Comparative study on the compression characteristics under mechanical and gas pressurization

Shicheng Wang, Xiaolei Guo, Hui Zhang, Yunfei Yang, Haifeng Lu, Haifeng Liu
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Abstract

Powder compression is essential in the storage and transportation processes. The compression characteristics of pulverized coal, rice husk and lignocellulose were compared under mechanical and gas pressurization respectively. The experimental results showed that the descending order of relative packing density was lignocellulose > rice husk > pulverized coal under mechanical pressurization, while an opposite trend was observed under gas pressurization. The effect of cohesion properties on compression results, such as inter-particle adhesion force and powder bed cohesion, was also investigated. For mechanical pressurization, the powder bed of cohesive biomass had higher void fraction, which was directly linked to larger relative packing density. On the contrary, gas permeated easily into the biomass powder bed, and the lower pressure drop decreased the compression capacity of gas pressurization. In addition, a model for predicting the relative packing density was proposed with an error of ± 5%.
机械加压与气体加压下压缩特性的比较研究
粉末压缩在储存和运输过程中是必不可少的。分别比较了煤粉、稻壳和木质纤维素在机械加压和气体加压下的压缩特性。实验结果表明:相对堆积密度由大到小依次为木质纤维素;谷壳;煤粉在机械加压下,而在气体加压下则相反。研究了颗粒间黏结力和粉床黏结力等黏结力对压缩结果的影响。机械加压时,粘性生物质粉床孔隙率较高,其相对堆积密度较大。反之,气体容易渗透到生物质粉床中,压降越低,气体增压的压缩能力就越低。建立了相对堆积密度的预测模型,误差为±5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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