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Density-based segregation/separation performances of dense medium gas-solid fluidized bed separator (DMFBS) for coal cleaning and upgrading

机译:密实气固流化床分离器(DMFBS)基于密度的分离/分离性能

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摘要

Dense medium gas solid fluidized bed separator (DMFBS) is recognized as a new, alternative technique for coal cleaning and upgrading. Characteristics of the used dense medium (magnetite powder) were studied, and washability of the feeding coal sample was analyzed. A double-layer, stable-pressure air distributor was designed to ensure uniform air distribution for the bed. Fluidization characteristics, including bed pressure drop Delta P-B, overall stability of the bed, fluctuation of the bed density, were investigated and the results indicate that the bed can provide favorable fluidization stability and uniform density distribution with suitable gas velocities that allow for coal separation. Segregation/separation performances of DMFBS are mainly dependent on operating gas velocity. Density-based segregation occurred, with optimum segregation efficiency S-ash values of 0.65, 0.68, 0.72 and 0.75 were achieved at U = 1.6 U-mf for various sized coals. The laboratory scale separator reduced the ash content from 39.56 to 10.96% and rejected sulfur content from 1.07 to 0.41% for 3-25 mm sized coal. The probable error E-P values of 0.075, 0.070, 0.060 and 0.058 g/cm(3) were obtained at the separating densities of 1.605, 1.69, 1.76 and 1.83 g/cm(3), respectively for various sized coals, indicating that a notable separation performance was achieved. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:稠密的气固流化床分离器(DMFBS)被公认为是煤炭清洁和升级的一种新的替代技术。研究了所用致密介质(磁铁矿粉)的特性,并分析了进料煤样品的可洗性。设计了双层稳定压力空气分配器,以确保床的空气分配均匀。研究了流化特性,包括床压降Delta P-B,床的整体稳定性,床密度的波动,结果表明该床可以提供有利的流化稳定性和均匀的密度分布,并具有合适的气体速度进行煤分离。 DMFBS的分离/分离性能主要取决于工作气体速度。发生基于密度的偏析,最佳偏析效率对于各种尺寸的煤,在U = 1.6 U-mf时,S-灰分值分别达到0.65、0.68、0.72和0.75。对于3-25毫米大小的煤,实验室规模的分离器将灰分含量从39.56降低到10.96%,将废硫含量从1.07降低到0.41%。对于不同大小的煤,分别在1.605、1.69、1.76和1.83 g / cm(3)的分离密度下,可能的误差EP值分别为0.075、0.070、0.060和0.058 g / cm(3),这表明分离性能得以实现。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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