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Diffusion Coefficients ofl-Lysine Hydrochloride and l-Arginine Hydrochloride in Their
Aqueous Solutions at 25℃

MA Peisheng; WUJ Yanxia; LIU Yunqi; XIA Shuqian; LI Shufen   

  1. College of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China 
  • Received:1900-01-01 Revised:1900-01-01 Online:2000-06-28 Published:2000-06-28
  • Contact: MA Peisheng

25℃下l-盐酸耐氨酸和l-盐酸精氨酸在其溶液中的扩散系数

马沛生; 吴艳霞; 刘耘畦; 夏淑倩; 李淑芬   

  1. College of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China 
  • 通讯作者: 马沛生

Abstract: The diffusion coefficients** ofl-lysine hydrochloride andl-arginine hydrochloride in their
aqueous solu- tions at 25℃ were determined by the metallic diaphragm cell method which is
characterized by accuracy, promptness and convenience. Meanwhile, the densities and
viscosities of the solutions were also determined. Based on all these data a semi-empirical
model for correlating the diffusion coefficients of solid organic salts in their aqueous
solutions at 25℃ was proposed. The fitting result of this model is comparatively
satisfactory. Compared to a former model, Gordon Model, this model can avoid a number of
difficulties and arduous work.

Key words: lysine hydrochloride, arginine hydrochloride, diffusion coefficient, metallic diaphragm cell method, semi-empirical model

摘要: The diffusion coefficients** ofl-lysine hydrochloride andl-arginine hydrochloride in their
aqueous solu- tions at 25℃ were determined by the metallic diaphragm cell method which is
characterized by accuracy, promptness and convenience. Meanwhile, the densities and
viscosities of the solutions were also determined. Based on all these data a semi-empirical
model for correlating the diffusion coefficients of solid organic salts in their aqueous
solutions at 25℃ was proposed. The fitting result of this model is comparatively
satisfactory. Compared to a former model, Gordon Model, this model can avoid a number of
difficulties and arduous work.

关键词: lysine hydrochloride;arginine hydrochloride;diffusion coefficient;metallic diaphragm cell method;semi-empirical model