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首页> 外文期刊>Turkish journal of chemistry >Optimization of the Nonaqueous Capillary Electrophoresis Separation of Metal Ions Using Mixture Design and Response Surface Methods
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Optimization of the Nonaqueous Capillary Electrophoresis Separation of Metal Ions Using Mixture Design and Response Surface Methods

机译:混合设计和响应面法优化金属离子的非水毛细管电泳分离

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Mixture experimental design was used to enhance the separation selectivity of metal ions in nonaqueous capillary electrophoresis.The separation of cations(Ag,Fe,Cr,Mn,Cd,Co,Pb,Ni,Zn and Cu)was achieved using imidazole as UV co-ion for indirect detection.Acetic acid was chosen as an electrolyte because its cathodic electroosmotic flow permits faster separation.The composition of organic solvents is important to achieve the best separation of all metal ions.Simplex lattice design and response surface methods have proved to be an effective tool to optimize the composition of organic solvents in nonaqueous capillary electrophoresis.Full and reduced experimental design models were compared to obtain the optimum composition of solvents.Contour plots were presented to visualize the effect of the selected solvents on electrophoretic mobility.The highest electrophoretic mobilities were obtained with higher percentages of acetonitrile for all metal ions.Root mean square error(RMSE)and F-test were used to evaluate the models.
机译:通过混合实验设计提高了非水毛细管电泳中金属离子的分离选择性,并以咪唑为紫外钴,实现了阳离子(Ag,Fe,Cr,Mn,Cd,Co,Pb,Ni,Zn和Cu)的分离离子用于间接检测。选择乙酸作为电解质是因为其阴极电渗流可实现更快的分离。有机溶剂的组成对于实现所有金属离子的最佳分离非常重要。单晶格设计和响应面方法已被证明是可行的。一种在非水毛细管电泳中优化有机溶剂组成的有效工具,比较了完整和简化的实验设计模型以获得最佳的溶剂组成,并绘制了等高线图以可视化所选溶剂对电泳迁移率的影响。对于所有金属离子,在较高的乙腈含量下获得了迁移率。均方根误差(RMSE)和F检验e用于评估模型。

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