首页 | 本学科首页   官方微博 | 高级检索  
     

空间质量作用模型预测小分子离子交换平衡
引用本文:陈卫东, ,王艳东, ,苏志国.空间质量作用模型预测小分子离子交换平衡[J].中国化学工程学报,2005,13(1):18-23.
作者姓名:陈卫东     王艳东     苏志国
作者单位:[1]DepartmentofBiochemicalEngineering,SchoolofChemicalScienceandEngineering,UniversityofPetroleumChina(Beijing),Beijing102249,China [2]InstituteofMolecularRadiobiology,GSF,Ingolstaedtr.1,D-85764Neuherberg,Germany [3]StateKeyLaboratoryofBiochemicalEngineering,InstituteofProcessEngineering,ChineseAcademyofSciencesBeijing100080,China
摘    要:The steric mass-action (SMA) model has been widely reported in the literature for ion-exchange and metal-affinity interaction adsorption equilibrium of biomacromolecules. In this paper, the usefulness of SMA model is analyzed for describing micromolecule ion-exchange equilibrium onto cation exchangers, CM Sephadex C-25 and Streamline SP. Batch adsorption experiments with ephedrine hydrochloride as a model adsorbate are carried out to determine the model parameters, that is, steric factor, characteristic charge and equilibrium constant. The result shows that the SMA model parameters of micromolecule cannot be obtained using the nonlinear least-square fitting method as protein‘s due to the remarkable difference between the molecular mass and dimension of micromolecule and protein. It is considered that the small size of the adsorbates dealt with in this study justifies the neglect of steric hindrances arising from adsorbate bulkiness. Thus, the three-parameter SMA model is reduced to two-parameter one (i.e., steric factor is equal to zero) for describing micromolecule ion-exchange equilibrium. It is found that the equilibrium constant for CM Sephadex C-25 increases with increasing ionic strength, while the equilibrium constant for Streamline SP shows an opposite trend. This is probably due to the remarkable difference between the physicalpro perties of the two adsorbents. Then, the relationship between the equilibrium constant and ionic strength is described by an expression. The computer simulations show that, the theoretical model with the correlation is promising in the prediction of micromolecule adsorption decrease with increasing ionic strength in a wide range of salt concentration.

关 键 词:微分子  离子交换平衡体系  空间运动模式  SMA模式  色谱法  SMA模型
修稿时间: 

Suitability of Steric Mass-action Model for Ion-exchange Equilibrium of Micromolecule
CHEN Weidong,WANG Yandong,SU Zhiguo.Suitability of Steric Mass-action Model for Ion-exchange Equilibrium of Micromolecule[J].Chinese Journal of Chemical Engineering,2005,13(1):18-23.
Authors:CHEN Weidong  WANG Yandong  SU Zhiguo
Affiliation:Department of Biochemical Engineering, School of Chemical Science and Engineering, University of Petroleum, China Beijing, Beijing 102249, China;Institure of Molecular Radiobiology, GSF, Ingolstadtr.1, D-85764 Neuherberg, Germany;State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences,Beijing 100080, China
Abstract:The steric mass-action (SMA) model has been widely reported in the literature for ion-exchange and metal-affinity interaction adsorption equilibrium of biomacromolecules. In this paper, the usefulness of SMA model is analyzed for describing micromolecule ion-exchange equilibrium onto cation exchangers, CM Sephadex C-25 and treamline SP. Batch adsorption experiments with ephedrine hydrochloride as a model adsorbate are carried out to determine the model parameters, that is, steric factor, characteristic charge and equilibrium constant. The result shows that the SMA model parameters of micromolecule cannot be obtained using the nonlinear least-square fitting method as protein's due to the remarkable difference between the molecular mass and dimension of micromolecule and protein. It is considered that the small size of the adsorbates dealt with in this study justifies the neglect of steric hindrances arising from adsorbate bulkiness. Thus, the three-parameter SMA model is reduced to two-parameter one (i.e., steric factor is equal to zero) for describing micromolecule ion-exchange equilibrium. It is found that the equilibrium constant for CM Sephadex C-25 increases with increasing ionic strength, while the equilibrium constant for Streamline SP shows an opposite trend. This is probably due to the remarkable difference between the physical properties of the two adsorbents. Then, the relationship between the equilibrium constant and ionic strength is described by an expression. The computer simulations show that, the theoretical model with the correlation is promising in the prediction of micromolecule adsorption decrease with increasing ionic strength in a wide range of salt concentration.
Keywords:micromolecule  ion-exchange equilibrium  steric mass-action model  chromatography
本文献已被 CNKI 维普 万方数据 等数据库收录!
点击此处可从《中国化学工程学报》浏览原始摘要信息
点击此处可从《中国化学工程学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号