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Simulation and optimization of a two-stage ball mill grinding circuit of molybdenum ore

机译:钼矿两级球磨机磨矿回路的仿真与优化

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A two-stage ball milling circuit for the grinding of molybdenum ore was investigated based upon the grinding kinetic model. To this end, batch grinding tests at the laboratory-scale were conducted to obtain the specific rate of breakage and the primary breakage distribution in wet and dry environments. The test results were then scaled-up to the conditions of a full-scale ball milling circuit for grinding molybdenum ores. A two-stage ball milling circuit algebra was employed to predict the capacity, circulation ratio, and size distributions. Comparison of the simulated results and the observed values showed that the model represents accurately the actual milling process in the plant. Simulation results indicated that the classification in the milling process was operated under non-optimal conditions, and that an increase in the mill output of more than 47% was possible simply by modifying the cut size of the classifier. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B. V. and The Society of Powder Technology Japan. All rights reserved.
机译:基于磨削动力学模型,研究了用于磨矿钼的两级球磨机。为此,进行了实验室规模的批量研磨测试,以获得特定的破损率和干湿环境中的主要破损分布。然后将测试结果按比例放大到用于研磨钼矿石的全尺寸球磨机的条件。采用两级球磨循环代数来预测容量,循环比和尺寸分布。仿真结果和观测值的比较表明,该模型准确地代表了工厂中的实际铣削过程。仿真结果表明,铣削过程中的分级是在非最佳条件下进行的,仅通过修改分级机的切割尺寸,就可以使铣刨机产量增加47%以上。 (C)2016日本粉末技术学会。由Elsevier B. V.和日本粉末技术学会出版。版权所有。

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