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基于高压水射流的超细煤粉制备技术及其影响因素研究 被引量:4

Production and effects on ultra-fine coal powder based on high-pressure waterjet
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摘要 基于高压水射流技术采用空化射流磨对不同粒径的煤样进行了破碎,从破碎后煤样的粒径分布、比表面积及形貌特征等方面研究了不同粒径的原煤样在不同射流压力下的破碎效果。试验结果表明,空化射流磨能在很短的时间内制备出粒径小于8μm且粒径分布非常窄的超细煤粉。射流压力和进料尺寸对射流磨的破碎性能有着重要影响,即射流压力越大,产物中超细煤粉的质量分数越大,其边角越圆滑且产物粒径分布也越窄;进料尺寸越大,射流磨的破碎效率越高。 High-pressure waterjet technology use cavitating jet mill equipment to crush dif-ferent particle size coal simples.Crushing effects of different particle size coal simples in different jet pressure have been studied from three aspects,including particle size distribution,specific sur-face area and morphological properties.The experimental results showed that the cavitation jet mill could prepare ultrafine coal powder,which is the particle size less than 8 μm with very nar-row particle size distribution.The jet pressure and material size play an important role in crushing performance of jet mill.Higher waterjet pressure led to finer products that were more spherical shaped.The bigger material size,the higher crushing efficiency will be in the jet mill.
出处 《中国煤炭》 北大核心 2014年第8期93-96,共4页 China Coal
基金 中国博士后科学基金项目(2014M552555XB) 陕西省教育厅科研计划项目(14JK1476) 西安科技大学博士点基金项目(2013QDJ039)
关键词 高压水射流 射流磨 破碎 超细煤粉 high-pressure waterjet, cavitation jet mill, crush, ultra-fine coal power
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  • 1孙凯.我国成为世界矿业大国[N].光明日报,2000—2—17(2).
  • 2朱晓明.应用新设备新工艺 增强选煤系统适应性[J].中国煤炭,2003,29(6):48-49. 被引量:1
  • 3Galecki G. et al. Enhanced cleaning of the coal feed- stock for power generation [C] Mining Engineering Conference on Innovations in Mining Engineering, 2011.
  • 4Cui L. et al. Effects of process parameters on the com- minution capability o1" high-pressure waterjet mill [J] Internatioml Journal of Mineral Processing, 2006 (2).
  • 5Cui L. et al. A novel process for preparation of an ul- tra-clean superfine coal-oil slurry [J] . Fuel, 2008 (10).
  • 6叶庆春.超低灰煤扩能系统选前破碎与选后破碎工艺方案比较[J].中国煤炭,2009,35(4):88-91. 被引量:2
  • 7Mazurkiewjcz M. et al. Material disintegration by high pressure waterjet-state of the technology development [C] . Proceeding of the Third Pacific Rim International Conference on Water Jet Technology, 1992.
  • 8Palaniandy S. et al. Mechanoehemical effects on talc during fine grinding process in a jet mill [J] Inter- national Journal of Mineral Process, 2009 (1).

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