COMPLEXATION OF 1-NAPHTHOL BY HUMIC AND FULVIC-ACIDS

被引:16
作者
CHEN, S
INSKEEP, WP
WILLIAMS, SA
CALLIS, PR
机构
[1] MONTANA STATE UNIV,DEPT PLANT & SOIL SCI,BOZEMAN,MT 59717
[2] MONTANA STATE UNIV,DEPT CHEM,BOZEMAN,MT 59717
关键词
D O I
10.2136/sssaj1992.03615995005600010011x
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Complexation of organic solutes with dissolved humic substances may have a significant effect on the chemistry and fate of contaminants in natural systems. The complexation of 1-naphthol with dissolved humic and fulvic acids (HA and FA) in 0.01 M KCl was studied using fluorescence quenching. No increase in quenching at elevated temperature and an increase in quenching ratio at higher viscosity both indicated that the quenching was due to the formation of naphthol-HA water-soluble complexes. Conditional equilibrium constants for the association of 1-naphthol with humic and fulvic acids were estimated from the Stern-Volmer equation, and ranged from 9.7 to 33.4 L/g C. In general, HA showed a stronger affinity for 1-naphthol than FA. The ionic strength of the solution, adjusted using KCl and CaCl2, did not significantly affect the complexation of 1-naphthol with HA. The quenching ratio increased as the pH of the solution increased, suggesting that changes in the dispersion of HA polymers or additional binding mechanisms result in increased HA complexation of naphthol at higher pH. The complexation of 1-naphthol with HA was enhanced in the presence of Cu2+ and Zn2+ at a pH higher than the dissociation constant (pK(a)) of 1-naphthol (9.34). This suggests that cation bridging between functional groups of anionic organic solutes and humic or fulvic acids is an additional binding mechanism for the association of organic solutes with soluble humic substances.
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页码:67 / 73
页数:7
相关论文
共 37 条
[21]   REVERSE-PHASE SEPARATION METHOD FOR DETERMINING POLLUTANT BINDING TO ALDRICH HUMIC-ACID AND DISSOLVED ORGANIC-CARBON OF NATURAL-WATERS [J].
LANDRUM, PF ;
NIHART, SR ;
EADIE, BJ ;
GARDNER, WS .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1984, 18 (03) :187-192
[22]   DISSOLVED ORGANIC-MATTER INTERACTION WITH NAPROPAMIDE AND 4 OTHER NONIONIC PESTICIDES [J].
LEE, DY ;
FARMER, WJ .
JOURNAL OF ENVIRONMENTAL QUALITY, 1989, 18 (04) :468-474
[23]   BINDING OF HERBICIDES BY WATER-SOLUBLE ORGANIC MATERIALS FROM SOIL [J].
MADHUN, YA ;
YOUNG, JL ;
FREED, VH .
JOURNAL OF ENVIRONMENTAL QUALITY, 1986, 15 (01) :64-68
[24]  
Martell A.E., 1977, CRITICAL STABILITY C, V3
[25]   INTERACTIONS BETWEEN POLYCYCLIC AROMATIC-HYDROCARBONS AND DISSOLVED HUMIC MATERIAL - BINDING AND DISSOCIATION [J].
MCCARTHY, JF ;
JIMENEZ, BD .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1985, 19 (11) :1072-1076
[26]   ROLE OF NATURAL COLLOIDS IN THE TRANSPORT OF HYDROPHOBIC POLLUTANTS [J].
MEANS, JC ;
WIJAYARATNE, R .
SCIENCE, 1982, 215 (4535) :968-970
[27]   ADSORPTION AND CONCENTRATION OF DISSOLVED C-14 DDT BY COLORING COLLOIDS IN SURFACE WATERS [J].
POIRRIER, MA ;
LASETER, JL ;
BORDELON, BR .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1972, 6 (12) :1033-&
[28]   SPECTROSCOPIC INVESTIGATION OF ELECTRON DONOR-ACCEPTOR PROCESSES INVOLVING ORGANIC FREE-RADICALS IN THE ADSORPTION OF SUBSTITUTED UREA HERBICIDES BY HUMIC ACIDS [J].
SENESI, N ;
TESTINI, C .
PESTICIDE SCIENCE, 1983, 14 (01) :79-89
[29]  
SENESI N, 1977, SOIL ORGANIC MATTER, V2, P143
[30]  
STEVENSON F J, 1972, Journal of Environmental Quality, V1, P333, DOI 10.2134/jeq1972.00472425000100040001x