Assessing short-range membrane–colloid interactions using surface energetics
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[1] Ashish Kulkarni,et al. Chemical treatment for improved performance of reverse osmosis membranes , 1996 .
[2] R. Good. Contact Angles and the Surface Free Energy of Solids , 1979 .
[3] M. Chaudhury,et al. Solubility of proteins , 1986 .
[4] Menachem Elimelech,et al. Particle Deposition and Aggregation: Measurement, Modelling and Simulation , 1995 .
[5] Menachem Elimelech,et al. Effect of Electrolyte Type on the Electrophoretic Mobility of Polystyrene Latex Colloids , 1990 .
[6] François,et al. Adsorption of Telechelic Poly(ethylene oxide) on Colloids: Influence on Colloid Stability. , 1999, Journal of colloid and interface science.
[7] Tröger,et al. Determination of the Surface Tension of Microporous Membranes Using Contact Angle Measurements , 1997, Journal of colloid and interface science.
[8] I. Nezbeda. On the role of short- and long-range forces in aqueous systems , 2000 .
[9] Lianfa Song,et al. Mechanisms and Parameters Affecting Flux Decline in Cross-Flow Microfiltration and Ultrafiltration of Colloids , 2000 .
[10] F. Digiano,et al. Surface energy of experimental and commercial nanofiltration membranes: effects of wetting and natural organic matter fouling , 2000 .
[11] Amy E. Childress,et al. Role of membrane surface morphology in colloidal fouling of cellulose acetate and composite aromatic polyamide reverse osmosis membranes , 1997 .
[12] A. Jönsson,et al. Adsorptive fouling of modified and unmodified commercial polymeric ultrafiltration membranes , 1999 .
[13] Menachem Elimelech,et al. Fouling of Reverse Osmosis Membranes by Aluminum Oxide Colloids , 1995 .
[14] Menachem Elimelech,et al. Measuring the zeta (electrokinetic) potential of reverse osmosis membranes by a streaming potential analyzer , 1994 .
[15] E. Molis,et al. The effect of CA membrane properties on adsorptive fouling by humic acid , 1999 .
[16] Henk J. Busscher,et al. The effect of surface roughening of polymers on measured contact angles of liquids , 1984 .
[17] Ashutosh Sharma,et al. Surface interactions in osmotic pressure controlled flux decline during ultrafiltration , 1994 .
[18] Kenneth M. Persson,et al. Contact angles of ultrafiltration membranes and their possible correlation to membrane performance , 1992 .
[19] D. Kwok,et al. Low-rate dynamic and static contact angles and the determination of solid surface tensions , 1996 .
[20] A. Fane,et al. Ultrafiltration of Colloidal Silver Particles: Flux, Rejection, and Fouling , 1993 .
[21] H. Krupp,et al. Theory of Adhesion of Small Particles , 1966 .
[22] M. Elimelech,et al. Kinetics of Permeate Flux Decline in Crossflow Membrane Filtration of Colloidal Suspensions. , 1997, Journal of colloid and interface science.
[23] Friction and adhesion , 1968 .
[24] C. V. Oss,et al. Interfacial Forces in Aqueous Media , 1994 .
[25] Gupta,et al. Analysis of Contact Interactions between a Rough Deformable Colloid and a Smooth Substrate. , 2000, Journal of colloid and interface science.
[26] S. Bhattacharjee,et al. Estimation and Influence of Long Range Solute. Membrane Interactions in Ultrafiltration , 1996 .
[27] C. V. Oss,et al. Influence of macroscopic and microscopic interactions on kinetic rate constants , 1999 .
[28] Menachem Elimelech,et al. Influence of membrane surface properties on initial rate of colloidal fouling of reverse osmosis and nanofiltration membranes , 2001 .
[29] M. Kabsch-Korbutowicz,et al. Salt effect on the dye separation by hydrophilic membranes , 1997 .
[30] S. Bhattacharjee,et al. DLVO interaction between rough surfaces , 1998 .
[31] J. A. V. BUTLER,et al. Theory of the Stability of Lyophobic Colloids , 1948, Nature.
[32] V. Gekas,et al. Protein fouling behaviour of ultrafiltration membranes prepared with varying degress of hydrophilicity , 1990 .
[33] Zbigniew Adamczyk,et al. Application of the DLVO theory for particle deposition problems , 1999 .
[34] Menachem Elimelech,et al. Relating Nanofiltration Membrane Performance to Membrane Charge (Electrokinetic) Characteristics , 2000 .
[35] J. Walz. The effect of surface heterogeneities on colloidal forces , 1998 .
[36] Ponisseril Somasundaran,et al. Particle deposition and aggregation, measurement, modeling and simulation , 1997 .
[37] Douglas W. Fuerstenau,et al. Mutual coagulation of colloidal dispersions , 1966 .
[38] Daniel Y. Kwok,et al. Contact angle measurement and contact angle interpretation , 1999 .
[39] F. Digiano,et al. Influence of NOM composition on nanofiltration , 1996 .
[40] C. Klauber,et al. The influence of surface forces on the fouling of polypropylene microfiltration membranes , 1996 .
[41] Mark M. Clark,et al. EFFECTS OF ULTRAFILTRATION MEMBRANE COMPOSITION , 1989 .
[42] M. Elimelech,et al. Effect of Interparticle Electrostatic Double Layer Interactions on Permeate Flux Decline in Crossflow Membrane Filtration of Colloidal Suspensions: An Experimental Investigation. , 1998, Journal of colloid and interface science.
[43] M. Nyström,et al. Streaming potential as a tool in the characterization of ultrafiltration membranes , 1989 .
[44] Resistance to fouling accomplished by modification of ultrafiltration membranes , 1990 .
[45] Menachem Elimelech,et al. Chemical and physical aspects of natural organic matter (NOM) fouling of nanofiltration membranes , 1997 .
[46] Ashish Kulkarni,et al. Flux enhancement by hydrophilization of thin film composite reverse osmosis membranes , 1996 .
[47] R. Yoon,et al. Application of Extended DLVO Theory: III. Effect of Octanol on the Long-Range Hydrophobic Forces between Dodecylamine-Coated Mica Surfaces , 1994 .
[48] P. Prádanos,et al. Contact angles and external protein adsorption onto UF membranes , 1999 .
[49] C. J. van Oss,et al. Stability versus flocculation of particle suspensions in water—correlation with the extended DLVO approach for aqueous systems, compared with classical DLVO theory , 1999 .
[50] C. J. Oss,et al. Orientation of the water molecules of hydration of human serum albumin , 1988, Journal of protein chemistry.
[51] H. Ohshima,et al. Interaction and aggregation of lipid vesicles (DLVO theory versus modified DLVO theory) , 1999 .
[52] R. J. Hunter. Foundations of Colloid Science , 1987 .
[53] C. J. van Oss,et al. Acid—base interfacial interactions in aqueous media , 1993 .
[54] H. Busscher,et al. Deposition efficiency and reversibility of bacterial adhesion under flow , 1995 .
[55] H. Busscher,et al. Role of acid-base interactions on the adhesion of oral streptococci and actinomyces to hexadecane and chloroform - influence of divalent cations and comparison between free energies of partitioning and free energies obtained by extended DLVO analysis , 1999 .
[56] A. Hoffman,et al. Characterization of hydrophilic—hydrophobic polymeric surfaces by contact angle measurements , 1981 .
[57] J. Molina-Bolívar,et al. The role played by hydration forces in the stability of protein-coated particles: non-classical DLVO behaviour , 1999 .
[58] A. Karabelas,et al. The effect of colloid stability on membrane fouling , 1998 .
[59] W. Zhang,et al. Membrane characterization using the contact angle technique I. methodology of the captive bubble technique , 1990 .
[60] Sharma,et al. Apolar, Polar, and Electrostatic Interactions of Spherical Particles in Cylindrical Pores , 1997, Journal of colloid and interface science.
[61] M. D. Pinho,et al. Membrane surface characterisation by contact angle measurements using the immersed method , 1997 .
[62] M. Britten,et al. Characterization of adsorptive fouling on ultrafiltration membranes by peptides mixtures using contact angle measurements , 1994 .
[63] P. Aimar,et al. Influence of surface interaction on transfer during colloid ultrafiltration , 1996 .
[64] B. Derjaguin,et al. Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes , 1993 .
[65] Eberhard Staude,et al. Surface modification of polysulfone ultrafiltration membranes and fouling by BSA solutions , 1997 .
[66] Menachem Elimelech,et al. Effect of solution chemistry on the surface charge of polymeric reverse osmosis and nanofiltration membranes , 1996 .
[67] Jaeweon Cho,et al. MEMBRANE FILTRATION OF NATURAL ORGANIC MATTER: INITIAL COMPARISON OF REJECTION AND FLUX DECLINE CHARACTERISTICS WITH ULTRAFILTRATION AND NANOFILTRATION MEMBRANES , 1999 .
[68] A. Pihlajamäki. Electrochemical Characterisation of Filter Media Properties and Their Exploitation in Enhanced Filtration , 1998 .
[69] R. Horn,et al. Double-Layer and Hydration Forces Measured between Silica Sheets Subjected to Various Surface Treatments , 1993 .
[70] Tomasz Winnicki,et al. Analysis of membrane fouling in the treatment of water solutions containing humic acids and mineral salts , 1999 .
[71] Gershon Wolansky† and,et al. The actual contact angle on a heterogeneous rough surface in three dimensions , 1998 .
[72] Andrea I. Schäfer,et al. Microfiltration of colloids and natural organic matter , 2000 .
[73] B. Jönsson,et al. Ultrafiltration of colloidal dispersions - A theoretical model of the concentration polarization phenomena , 1996 .
[74] Greiveldinger,et al. A Critique of the Mathematical Coherence of Acid/Base Interfacial Free Energy Theory. , 1999, Journal of colloid and interface science.
[75] M. Borkovec,et al. Influence of the Secondary Interaction Energy Minimum on the Early Stages of Colloidal Aggregation. , 2000, Journal of colloid and interface science.
[76] O. Kedem,et al. Surface modification of commercial composite polyamide reverse osmosis membranes , 1998 .
[77] P. C. Hiemenz,et al. Principles of colloid and surface chemistry , 1977 .
[78] C. Bouchard,et al. Study of humic acid adsorption on nanofiltration membranes by contact angle measurements , 1997 .