A review of non-DLVO interactions in environmental colloidal systems

Springer Science and Business Media LLC - Tập 1 Số 1 - Trang 17-38 - 2002
Domenico Grasso1, Kavitha Subramaniam1, Michael Butkus2, Keith A. Strevett3, John Bergendahl4
1Picker Engineering Program, Smith College, Northampton
2Department of Geography and Environmental Engineering, The United States Military Academy, West Point,
3School of Civil Engineering and Environmental Science, University of Oklahoma, Norman,
4Department of Civil and Environmental Engineering, Worcester Polytechnic Institute, Worcester

Tóm tắt

Từ khóa


Tài liệu tham khảo

Adamson AW & Gast AP (1997) Physical Chemistry of Surfaces. Wiley, New York

Amirtharajah A & O'Melia CR (1990) Coagulation processes: destabilization, mixing and flocculation. In: Pontius FW (Ed.) Water Quality and Treatment. AWWA (pp 269), McGraw-Hill, Inc., USA

Baygents JC & Saville DA (1991) Electrophoresis of drops and bubbles. J. Chem. Soc. Faraday Trans. 87: 1883-1897

Belaya ML, Feigel'man MV & Levadny VG (1987) Structural forces as a result of non-local water polarizability. Langmuir 3: 648-654

Bhattacharjee S, Ko CH & Elimelech M. (1998) DLVO interactions between rough surfaces. Langmuir 14: 3365-3375

Biggs S (1995) Steric and bridging Forces between surfaces bearing adsorbed polymer: An atomic force microscope study. Langmuir 11: 156-162

Biggs S & Healy TW (1994) Electrosteric stabilization of colloidal zirconia with low-molecular weight polyacrylic acid. J. Chem. Faraday Trans. 90: 3415-3421

Boisvert JP, To TC, Berrak A & Jolicoeur C (1997) Phosphate adsorption in flocculation processes of aluminum sulfate and poly-aluminum-silicate-sulfate. Wat. Res. 31: 1939-1946

Bowen WR & Jenner F (1995) The calculation of dispersion forces for engineering applications. Adv. Colloid and Interface Sci. 56: 201-243

Bowen WR & Williams PM (1996) The osmotic pressure of electrostatically stabilized colloidal dispersions. J. Colloid Interface Sci. 184: 241-250

Braithwaite CJC, Howe A & Luckham PF (1996) Interactions between poly(ethylene oxide) layers adsorbed to glass surfaces probed by using a modified atomic force microscope. Langmuir 12: 4224-4237

Breeuwsma A & Lyklema J (1973) Physical and chemical adsorption of ions in the electrical double layer on hematite (α-Fe2O3). J. Colloid and Interface Sci. 43: 437-448

Bunkin NF, Kiseleva OA, Lobeyev AV, Movchan TG, Ninham BW & Vinogradova OI (1997) Effect of salts and dissolved gas on optical cavitation near hydrophobic and hydrophilic surfaces. Langmuir 13: 3024-3028

Butkus MA & Grasso D (1998) Impact of aqueous electrolytes on interfacial energy. J. Colloid Interface Sci. 200: 172-181

Butkus MA & Grasso D (1999) Impact of phosphate sorption on water-treatment residual surface characteristics: Prelude to reuse. Env. Eng. Sci. 16: 117-129

Butkus MA & Grasso D (2001) The nature of surface complexation: A continuum approach. Env. Geol. 40: 446-453

Butt H (1991) Measuring electrostatic, van der Waals, and hydration forces in electrolyte solutions with an atomic force microscope. Biophys. J. 60: 1438-1444

Cevc G (1991) Hydration force and the interfacial structure of the polar surface. J. Chem. Soc. Faraday Trans. 87: 2733-2738

Chaudhury MK & Good RJ (1987) A quantitative theory of negative adsorption of nonelectrolytes caused by repulsive van der Waals forces. Langmuir 1: 673-678

Chaudhury MK (1984) Short-Range and Long-Range Forces in Colloidal and Macroscopic Systems. Ph.D. Dissertation (pp 250), State University New York, Buffalo, DA84260027

Chheda P & Grasso D (1994) Surface thermodynamics of ozone-induced particle destabilization. Langmuir 10: 1044-1053

Chou T (2001) Geometry dependent electrostatics near contact lines. Physical Review Letters, 8710(10): 6101

Churaev NV & Derjaguin BVJ (1985) Inclusion of structural forces in the theory of stability of colloids and film. Colloid Interface Sci. 103: 542-553

Colic M, Franks GV, Fisher ML & Lange FF (1997) Effect of counterion size on short range repulsive forces at high ionic strengths. Langmuir 13: 3129-3135

Craig VSJ, Ninham BW & Pashley RM (1993) The effect of electrolytes on bubble coalescence in water. J. Phys. Chem. 97: 10192-10197

Craig VSJ, Ninham BW & Pashley RM (1998) Study of the long-range hydrophobic attraction in concentrated salt solutions and its implications for electrostatic models. Langmuir 14: 3326-3332

Davies B & Ninham BW (1972) van der Waals forces in electrolytes. J. Chem Phys. 56: 5797-5801

Davis JA & Kent DB (1990) Surface complexation modeling in aqueous geochemistry. In: Hochella MF & White AF (Eds) Reviews in Mineralogy, vol. 23 (pp 177-248). Mineralogical Society of America, Washington, DC

De Gennes P (1982) Polymers at an interface. 2. Interaction between two plates carrying adsorbed polymer layers. Macromolecules 15: 492-500

De Gennes P (1987) Polymers at an interface: A simplified view. Adv. Colloid Interface Sci. 27: 189-209

Derjaguin BV & Churaev NV (1987) Structure of water in thin layers. Langmuir 3: 607-612

Derjaguin BV & Landau LD (1941) Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes. Acta Physicochim. U.S.S.R. 14: 633

Drost-Hansen W (1965) Aqueous methods of study and structural properties. Ind. Eng. Chem. 57: 18-37

Du Q, Freysz E & Shen YR (1994) Surface vibrational spectroscopic studies of hydrogen bonding and hydrophobicity. Science 264: 826-828

Dzombak DA & Morel FMM (1990) Surface Complexation Modeling: Hydrous Ferric Oxide. John Wiley & Sons, New York

Elimelech M & O'Melia CR (1990a) Effect of electrolyte type on the electrophoretic mobility of polystyrene latex colloids. Colloids Surf. A. 44: 165-178

Elimelech M & O'Melia CR (1990b) Effect of particle size on collision efficiency in the deposition of Brownian particles with electrostatic energy barriers. Langmuir 6: 1153-1163

Elimelech M, Gregory J, Jia X & Williams RA (1995) Particle Deposition and Aggregation: Measurement, Modeling and Simulation. Butterworth-Heinemann, Woburn, MA

Everett DH (1986) How much do we really know about water. In: Neilson GW & Enderby JE (Eds) Water and Aqueous Solutions. Adam Hilger, Bristol

Fleer GJ, Cohen Stuart MA, Scheutjens JMHM, Cosgrove T & Vincent B (1993) Polymers at Interfaces. Chapman & Hall, London.

Flory PJ & Krigbaum WR (1950) Statistical mechanics of dilute polymer solutions: II. J. Chem. Phys. 18: 1086

Forslind E & Jacobsson A (1975) Clay-water systems. In: Franks F (Ed) Water, A Comprehensive Treatise, Vol 5, Water in Disperse Systems. Plenum Press, New York

Forsman J, Eoodward CE & Jonsson B (1997) The origins of hydration forces: Monte Carlo simulation and density functional theory. Langmuir 13: 5459-5464

Fowkes F (1964) Attractive forces at interfaces. Ind. Eng. Chem. 56: 40-52

Franks GV, Johnson SB, Scales PJ, Boger DV & Healy TW (1999) Ion-specific strength of attractive particle networks. Langmuir 15: 4411-4420

Freitas AM & Sharma MM (2001) Detachment of particles from surfaces: An AFM study. J. Colloid Interface Sci. 233: 73-82

Giasson S, Kuhl TL & Israelachvili JN (1998) Adsorption and interaction forces of micellar and microemulsion solutions in ultrathin films. Langmuir 14: 891-898

Grasso D, Carrington JC, Chheda P & Kim B (1995) Nitrocellulose particle stability: Coagulation thermodynamics. Wat. Res. 29: 49-59

Gregory J (1975) Interaction of unequal double layers at constant charge. J. Colloid Interface Sci. 51: 44-51

Gruen DWR & Marcelja S (1983) Spatially varying polarization in water. J. Chem. Soc. Faraday Trans 2. 79: 225-242

Gutowski W (1991) Thermodynamics of Adhesion. In: Lieng-Huang Lee (Ed) Fundamentals of Adhesion. Plenum Press, New York

Hamaker HC (1937) London-van der Waals attraction between spherical particles. Physica 4: 1058-1072

Hård S & Johansson K (1977) The surface tension of concentrated aqueous solutions of 1:1-electrolytes measured by means of Wilhelmy and laser light scattering methods. J. Colloid Interface Sci. 60: 467-472

Harrison JB & Berkheiser VE (1982) Anion interactions with freshly prepared hydrous iron oxides. Clays Clay Min. 30: 97-101

Heller W & Pugh TL (1954) Steric protection of hydrophobic colloidal particles by adsorption of flexible macromolecules. J. Chem. Phys. 22: 1778

Hesselink FTh (1971) On the theory of the stabilization of dispersions by adsorbed macromolecules. I. Statistics of the change of some configurational properties of adsorbed macromolecules on the approach of an impenetrable surface. J. Phys. Chem. 75: 65-71

Hesselink FTh, Vrij A & Overbeek JThG (1971) On the theory of the stabilization of dispersions by adsorbed macromolecules. II. Interaction between two flat particles. J. Phys. Chem. 75: 2094-2103

Heydweiller A (1910) Interdependence of the physical properties of solutions. II. Surface tension and electrical conductivity of aqueous salt-solutions. Ann. d. Physik 4(33): 145-185

Hiemenz PC & Rajagopalan R (1997) Principles of Colloid and Surface Chemistry. 3rd edn. Marcel Dekker, New York

Holmes-Farley SR, Reamey RH, McCarthy TJ, Deutch J & Whitesides GM (1985) Acid-base behavior of carboxylic acid groups covalently attached at the surface of polyethylene: The usefulness of contact angle in following the ionization of surface functionality. Langmuir 1: 725-740

Horn RA (1972) Effect of structure and physical characteristics of water on water chemistry. In: Ciaccio LL (Ed) Water and Water Pollution Handbook (pp 915-947). Marcel Dekker, New York

Horvath AL (1985) Handbook of Aqueous Electrolyte Solutions; Physical Properties, Estimation and Correlation Methods. Wiley, New York

Hough DB & White LR (1980) The calculation of Hamaker constants from Lifshitz theory with applications to wetting phenomena. Adv. Colloid Interface Sci. 14: 3-41

Hull M & Kitchnener JA (1969) Interaction of spherical colloidal particles with planar surfaces. Trans Faraday Soc. 65: 3093-3104

Hunter RJ (1986) Foundations of Colloid Science, Volume I. Oxford University Press, Oxford

Israelachvili JN & Wennerström H (1996) Role of hydration and water structure in biological and colloidal interactions. Nature 379: 219-224

Israelachvili JN (1992) Intermolecular and Surface Forces. Academic Press, New York

Israelachvili JN & Adams GE (1978) Measurement of forces between two mica surfaces in aqueous electrolyte solutions in the range 0-100 nm. J. Chem. Soc. Faraday Trans. 1 74: 975-1001

Israelachvili JN & Pashley RM (1984) DLVO and hydration forces between mica surfaces inMg+2, Ca+2, Sr+2, and Ba+2 chloride solutions. J. Colloid Interface Sci. 97: 446-455

Israelachvili JN & McGuiggan PM (1988) Forces between surfaces in liquids. Science. 241: 795-800

Jeffrey GA (1997) An Introduction to Hydrogen Bonding. Oxford University Press, New York

Jeffrey GA & Saenger W (1991) Hydrogen Bonding in Biological Structures. Springer-Verlag, Berlin

Johnston CT, Sposito G & Earl WL (1993) In: Buffle J and van Leeuwen (Eds) Environmental Particles (pp 1-36). Lewis Publishers, Boca Raton

Jucker BA, Zehnder AJB & Harms H (1998) Quantification of polymer interactions in bacterial adhesion. Environ. Sci. Technol. 32: 2909-2915

Kitano H, Ichikawa K, Ide M, Fukuda M & Mizuno W (2001) Fourier transform infrared study on the state of water sorbed to poly(ethylene glycol) films. Langmuir 17: 1889-1895

Klein J (1980) Forces between mica surfaces bearing layers of adsorbed polystyrene in cyclohexane. Nature 288: 248-250

Klein J (1983) Forces between mica surfaces bearing adsorbed macromolecules in liquid media. J. Chem. Soc. Faraday Trans. 79: 99-118

Klein J & Luckham PF (1982) Forces between two adsorbed polyethylene oxide layers immersed in a good aqueous solvent. Nature 300: 429-431

Klein J & Luckham PF (1984) Forces between two adsorbed poly(ethylene oxide) layers in a good aqueous solvent in the range of 0-150 nm. Macromolecules 17: 1041-1054

Lasaga AC (1990) Atomic treatment of mineral-water surface reactions. In: Hochella MF & White AF (Eds) Mineral-Water Interface Geochemistry, Reviews in Mineralogy, vol. 23. Mineralogical Society of America, Washington, DC

Le Neveu DM, Rand RP & Parsegian VA (1976) Measurement of forces between lecithin bilayers. Nature 259: 601-603

Leberman R & Soper AK (1995) Effect of high salt concentrations on water structure. Nature 378: 364-366

Liang L & Morgan JJ (1990) Chemical aspects of iron oxide coagulation in water: Laboratory studies and implications for natural systems. Aquatic Sci. 52: 32

Lyklema J (1978) Surface chemistry of colloids in connection with stability. In: Ives KJ (Ed) The Scientific Basis of Flocculation. Sijhoff and Noordhoff, The Netherlands

Mackor EL (1951) A theoretical approach of the colloid-chemical stability of dispersion in hydrocarbon. J. Colloid Interface Sci. 6: 492

Mackor EL & van der Waals JH (1952) A statistics of the adsorption of rod-shaped molecules in connection with the stability of certain colloidal dispersions. J. Colloid Interface Sci. 7: 535

Mahanty J & Ninham BW (1976) Dispersion Forces. Academic Press, New York

Marcelja S & Radic N (1976) Repulsion of interfaces due to boundary water. Chem. Phys. Lett. 42: 129-130

Marra J (1985) Direct measurements of attractive van der Waals and adhesion forces between uncharged lipid bilayers in aqueous solutions. J. Colloid Interface Sci. 109: 11-20

Marrink S, Berkowitz M & Berendsen JC (1993) Molecular dynamics simulation of a membrane/water interface: The ordering of water and its relation to the hydration force. Langmuir 9: 3122-3131

Maurice P (1996) Application of atomic-force microscopy in environmental colloid and surface chemistry Colloids Surf. A: Physicochem. Eng. Aspects. 107: 57-75

Mishchuk NA, Sjoblom J & Dukhin SS (1995) Influence of retardation and screening of van der Waals attractive forces on reverse coagulation of emulsions in the secondary minimum. Colloid J. 57: 785-792

Molia-Bolivar JA & Ortega-Vinuesa JL (1999) How proteins stabilize colloidal particles by means of hydration forces. Langmuir 15: 2644-2653

Narten AH & Levy HA (1972) Liquid water: Scattering of X-rays. In: Franks F. (Ed) Water, A Comprehensive Treatise, Vol 1, The Physics and Physical Chemistry of Water. Plenum Press, New York

Ninham BW (1999) On progress in forces since the DLVO theory. Adv. Colloid Interface Sci. 83: 1-17

Ninham BW, Kurihara K & Vinogradova OI (1997) Hydrophobicity, specific ion adsorption and reactivity Colloids Surf. A: Physicochem. Eng. Aspects. 123-124: 7-12

Ninham BW & Yaminsky V (1997) Ion binding and ion specificity: The Hofmeister effect and Onsanger and Lifshitz theories. Langmuir 13: 2097-2108

Odiachi PC & Prieve DC (1999) Effect of added salt on the depletion attraction caused by non-adsorbing clay particles. Colloids Surf. A: Physicochem. Eng. Aspects. 146: 315-328

Onsager L & Samaras NNT (1934) The surface tension of Debye-Hückle electrolytes. J. Chem. Phys. 2: 528-536

Ohtaki H & Radnai T (1993) Structure and dynamics of hydrated ions. Chem. Rev. 3: 1157-1204

Parks GA (1977) The isoelectric points of solid oxides, solid hydroxides and aqueous hydroxo complex systems. Chem. Rev. 65: 177-198

Parks GA (1984) Surface and interfacial free energies of quartz. J. Geophys. Res. 89: 3997-4008

Parks GA (1990) Surface energy and adsorption at mineral-water interfaces: An introduction. In: Hochella MF & White AF (Eds) Mineral-Water Interface Geochemistry, Reviews in Mineralogy, vol. 23. Mineralogical Scociety of America, Washington, DC

Pashley RM (1981a) Hydration forces between mica surfaces in aqueous electrolyte solutions. J. Colloid Interface Sci. 80: 153-162

Pashley RM (1981b) DLVO and hydration forces between mica surfaces in Li+, Na+, K+, and Cs+ electrolyte solutions: A correlation of double-layer and hydration forces with surface cation exchange properties. J. Colloid Interface Sci. 83: 531-546

Pashley RM & Quirk JP (1984) The effect of cation valency on DLVO and hydration forces between macroscopic sheets of muscovite mica in relation to clay swelling. Colloids Surf. A 9: 1-17

Pauling L (1960) The Nature of the Chemical Bond, 3rd edn. Cornell University Press, Ithaca, NY

Pedersen HG & Bergstrom L (1999) Forces measured between Zirconia surfaces in poly(acrylic acid) solutions. J. Amer. Chem. Soc. 82: 1137-1145

Rijnaarts HHM, Norde W, Lyklema J & Zehnder AJB (1999) DLVO and steric contributions to bacterial deposition in media of different ionic strengths. Colloids and Surfaces B: Biointerfaces 14: 179-195

Sato T & Ruch R (1980) Stabilization of Colloidal Dispersions by Polymer Adsorption. Marcel Dekker, New York

Schindler PW (1990) Co-Adsorption of metal ions and organic ligands: Formation of ternary surface complexes. In: Hochella MF & White AF (Eds) Mineral-Water Interface Geochemistry, Reviews in Mineralogy, vol. 23. Mineralogical Society of America, Washington, DC

Schwarzenbach RP, Gschwend PM & Imboden DM (1993), Environmental Organic Chemistry. John Wiley & Sons, New York

Song L & Elimelech M (1994) Transient deposition of colloidal particles in heterogeneous porous media. J. Colloid and Interface Sci. 167: 301-303

Sposito G (1984) The Surface Chemistry of Soils. Oxford University Press, New York

Sposito G (1990) Molecular models of ion adsorption on mineral surfaces. In: Hochella MF & White AF (Eds) Reviews in Mineralogy, vol. 23 (pp 261-279). Mineralogical Society of America, Washington DC

Sposito G & Prost R (1982) Structure of water adsorbed on smectites. Chem. Rev. 82: 553-573

Sposito G & Grasso D (1998) Electrical double layer structure, forces, and fields at the clay-water interface. In: Hsu JP (Ed) Interfacial Forces and Fields (pp 207-249). Marcel Dekker, New York

Stairs RA (1995) Calculation of surface tension of salt solutions: Effective polarizability of solvated ions. Can. J. Chem. 73: 781-787

Stenkamp VS, McGuiggan P & Berg JC (2001) Restabilization of electrosterically stabilized colloids in high salt media. Langmuir 17: 637-651

Stumm W & Morgan JJ (1996) Aquatic Chemistry. Wiley, New York

Subramaniam K, Yiacoumi S & Tsouris C (2001) Copper uptake by inorganic particles-Equilibrium, kinetics, and particle interactions: Experimental. Colloids Surf. A 177: 133-146

van Oss CJ (1994) Interfacial Forces in Aqueous Media. Marcel Dekker, New York

van Oss CJ (1991) Interaction forces between biological and other polar entities in water: How many different primary forces are there? Journal of Dispersion Science and Technology 12: 201-219

van Oss CJ, Giese RF, Li Z, Murphy K, Norris J, Chaudhury MK & Good R (1992) Determination of contact angles and pore sizes of porous media by column and thin layer wicking. J. Adhesion Sci. Tech. 6: 413

van Oss CJ, Gillman CF & Neumann A (1975) Phagocytosis as a Surface Phenomenon. Marcel Dekker, New York

van Oss CJ, Chaudhury MK & Good RJ (1988) Interfacial Lifshitzvan der Waals and polar interactions in macroscopic systems. Chem. Rev. 88: 927-941

van Oss CJ, Giese RF & Costanzo PM (1990) DLVO and non-DLVO interactions in hectorite. Clays Clay Miner. 38(2): 151-159

van Oss CJ & Giese RF (1995) The hydrophilicity and hydrophobicity of clay minerals. Clays Clay Miner. 43: 474-477

Veeramasuneni S, Hu Y, Yalamanchili MR & Miller JD (1997) Interaction forces at high ionic strengths: The role of polar interfacial interactions. J. Colloid Interface Sci. 188: 473-480

Verwey EJW & Overbeek JThG (1948) Theory of the Stability of Lyophobic Colloids. Elsevier, Amsterdam

Walker HW & Grant SB (1996) Role of polymer flexibility in the stabilization of colloidal particles by model anionic polyelectrolytes. J. Colloid Interface Sci. 179: 552-560

Walz JY (1998) The effect of surface heterogeneities on colloidal forces. Adv. Colloid Interface Sci. 74: 119-168

Weissenborn PK & Pugh RJ (1996) Surface Tension of Aqueous Solutions of Electrolytes: Relationship with Ion Hydration, Oxygen Solubility, and Bubble Coalescence. J. Colloid Interface Sci. 184: 550-563

Wu W, Giese P & van Oss C (1995) Evaluation of the Lifshitzvan der Waals/Acid-Base approach to determine surface tension components. Langmuir 11: 379-382

Wu W, Giese RF & van Oss CJ (1994) Linkage between zeta potential and electron donicity of charge polar surfaces: 1. Implications for the mechanism of flocculation of particle suspensions with plurivalent counterions. Colloids Surf. A 89: 241-252

Yaminsky VV, Ninham BW, Christenson HK & Pashley RM (1996) Adsorption forces between hydrophobic monolayers. Langmuir 12: 1936-1943

Yotsumoto H & Yoon RH (1993) Application of extended DLVO theory I. Stability of rutile suspensions. J. Colloid Interface Sci. 157: 426-433

Zettlemoyer AC, Micale FJ & Klier K (1975) Adsorption of water on well-characterized solid surfaces. In: Franks F (Ed) Water, A Comprehensive Treatise, Vol 5, Water in Disperse Systems. Plenum Press, New York