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首页> 外文期刊>International Journal of Coal Preparation and Utilization >Statistical Analysis of Coal Beneficiation Performance in a Continuous Air Dense Medium Fluidized Bed Separator
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Statistical Analysis of Coal Beneficiation Performance in a Continuous Air Dense Medium Fluidized Bed Separator

机译:连续空气密集介质流化床分离器中煤矿性能的统计分析

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摘要

In this study, the performance of a continuous air dense medium fluidized bed (ADMFB) separator is investigated for coal beneficiation. The full factorial experimental design method is used to study the effect of superficial air velocity (U), bed length (T), and bed height (H) on the clean-coal ash content, organic material recovery, and overall system separation efficiency. Optimum operating conditions are determined and followed by the effect of feed particle size on separation quality. Statistical analysis of the results revealed that H had no significant effect on product ash content while U and T had negative effects. A reduction in ash content from 19% to 10% was obtained once full bed length was utilized. The increase of all parameters had a negative effect on organic material recovery, while recovery was always above 88%. The only significant mutual interaction was found to be between T and H with even more effectiveness than U on the recovery. Separation efficiency increased by increasing the bed length and reached 20% once full bed length was utilized. The optimum operating condition was determined to be at U = 19.5 cm/s, T= full bed length, and H = 15 cm. It was observed that feeding finer particles deteriorated the beneficiation process.
机译:在该研究中,研究了连续空气致密介质流化床(ADMFB)分离器的性能进行煤炭矿物。完整的阶乘实验设计方法用于研究浅表空气速度(U),床长(T)和床高(H)对洁净煤灰含量,有机材料回收和整体系统分离效率的影响。确定最佳操作条件,然后确定饲料粒度对分离质量的影响。结果统计分析显示,H对产品灰分含量没有显着影响,而U和T产生负面影响。一旦使用全床长度,就获得灰分含量的减少量为19%至10%。所有参数的增加对有机材料恢复产生负面影响,而恢复始终高于88%。发现唯一的显着相互依职在t和h之间,比恢复更有效。通过增加床长度增加分离效率并达到20%,一旦使用全床长度。确定最佳的操作条件在U = 19.5cm / s,t =全床长,H = 15cm。观察到饲养更细颗粒劣化了受益方法。

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