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首页> 外文期刊>International Journal of Coal Preparation and Utilization >Effect of Medium Composition on Dense Medium Cyclone Operation
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Effect of Medium Composition on Dense Medium Cyclone Operation

机译:培养基组成对浓密旋风分离器操作的影响

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摘要

The importance of the amount of nonmagnetic material present in a medium to the stability of the medium and the subsequent density of separation has been the focus by the authors on a number of recent ACARP projects. A method for quantifying the composition of a medium in terms of magnetite, clay, fine coal, and small coal was demonstrated and, using a series of pilot-scale experiments, the effect that each of these components have on the DMC operation was investigated. This has been extended by developing a more complete understanding of the roles of the clay and fine coal and that of the small coal. This article discusses some of the results of this work and the effect that the changing medium composition has on the efficiency of the DMC. A case study and plant data showing the medium composition from plant startup are also included in the discussion. Research has shown that magnetite by itself at feed medium densities below 1.4 is less stable then a mixture containing magnetite clay and or fine coal (nonmagnetic>20% w/w) and that the density of the underflow is the most affected stream. The research also shows that the small coal (above 0.2mm) does not play a role in stabilizing the medium. Understanding these dynamic relationships is important in understanding the actual density of separation that a DMC is operating and the stability of this operation. This relationship is also important when conducting plant audits of the DMC circuit particularly in regards to circuit stabilization times.
机译:作者对许多近期ACARP项目的关注焦点是,培养基中存在的非磁性材料的数量对培养基的稳定性以及随后的分离密度的重要性。演示了一种根据磁铁矿,粘土,细煤和小煤对介质成分进行定量的方法,并通过一系列中试实验,研究了每种成分对DMC操作的影响。通过对粘土,细煤和小煤的作用有了更全面的了解,扩展了这一点。本文讨论了这项工作的一些结果,以及不断变化的培养基成分对DMC效率的影响。讨论中还包括了案例研究和工厂数据,这些数据显示了来自工厂启动的培养基成分。研究表明,与含磁铁矿粘土和/或细煤(非磁性> 20%w / w)的混合物相比,磁铁矿本身在进料介质密度低于1.4时不稳定,底流密度是受影响最大的物流。研究还表明,小煤(0.2mm以上)在稳定介质方面没有作用。了解这些动态关系对于了解DMC正在运行的实际分离密度以及此操作的稳定性很重要。在进行DMC电路的工厂审核时,特别是在电路稳定时间方面,这种关系也很重要。

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