Highly Efficient Evaporative Crystallization of a High Suspension Density Sodium Chloride Slurry in a Draft-Tube Stirred Vessel in Continuous Operation
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概要
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High suspension density slurries generally require high-power stirring, which can readily lead to a large amount of particle abrasion following particle collisions, and subsequent secondary nucleation. In this study, the influence of stirring operation and suspension density on evaporative crystallization of a high-density suspension of sodium chloride in continuous operation was investigated for an optimally designed draft-tube stirred vessel based on the time evolution of the number of crystals and the particle size distribution. For highly efficient evaporative crystallization in continuous operation, the particle suspension density should be kept high to eliminate excess nucleation with large particle surface areas. The impeller speed should somewhat higher than the condition at which particles just become completely suspended to prevent particle agglomeration.
- 2011-07-01
著者
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上ノ山 周
横国大院・工
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Kaminoyama Meguru
Division Of Material Science And Chemical System Engineering Yokohama National University
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Kaminoyama Meguru
Yokohama National Univ. Yokohama Jpn
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Nishi K
Faculty Of Engineering Yokohama National University
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Misumi Ryuta
Faculty Of Engineering Yokohama National University
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KATO Shimpei
Division of Materials Science and Chemical Engineering, Graduate School of Engineering, Yokohama Nat
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IBE Suisei
Division of Materials Science and Chemical Engineering, Graduate School of Engineering, Yokohama Nat
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Nishi Kazuhiko
Division Of Materials Science And Chemical Engineering Faculty Of Engineering Yokohama National Univ
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Misumi Ryuta
Division Of Materials Science And Chemical Engineering Faculty Of Engineering Yokohama National Univ
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Nishi Kazuhiko
Division Of Materials Science And Chemical Engineering Faculty Of Engineering Yokohama National Univ
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Ibe Suisei
Division Of Materials Science And Chemical Engineering Graduate School Of Engineering Yokohama Natio
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Kato Shimpei
Division Of Materials Science And Chemical Engineering Graduate School Of Engineering Yokohama Natio
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