Separation of Pollutant Phenols by Micellar Electrokinetic Chromatography with Double-Chain Surfactants Having Two Sulfonate Groups.

DOI PDF Web Site Web Site Web Site View 1 Remaining Hide 4 Citations 30 References
  • HARINO Hiroya
    Osaka City Institute of Public Health and Environmental Sciences
  • TSUNOI Shinji
    Research Center for Environmental Preservation, Osaka University
  • YOSHIOKA Junko
    Research Center for Environmental Preservation, Osaka University
  • ARAKI Takashi
    Research Center for Environmental Preservation, Osaka University
  • MASUYAMA Araki
    Department of Applied Chemistry, Faculty of Engineering, Osaka University
  • NAKATSUJI Yohji
    Department of Applied Chemistry, Faculty of Engineering, Osaka University
  • IKEDA Isao
    Department of Applied Chemistry, Faculty of Engineering, Osaka University
  • TANAKA Minoru
    Research Center for Environmental Preservation, Osaka University

Bibliographic Information

Other Title
  • Separation of Pollutant Phenols by Mice

Search this article

Abstract

The separation of eleven priority (EPA) phenols and eighteen chlorophenols via micellar electrokinetic chromatography (MEKC) is described. Disodium 5,12-bis(dodecyloxymethyl)-4,7,10,13-tetraoxa-1,16-hexadecanedisulfonate (DBTHX), disodium 5,13-bis(dodecyloxymethyl)-4,7,11,14-tetraoxa-1,17-heptadecanedisulfonate (DBTHP) and disodium 5,13-bis(dodecyloxymethyl)-4,7,11,14-tetraoxa-9,9-dimethyl-1,17-heptadecanedisulfonate (DBTDMHP) were used as the double-chain surfactants. The EPA phenols were baseline separated by MEKC with 7.5 mM DBTHP. The detection limits of the phenols for a signal-to-noise ratio of 3 were in the range 0.5×10-2 - 3.0×10-2 mM. The relative standard deviation (RSD) of the capacity factors and peak areas for the phenols over the range of 0.31 - 1.8 mM were 0.21 - 1.4% and 1.9 - 4.3%, respectively. The separations of eighteen chlorophenols together with phenol were also carried out by MEKC with these surfactants. These phenols except for 2,3,5- and 2,4,5-trichlorophenol could each be separated with 10 mM DBTHX.

Journal

  • Analytical Sciences

    Analytical Sciences 14 (4), 719-724, 1998

    The Japan Society for Analytical Chemistry

Citations (4)*help

See more

References(30)*help

See more

Details 詳細情報について

Report a problem

Back to top