Cation binding predictions of surface complexation models: Effects of pH, ionic strength, cation loading, surface complex, and model fit

被引:94
|
作者
Robertson, AP
Leckie, JO
机构
[1] Department of Civil Engineering, Stanford University, Stanford
关键词
surface complexation model; triple layer model; diffuse layer model; sorption; oxide; goethite; rutile;
D O I
10.1006/jcis.1996.4752
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Surface complexation models (SCMs) are commonly used to replicate observed acid/base and ion binding behaviors of mineral surfaces. A variety of models have been employed; the constructs can differ in representation of both the surface and the interfacial region. Little effort has been made to assess how or why model response depends on the model employed or the surface complexes considered. We have examined three SCMs and determined how model-predicted cation partitioning and proton release depend on pH, ionic strength, cation loading, model, model fit, and proposed surface complex. Significant differences were observed, between models, for comparable complexes. On the other hand, triple-layer model responses for several different complexes were almost identical over certain ranges. Model properties that contribute to the observed behaviors were considered. (C) 1997 Academic Press.
引用
收藏
页码:444 / 472
页数:29
相关论文
共 50 条
  • [31] Phosphate adsorption onto hematite: An in situ ATR-FTIR investigation of the effects of pH and loading level on the mode of phosphate surface complexation
    Elzinga, Evert J.
    Sparks, Donald L.
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2007, 308 (01) : 53 - 70
  • [32] Self-consistent-field modeling of adsorbed β-casein: Effects of pH and ionic strength on surface coverage and density profile
    Leermakers, Frans A.M.
    Atkinson, Peter J.
    Dickinson, Eric
    Horne, David S.
    Journal of Colloid and Interface Science, 1996, 178 (02):
  • [33] Retention of alkali, alkaline earth and transition metals on an itaconic acid cation-exchange column - Eluent pH, ionic strength and temperature effects upon selectivity
    Bashir, W
    Tyrrell, E
    Feeney, O
    Paull, B
    JOURNAL OF CHROMATOGRAPHY A, 2002, 964 (1-2) : 113 - 122
  • [34] Microsolvation of the water cation in neon:: Infrared spectra and potential energy surface of the H2O+-Ne open-shell ionic complex
    Dopfer, O
    Roth, D
    Maier, JP
    JOURNAL OF CHEMICAL PHYSICS, 2001, 114 (16): : 7081 - 7093
  • [35] Identification of Bernalite Transformation and Tridentate Arsenate Complex at Nano-goethite under Effects of Drying, pH and Surface Loading
    Han, Junho
    Ro, Hee-Myong
    SCIENTIFIC REPORTS, 2018, 8
  • [36] Identification of Bernalite Transformation and Tridentate Arsenate Complex at Nano-goethite under Effects of Drying, pH and Surface Loading
    Junho Han
    Hee-Myong Ro
    Scientific Reports, 8
  • [37] Quantifying effects of pH and surface loading on arsenic adsorption on NanoActive alumina using a speciation-based model
    Guan, Xiao-Hong
    Su, Tingzhi
    Wang, Jianmin
    JOURNAL OF HAZARDOUS MATERIALS, 2009, 166 (01) : 39 - 45
  • [38] EFFECTS OF PH, IONIC-STRENGTH AND A FULVIC-ACID ON SIZE DISTRIBUTION AND SURFACE-CHARGE OF COLLOIDAL QUARTZ AND HEMATITE
    LEDIN, A
    KARLSSON, S
    ALLARD, B
    APPLIED GEOCHEMISTRY, 1993, 8 (04) : 409 - 414
  • [39] pH-Induced Biophysical Perspectives of Binding of Surface-Active Ionic Liquid [BMIM][OSU] with HSA and Dynamics of the Formed Complex
    Reddy, R. Ravikanth
    Saha, Debasish
    Pan, Animesh
    Aswal, Vinod Kumar
    Mati, Soumya Sundar
    Moulik, Satya Priya
    Kumar, Bandaru V. N. Phani
    LANGMUIR, 2023, 39 (10) : 3729 - 3741
  • [40] Dissolution and aggregation kinetics of zero valent copper nanoparticles in (simulated) natural surface waters: Simultaneous effects of pH, NOM and ionic strength
    Arenas-Lago, Daniel
    Monikh, Fazel Abdolahpur
    Vijver, Martina G.
    Peijnenburg, Willie J. G. M.
    CHEMOSPHERE, 2019, 226 : 841 - 850