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遗传算法用于液相分离条件的优化
引用本文:陈学国,倪坚毅,邹汉法,赵瑞环.遗传算法用于液相分离条件的优化[J].色谱,2002,20(2):97-101.
作者姓名:陈学国  倪坚毅  邹汉法  赵瑞环
作者单位:中国科学院大连化学物理研究所,国家色谱研究分析中心,辽宁,大连,116011
摘    要: 在参考传统的优化方法的基础上 ,将遗传算法用于等度反相多元流动相分离条件的优化。详细介绍了基于线杂交和面变异的遗传算法的原理及其用于液相分离条件优化的过程。将此法用于 9种小肽的反相离子对分离条件的优化 ,经过 3次寻优操作 ,确定了最佳分离条件 ,实验保留值与预测值的平均相对偏差为0 75 % ,优化结果比较理想。

关 键 词:遗传算法  优化  反相离子对高效液相
文章编号:1000-8713(2002)02-0097-05

Application of Genetic Algorithm in Optimization of Mobile Phase Composition in High Performance Liquid Chromatography
CHEN Xue-guo,NI Jian-yi,ZOU Han-fa,ZHAO Rui-huan.Application of Genetic Algorithm in Optimization of Mobile Phase Composition in High Performance Liquid Chromatography[J].Chinese Journal of Chromatography,2002,20(2):97-101.
Authors:CHEN Xue-guo  NI Jian-yi  ZOU Han-fa  ZHAO Rui-huan
Institution:National Chromatographic R. & A. Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116011, China.
Abstract:Referring to traditional optimal methods, a method for the optimization of isocratic elution mobile phase composition in high performance liquid chromatography has been developed. In this method, the genetic algorithm based on line-crossover and plane-mutation is used. The principle of genetic algorithm and the process of optimization of mobile phase composition in reversed-phase ion-pair high performance liquid chromatography using genetic algorithm are introduced in details. With the concentrations of acetonitrile and ion-pair reagent sodium octane sulfonate chosen as the optimal parameters, the optimum was obtained by three times of optimization procedures. The mean relative error between the predicted and experimental values was 0.75% at the optimum and the optimization results were satisfactory.
Keywords:genetic algorithm  optimization  reversed-phase ion-pair high performance liquid chromatography
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