Complexation equilibria of humic substances in aqueous solution (Review)

被引:0
作者
Miyajima, T
Mori, M
机构
关键词
humic substances; complexation equilibria; fulvic acid; polyacrylic acid; polyelectrolyte; heterogeneity; Donnan model; electrostatic binding; site binding;
D O I
暂无
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Thermodynamic and spectroscopic studies on the complexation equilibria of humic and fulvic acids in aqueous solutions are reviewed. Two complicating factors, i.e., polyelectrolytic and functional group heterogeneity effects inherent in the ion-binding equilibria of these naturally occurring polyacids, have been treated separately. Applicability of a Donnan model to the analysis of the proton and metal ion binding equilibria of fulvic acid standard samples and polyacrylic acid has been examined. It has been revealed that electrostatic binding as well as specific binding such as chelate and monodentate ligand complex formation play important roles in the complexation equilibria of these polyion systems.
引用
收藏
页码:369 / 399
页数:31
相关论文
共 50 条
[21]   Humic substances and their complexation with phosphorus and calcium during composting of pressmud and other biodegradables [J].
Satisha, GC ;
Devarajan, L .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2005, 36 (7-8) :805-818
[22]   Synchronous-scan fluorescence and the complexation of copper (II) ions by humic substances [J].
Lombardi, AT ;
Jardin, WF .
JOURNAL OF THE BRAZILIAN CHEMICAL SOCIETY, 1997, 8 (04) :339-342
[23]   The reaction of aquatic humic substances with copper(II) ions: an ESR study of complexation [J].
Lu, XQ ;
Johnson, WD .
SCIENCE OF THE TOTAL ENVIRONMENT, 1997, 203 (03) :199-207
[24]   Cyanogenic Residues: Environmental Impacts, Complexation with Humic Substances, and Possible Application as Biofertilizer [J].
Shenia O. Souza ;
Luciana C. Oliveira ;
Alexandre D. M. Cavagis ;
Wander G. Botero .
Water, Air, & Soil Pollution, 2014, 225
[25]   Cyanogenic Residues: Environmental Impacts, Complexation with Humic Substances, and Possible Application as Biofertilizer [J].
Souza, Shenia O. ;
Oliveira, Luciana C. ;
Cavagis, Alexandre D. M. ;
Botero, Wander G. .
WATER AIR AND SOIL POLLUTION, 2014, 225 (12)
[26]   Sorption of Metal Ions from Aqueous Solutions by Humic Substances [J].
Ismagilov, Z. R. ;
Smirnov, V. G. ;
Malyshenko, N. V. ;
Zherebtsov, S. I. .
SOLID FUEL CHEMISTRY, 2023, 57 (05) :297-306
[27]   Removal of humic substances from aqueous solutions by the coagulation process [J].
Kaleta, J. ;
Elektorowicz, M. .
ENVIRONMENTAL TECHNOLOGY, 2009, 30 (02) :119-127
[28]   Sorption of Metal Ions from Aqueous Solutions by Humic Substances [J].
Z. R. Ismagilov ;
V. G. Smirnov ;
N. V. Malyshenko ;
S. I. Zherebtsov .
Solid Fuel Chemistry, 2023, 57 :297-306
[29]   Humic Substances as a Versatile Intermediary [J].
Hricikova, Simona ;
Kozarova, Ivona ;
Hudakova, Nikola ;
Reitznerova, Anna ;
Nagy, Jozef ;
Marcincak, Slavomir .
LIFE-BASEL, 2023, 13 (04)
[30]   Determination of the contribution of humic substances to iron complexation in seawater by catalytic cathodic stripping voltammetry [J].
Sukekava, Camila ;
Downes, Javier ;
Slagte, Hans A. ;
Gerringa, Loes J. A. ;
Laglera, Luis M. .
TALANTA, 2018, 189 :359-364