁性部分氧化浸出的数学模型

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摘要

Separation of a magnetic fraction from nickel concentrate following matte flotation, and its treatment in a separate circuit enable reduces precious metals losses. The magnetic fraction is treated in two stages of oxidative leaching: atmospheric and pressure leaching. A study of the atmospheric stage, using mathematical modelling, is described in this paper. The mathematical model and experimental data were used to carry out industrial process calculations. The model enabled extrapolation of the results of batch laboratory test to industrial-scale continuous processing and the selection of optimal process conditions and large-scale equipment. In December 2004, commercial oxidative leaching tests were performed on the magnetic fraction at the Severonickel Plant (Monchegorsk, Russia). A comparative analysis of the mathematical modelling results and the actual process parameters is presented.
机译:磨砂浮选后,从镍精矿中分离出磁性部分,并在单独的电路中对其进行处理,可以减少贵金属的损失。磁性部分分两个阶段进行氧化浸出:常压浸出和压力浸出。本文介绍了使用数学模型对大气阶段进行的研究。数学模型和实验数据用于进行工业过程计算。该模型可以将批实验室测试的结果外推到工业规模的连续处理过程中,并可以选择最佳工艺条件和大型设备。 2004年12月,在Severonickel工厂(俄罗斯Monchegorsk)对磁性部分进行了商业氧化浸出试验。给出了数学建模结果和实际过程参数的比较分析。

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