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溶液自发结晶过程动力学参数研究
引用本文:伍川,黄培,黄德春,杨红群,徐南平,时钧.溶液自发结晶过程动力学参数研究[J].中国化学工程学报,2005,13(5):589-595.
作者姓名:伍川  黄培  黄德春  杨红群  徐南平  时钧
作者单位:[1]College of Chemical Engineering, Nanjing University of Technology, Nanjing 210009, China [2]Faculty of Chemistry & Material Science, Hubei University, Wuhan 430062,China [3]Department of Chemical Engineering, Jiujiang University, Jiujiang 332005, China
摘    要:The batch cooling crystallization initiated from spontaneous nucleation for aqueous solution of potas- sium nitrate was studied.The concentration and transmittance data were acquired on line throughout the operation. Based on solute mass transfer in both liquid and solid phases,a kinetic model was deduced by assuming that the late period of primary nucleation resembles the initial period of the secondary nucleation.Nucleation and crystal growth stages were identified.Kinetic parameters were estimated piecewise from online experimental data and compared with those in literature.The estimated kinetic parameters for stages without apparent primary nucleation agreed well with those in literature.Further,a simulated concentration curve was also drawn from the estimated kinetic parameters and it matched well with that in experiment.

关 键 词:自发结晶过程  动力学参数  硝酸钾  数学模型  晶体生长
收稿时间:2004-07-10
修稿时间:2004-07-102005-06-28

Crystallization Kinetics of Batch Spontaneous Nucleation of Potassium Nitrate
WU Chuan,HUANG Pei,HUANG Dechun,YANG Hongqun,XU Nanping,SHI Jun.Crystallization Kinetics of Batch Spontaneous Nucleation of Potassium Nitrate[J].Chinese Journal of Chemical Engineering,2005,13(5):589-595.
Authors:WU Chuan  HUANG Pei  HUANG Dechun  YANG Hongqun  XU Nanping  SHI Jun
Affiliation:Nanjing University of Technology;Nanjing University of Technology;Nanjing University of Technology;Nanjing University of Technology;Nanjing University of Technology
Abstract:The batch cooling crystallization initiated from spontaneous nucleation for aqueous solution of potassium nitrate was studied. The concentration and transmittance data were acquired on line throughout the operation. Based on solute mass transfer in both liquid and solid phases, a kinetic model was deduced by assuming that the late period of primary nucleation resembles the initial period of the secondary nucleation. Nucleation and crystal growth stages were identified. Kinetic parameters were estimated piecewise from online experimental data and compared with those in literature. The estimated kinetic parameters for stages without apparent primary nucleation agreed well with those in literature. Further, a simulated concentration curve was also drawn from the estimated kinetic parameters and it matched well with that in experiment.
Keywords:potassium nitrate  batch spontaneous crystallization  mathematical modeling  parameter estimation  nucleation  crystal growth
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