The Ephedrine and Pseudoephedrine Separation with the Capillary Electrophoresis and Determination by Conductivity Detector

被引:0
|
作者
Zheng, Yi-Ning
Xie, Tian-Yao
Mo, Jin-Yuan
Wei, Shou-Lian
机构
[1] Department of Chemistry, Zhongshan University, Guangzhou 510275, China
[2] Dept. of Chem. and Chem. Engineering, Guangxi University for Nationalities, Nanning 530006, China
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The separation between ephedrine and pseudoephedrine with capillary electrophoresis and determination by the conductivity detector is reported. The separation mechanism is studied and the determination method is found. The effects of complex reagent concentration, concentration and pH of the running buffer, separation voltage and the organic solvent concentration are investigated and discussed. At 13.5 kV high voltage the ephedrine and pseudoephedrine are separated successfully in a citric acid-sodium citrate buffer(pH=4.5) with the copper salt as the complex reagent. Ethanol is used to improve the peak shapes and separation effects. There are an excellent linearity between peak area and concentration of analytes in the concentration range of 1.4-165 mg/L for ephedrine and 0.825-165 mg/L for pseudophedrine with the detection limits (S/N=3) of 0.825 and 0.198 for ephedrine and pseudophedrine respectively. Relative standard deviations(RSD) of the ephedrine and psudoephedrine are 3.2% (ephedrine) and 2.8%(psudoephedrine) based on the determination of seven times. The ephedrine and pseudoephedrine in collunarium are detected and the satisfaction results are obtained.
引用
收藏
相关论文
共 50 条
  • [21] Determination of Ephedrine, Pseudo-Ephedrine and Caffeine in a Dietary Product by Capillary Electrophoresis
    A. Amini
    V. Barclay
    T. Rundlöf
    S. Jönsson
    A. Karlsson
    T. Arvidsson
    Chromatographia, 2006, 63 : 143 - 148
  • [22] Separation and determination of ephedrine enantiomers by capillary electrophoresis using l-leucine as chiral selector
    Ye, NS
    Gu, XX
    Zou, H
    Zhu, RH
    CHROMATOGRAPHIA, 2002, 56 (9-10) : 637 - 639
  • [23] Contactless conductivity detector for microchip capillary electrophoresis
    Pumera, M
    Wang, J
    Opekar, F
    Jelínek, I
    Feldman, J
    Löwe, H
    Hardt, S
    ANALYTICAL CHEMISTRY, 2002, 74 (09) : 1968 - 1971
  • [24] High Frequency Conductivity Detector for Capillary Electrophoresis
    Chen, Zuan-Guang
    Mo, Jin-Yuan
    Kao Teng Hsueh Hsiao Hua Heush Hsueh Pao/ Chemical Journal of Chinese Universities, 2002, 23 (05):
  • [25] Determination of amino acids by capillary electrophoresis with differential resonant contactless conductivity detector
    Shen, Dazhong
    Li, Yaolong
    Zhang, Zhenli
    Zhang, Ping
    Kang, Qi
    TALANTA, 2013, 104 : 39 - 43
  • [26] High frequency conductivity detector for capillary electrophoresis
    Chen, ZG
    Mo, JY
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2002, 23 (05): : 801 - 804
  • [27] Contactless conductivity detector for capillary electrophoresis chip
    Liu, Xiao-Wei
    Zhang, Hai-Feng
    Shao, Xian-Hui
    Li, Ling
    Peng, Zhi-Cheng
    Nami Jishu yu Jingmi Gongcheng/Nanotechnology and Precision Engineering, 2009, 7 (02): : 123 - 126
  • [28] Contactless conductivity detector array for capillary electrophoresis
    Stojkovic, Marko
    Koenka, Israel Joel
    Thormann, Wolfgang
    Hauser, Peter C.
    ELECTROPHORESIS, 2014, 35 (04) : 482 - 486
  • [29] Determination of ephedrine alkaloid stereoisomers in dietary supplements by capillary electrophoresis
    Phinney, KW
    Ihara, T
    Sander, LC
    JOURNAL OF CHROMATOGRAPHY A, 2005, 1077 (01) : 90 - 97
  • [30] Separation and determination of auxins by capillary electrophoresis
    Liu, J
    Li, SFY
    JOURNAL OF LIQUID CHROMATOGRAPHY & RELATED TECHNOLOGIES, 1996, 19 (11) : 1697 - 1713