首页> 外文期刊>International Journal of Coal Preparation and Utilization >Fluidization Characteristics of the Dense Gas-Solid Fluidized Bed Separator Based on the Mixed-Medium Solids of Magnetite and Paigeite Powder
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Fluidization Characteristics of the Dense Gas-Solid Fluidized Bed Separator Based on the Mixed-Medium Solids of Magnetite and Paigeite Powder

机译:基于磁铁矿和磷铝石粉混合固体的密相气固流化床分离器的流化特性

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摘要

Fluidization characteristics of the mixed magnetite and paigeite powder were studied by the combination approach of numerical simulation and experimental verification to optimize the design of the medium solids used in the dense gas-solid fluidized bed separator (DGSFBS). The experimental results showed that the favorable fluidization performance could be achieved with the weight proportion of paigeite powder in the mixture 25% ≤ α≤35%, while the relative deviation in the bed density should be Δp ≤0.025 g /m~3, The corresponding simulation results were obtained by selecting suitable mathematical models and parameters. It also indicated that the fluidized bed with mixed solids could provide a good fluidization performance and stable density distribution. The laboratory-scale DGSFBS was used to conduct the separation experiments on raw coal with size range of 13-6 mm and ash content of 33.43%. With the parameter α= 30%, the experiment resulted in the coal ash content being reduced from 33.43% to 11.63% with a probable error, E_p of 0.07 anda recovery efficiency of 98.59%. Utilization of either magnetite or paigeite powder alone was not effective; however, fluidization performance and separation efficiency of DGSFBS improved with the utilization of mixed solids.
机译:通过数值模拟和实验验证相结合的方法,研究了磁铁矿和磷铝石混合粉末的流化特性,以优化气固流化床分离器(DGSFBS)中使用的中等固体的设计。实验结果表明,混合比例为25%≤α≤35%的磷铝石粉,可以获得良好的流化性能,床层密度的相对偏差应为Δp≤0.025g / m〜3,通过选择合适的数学模型和参数可获得相应的仿真结果。这也表明具有混合固体的流化床可以提供良好的流化性能和稳定的密度分布。实验室规模的DGSFBS用于对原煤进行分离实验,原煤的粒度范围为13-6 mm,灰分为33.43%。在参数α= 30%的情况下,实验将煤灰含量从33.43%降低至11.63%,可能的误差E_p为0.07,回收率达到98.59%。单独使用磁铁矿或坡铁矿粉末均无效。然而,DGSFBS的流化性能和分离效率随着混合固体的利用而提高。

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