BONDING OF CHLOROPHENOLS ON IRON AND ALUMINUM-OXIDES

被引:86
作者
KUNG, KHS [1 ]
MCBRIDE, MB [1 ]
机构
[1] CORNELL UNIV,DEPT SOIL CROP & ATMOSPHER SCI,ITHACA,NY 14853
关键词
D O I
10.1021/es00016a015
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The adsorption of 10 chlorophenols on synthetic, naturally occurring iron and aluminum oxides was studied to elucidate the mechanism of binding and relative bond strength of the chlorine-substituted phenols on oxide surfaces. Surface-enhanced deprotonation of chlorophenols was identified by spectroscopic methods. Chlorophenolates were found to be chemisorbed on oxide surfaces via an inner-sphere coordination. Chlorophenols also bonded on oxides by weak physical forces (H bonding and condensation), but these types of weak bonding were identified only when adsorption occurred from the vapor phase onto dry surfaces. Physisorbed chlorophenols, unlike chemisorbed molecules, were readily removed from oxide surfaces by washing with water. Poorly crystallinzed iron and aluminum oxides showed similar mechanisms of chlorophenol binding, although the bond for chlorophenolate chemisorbed on iron oxide was stronger than that on aluminum oxide. Only physically adsorbed chlorophenols were detected on crystalline gibbsite, suggesting that the dominant (001) crystal face, with surface hydroxyl groups doubly coordinated to Al, was not specifically reactive with the chlorophenols. Chemisorption, however, was identified on the crystalline iron oxide, goethite. From the extent of perturbation of aromatic ring electrons, the surface bond strength for chlorophenolates on aluminum oxide was found to correlate with the Lewis basicity of the phenolate anions (the higher the pK(a) of the chlorophenols, the stronger the surface bond). Nevertheless, the amount of chlorophenol adsorbed on noncrystalline iron oxide at controlled pH of 5.4 was limited by the extent of deprotonation (the lower the pK(a), the more adsorption).
引用
收藏
页码:702 / 709
页数:8
相关论文
共 50 条
  • [31] STUDIES ON THE THERMAL-REACTIONS OF ALUMINUM-OXIDES AND HYDROXIDES
    NOVAK, C
    POKOL, G
    TOMOR, K
    KOMIVES, J
    GAL, S
    JOURNAL OF THERMAL ANALYSIS, 1988, 33 (03): : 765 - 769
  • [32] CENTERS OF MOLECULAR-HYDROGEN FORMATION IN ALUMINUM-OXIDES
    SELEZNEV, IL
    CHUKIN, GD
    ARBUZOVA, LA
    IGNATIEVA, TV
    DOKLADY AKADEMII NAUK SSSR, 1989, 307 (05): : 1169 - 1172
  • [33] COMPOSITION AND THERMAL-STABILITY OF ANODIC ALUMINUM-OXIDES
    VIKHAREV, AV
    KOMPANEETS, EY
    SOLOVEVA, NA
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 1994, 67 (07) : 974 - 976
  • [34] MOLECULAR-SPECTRA AND STRUCTURE OF THE BORON AND ALUMINUM-OXIDES
    NEMUKHIN, AV
    SEREBRENNIKOV, LV
    USPEKHI KHIMII, 1993, 62 (06) : 566 - 578
  • [35] FORMATION OF ALKOXY-DERIVED YTTRIUM ALUMINUM-OXIDES
    YAMAGUCHI, O
    TAKEOKA, K
    HIROTA, K
    TAKANO, H
    HAYASHIDA, A
    JOURNAL OF MATERIALS SCIENCE, 1992, 27 (05) : 1261 - 1264
  • [37] SINTERING BEHAVIOR OF ALUMINUM-OXIDES DERIVED FROM ALUMINUM HYDROXIDES WITH VARIOUS MORPHOLOGIES
    NAGAI, H
    OSHIMA, Y
    HIRANO, K
    KATO, A
    BRITISH CERAMIC TRANSACTIONS, 1993, 92 (03): : 114 - 119
  • [38] COMPARATIVE STUDIES ON THE ADSORPTION OF UREASE TO POROUS AND NONPOROUS ALUMINUM-OXIDES
    GRUNWALD, P
    INORGANICA CHIMICA ACTA-BIOINORGANIC CHEMISTRY, 1983, 79 (1-6): : 259 - 259
  • [39] STUDIES ON ALUMINUM-OXIDES AS ABSORBENTS IN THE THIN-LAYER CHROMATOGRAPHY
    LOOGK, M
    NEUE HUTTE, 1980, 25 (05): : 196 - 196
  • [40] CHARACTERIZATION OF ALUMINUM-OXIDES USED IN CERAMIC PROCESSING BY INVERSE CHROMATOGRAPHY
    ROLES, JL
    GUIOCHON, G
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1991, 201 : 203 - ANYL