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Enhancement of energy efficiency for mechanical production of fine and ultra-fine particles in comminution 被引量:11

Enhancement of energy efficiency for mechanical production of fine and ultra-fine particles in comminution
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摘要 This paper presents the energy requirements for mechanical production of fine and ultra-fine particles in comminution. Recent approaches for effective size reduction and energy saving in comminution are described, viz., (a) development and application of new mills/classifiers, (b) adjustment of the bead characterization in stirred bead mills, (c) hybrid comminution systems with roller-press and media mill, (d) assisted methods, and (e) simulation.2007 Chinese Society of Particuology and Institute of Process Engineering, Chinese Academy of Sciences. Published by Elsevier B.V. This paper presents the energy requirements for mechanical production of fine and ultra-fine particles in comminution. Recent approaches for effective size reduction and energy saving in comminution are described, viz., (a) development and application of new mills/classifiers, (b) adjustment of the bead characterization in stirred bead mills, (c) hybrid comminution systems with roller-press and media mill, (d) assisted methods, and (e) simulation.2007 Chinese Society of Particuology and Institute of Process Engineering, Chinese Academy of Sciences. Published by Elsevier B.V.
出处 《China Particuology》 SCIE EI CAS CSCD 2007年第3期193-201,共9页
关键词 Comminution MILL CLASSIFIER Grinding aids MICROWAVE ULTRASOUND Simulation Comminution Mill Classifier Grinding aids Microwave Ultrasound Simulation
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参考文献2

  • 1Yanmin Wang,Eric Forssberg,Hans Axelsson.Wet centrifugal classification of calcite fines - effect of feed size[J].Advanced Powder Technology.2001(3)
  • 2Gaete-Garreton,L. F.Vargas-Herma′ndez, Y.P. & Velasquez-Lambert,C. (2000). Application of ultrasound in comminution[].Ultrasonics.

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