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Processing of coal fines using air fluidization in an air table

机译:空气流化空气流化煤粉的处理

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Dry beneficiation of fine coal was investigated using air fluidization in a vibrating air table. A systematic study based on a response surface method of experimentation revealed the features of separation. The ash content of the -1.0 mm coal feed was reduced from 25.8% to 16.2% with 40.9% mass yield of the clean coal. Optimization was carried out for a target clean coal ash and process conditions were identified for maximum mass yield. A detailed statistical analysis revealed the complex nature of influence of the operating variables on the separation performance. Mathematical models for the mass yield and ash content of the clean coal were developed based on the statistical analysis. The operating regimes for any target product were identified. It was established that complex interaction of the process variables described the separation performance. The longitudinal and transverse velocities of the particles were estimated by considering the components of force due to side tilt, end tilt, vibration frequency and bulk flow. The experimental results were explained in the light of the findings from force balance analysis. A phenomenological description of the separation features of air table has also been given. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用空气流化在振动空气表中研究了细煤的干燥优选。基于响应表面的实验方法进行系统研究揭示了分离的特征。 -1.0mm煤进料的灰分含量从25.8%降至16.2%,含有40.9%的清洁煤。针对目标清洁煤灰分进行优化,鉴定了最大质量产量的工艺条件。详细的统计分析显示了操作变量对分离性能影响的复杂性质。基于统计分析,开发了净产量和清洁煤灰分含量的数学模型。确定了任何目标产品的操作方案。建立了过程变量的复杂相互作用描述了分离性能。通过考虑由于侧倾,末端倾斜,振动频率和散装流量的力的部件来估计颗粒的纵向和横向速度。根据武力平衡分析的发现,解释了实验结果。还给出了空气表的分离特征的现象学描述。 (c)2016年Elsevier B.v.保留所有权利。

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