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A water-based method for measuring density-based partition curves of separators used in coal and mineral processing

机译:一种用于测量煤和矿物加工中分离器的密度分配曲线的水基方法

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Traditional sink-float methods for measuring the density distribution of particulate samples rely on expensive and toxic heavy liquids. An alternative method has been developed which uses aqueous glycerol solutions in a laboratory-scale Reflux Classifier run in semi-batch mode. The high viscosity of these solutions promotes laminar high-shear flow in the channels which suppresses the effect of particle size on separation performance. Thus this technique was able to accurately measure the yield-ash curve of coal samples, and from this their density distribution could be inferred. Applying this approach to feed, product and reject samples enabled calculation of the density partition separation performance. Samples were collected from two case studies: a laboratory-scale continuous Reflux Classifier and a single spiral start from a full-scale coal handling and preparation plant. In both cases the partition curve measured by the new method was within experimental uncertainty of the partition curve measured by the standard sink-float method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:用于测量颗粒样品密度分布的传统沉浮法依赖于昂贵且有毒的重液体。已经开发出另一种方法,该方法在实验室规模的以半间歇模式运行的Reflux分类机中使用甘油水溶液。这些溶液的高粘度促进了通道中层流的高剪切流动,从而抑制了粒径对分离性能的影响。因此,该技术能够准确地测量煤样品的产率-灰分曲线,并由此推断其密度分布。将这种方法应用于进料,产品和废品样本,可以计算密度分区分离性能。从两个案例研究中收集了样本:实验室规模的连续回流分类器和从大型煤炭处理和选煤厂开始的单螺旋启动。在这两种情况下,通过新方法测量的分隔曲线均在通过标准水槽浮法测量的分隔曲线的实验不确定性范围内。 (C)2015 Elsevier Ltd.保留所有权利。

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