Factors affecting the rejection of organic solutes during NF/RO treatment--a literature review.
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Christopher Bellona | Pei Xu | Jörg E Drewes | Gary Amy | G. Amy | J. Drewes | C. Bellona | P. Xu
[1] K. Kimura,et al. REJECTION OF ORGANIC MICROPOLLUTANTS (DISINFECTION BY-PRODUCTS, ENDOCRINE DISRUPTING COMPOUNDS, AND PHARMACEUTICALLY ACTIVE COMPOUNDS) BY NF/RO MEMBRANES , 2003 .
[2] T. Melin,et al. Nanofiltration of endocrine disrupting compounds , 2003 .
[3] T. Urase,et al. Rejection mechanisms of plastic additives and natural hormones in drinking water treated by nanofiltration , 2003 .
[4] T. Urase,et al. Retention of a wide variety of organic pollutants by different nanofiltration/reverse osmosis membranes: controlling parameters of process , 2003 .
[5] W. Ng,et al. Treatability of organic fractions derived from secondary effluent by reverse osmosis membrane. , 2003, Water research.
[6] Menachem Elimelech,et al. Removal of natural hormones by nanofiltration membranes: measurement, modeling, and mechanisms. , 2003, Environmental science & technology.
[7] Peter Fox,et al. Comparing microfiltration-reverse osmosis and soil-aquifer treatment for indirect potable reuse of water. , 2003, Water research.
[8] K. Kimura,et al. Adsorption of hydrophobic compounds onto NF/RO membranes: an artifact leading to overestimation of rejection , 2003 .
[9] C. F. Schutte,et al. The rejection of specific organic compounds by reverse osmosis membranes , 2003 .
[10] T. Melin,et al. Occurrence and removal of endocrine disrupters in landfill leachate treatment plants. , 2003, Water science and technology : a journal of the International Association on Water Pollution Research.
[11] I. Miettinen,et al. Selection of NF membrane to improve quality of chemically treated surface water. , 2003, Water research.
[12] A. Schäfer,et al. Adsorption and Transport of Trace Contaminant Estrone in NF/RO Membranes , 2002 .
[13] A. Mayes,et al. Noncircular pores on the surface of asymmetric polymer membranes: evidence of pore formation via spinodal demixing , 2002 .
[14] W. Bowen,et al. Predictive modelling of nanofiltration: membrane specification and process optimisation☆ , 2002 .
[15] G. Wozny,et al. Nanofiltration of solutions containing surfactants—prediction of flux decline and modelling of mass transfer , 2002 .
[16] J. Benavente,et al. Effect of pH on electrokinetic and electrochemical parameters of both sub-layers of composite polyamide/polysulfone membranes☆ , 2002 .
[17] Hiroaki Ozaki,et al. Performance of an ultra-low-pressure reverse osmosis membrane (ULPROM) for separating heavy metal: effects of interference parameters , 2002 .
[18] Tomasz Winnicki,et al. The influence of organic carbon concentration on atrazine removal by UF membranes , 2002 .
[19] Wei-Ning Wang,et al. Experimental investigation on separation performance of nanofiltration membranes for inorganic electrolyte solutions , 2002 .
[20] C. Vandecasteele,et al. Evaluation of parameters describing flux decline in nanofiltration of aqueous solutions containing organic compounds , 2002 .
[21] A. Mohammad,et al. Understanding the steric and charge contributions in NF membranes using increasing MWCO polyamide membranes , 2002 .
[22] M. Nyström,et al. Separation of ions in acidic conditions using NF , 2002 .
[23] A. Fane,et al. Adsorption of trace steroid estrogens to hydrophobic hollow fibre membranes , 2002 .
[24] A. Schäfer,et al. Adsorptive interactions between membranes and trace contaminants , 2002 .
[25] Andrea I. Schäfer,et al. Particle interactions and removal of trace contaminants from water and wastewaters , 2002 .
[26] Jaeweon Cho,et al. Transport of perchlorate (ClO4−) through NF and UF membranes , 2002 .
[27] S. Bandini,et al. Donnan equilibrium and dielectric exclusion for characterization of nanofiltration membranes , 2002 .
[28] A. Montiel,et al. Effects of organic and inorganic matter on pesticide rejection by nanofiltration , 2002 .
[29] A. Schäfer,et al. Adsorption of estrone on nanofiltration and reverse osmosis membranes in water and wastewater treatment , 2002 .
[30] Jaeweon Cho,et al. Effects of natural organic matter and ionic species on membrane surface charge. , 2002, Environmental science & technology.
[31] H. Wio,et al. Separation factor of membranes used for isotopic separation by gaseous diffusion: pore morphology influence and effect of cracks , 2002 .
[32] Jaeweon Cho,et al. Determination of membrane pore size distribution using the fractional rejection of nonionic and charged macromolecules , 2002 .
[33] A. Fane,et al. Charge effects in the fractionation of natural organics using ultrafiltration. , 2002, Environmental science & technology.
[34] A. Zander,et al. Standardized Membrane Pore Size Characterization by Polyethylene Glycol Rejection , 2002 .
[35] J. Wesselingh,et al. Can nanofiltration be fully predicted by a model , 2002 .
[36] W. Richard Bowen,et al. Linearized transport model for nanofiltration: Development and assessment , 2002 .
[37] C Vandecasteele,et al. Modelling of the retention of uncharged molecules with nanofiltration. , 2002, Water research.
[38] Tai‐Shung Chung,et al. Visualization of the effect of die shear rate on the outer surface morphology of ultrafiltration membranes by AFM , 2002 .
[39] K. Košutić,et al. Removal of organics from aqueous solutions by commercial RO and NF membranes of characterized porosities , 2002 .
[40] B. Van der Bruggen,et al. Application of nanofiltration for removal of pesticides, nitrate and hardness from ground water: rejection properties and economic evaluation , 2001 .
[41] Amy E. Childress,et al. Zeta potential of commercial RO membranes: influence of source water type and chemistry , 2001 .
[42] Y. Kiso. Effects of hydrophobicity and molecular size on rejection of aromatic pesticides with nanofiltration membranes , 2001 .
[43] A. Kargol. A mechanistic model of transport processes in porous membranes generated by osmotic and hydrostatic pressure , 2001 .
[44] C Vandecasteele,et al. Flux decline during nanofiltration of organic components in aqueous solution. , 2001, Environmental science & technology.
[45] S. Chellam,et al. Simplified analysis of contaminant rejection during ground- and surface water nanofiltration under the information collection rule. , 2001, Water research.
[46] Menachem Elimelech,et al. Role of Charge (Donnan) Exclusion in Removal of Arsenic from Water by a Negatively Charged Porous Nanofiltration Membrane , 2001 .
[47] Y. Kiso. Rejection properties of alkyl phthalates with nanofiltration membranes , 2001 .
[48] R. Trussell,et al. NDMA Formation in Water and Wastewater , 2001 .
[49] Viatcheslav Freger,et al. Separation of concentrated organic/inorganic salt mixtures by nanofiltration , 2000 .
[50] Menachem Elimelech,et al. Relating Nanofiltration Membrane Performance to Membrane Charge (Electrokinetic) Characteristics , 2000 .
[51] I. Masselin. Determination of the porosity to thickness ratio Ak/Δx for UF and MF membranes by diffusion experiments , 2000 .
[52] Takane Kitao,et al. Rejection properties of non-phenylic pesticides with nanofiltration membranes , 2000 .
[53] Chia‐Chi Ho. Measurement of membrane pore interconnectivity , 2000 .
[54] K. Košutić,et al. Porosity of some commercial reverse osmosis and nanofiltration polyamide thin-film composite membranes , 2000 .
[55] Sung Chul Kim,et al. Surface structure and phase separation mechanism of polysulfone membranes by atomic force microscopy , 1999 .
[56] Dibakar Bhattacharyya,et al. Separation of organic pollutants by reverse osmosis and nanofiltration membranes: Mathematical models and experimental verification , 1999 .
[57] Valentina Lazarova,et al. Treatment of trace organic compounds by membrane processes: At the Lake Arrowhead water reuse pilot plant , 1999 .
[58] D. Stamatialis,et al. Atomic force microscopy of dense and asymmetric cellulose-based membranes , 1999 .
[59] Takeshi Matsuura,et al. Effect of nonsolvent additive on the surface morphology and the gas separation performance of poly(2,6-dimethyl-1,4-phenylene)oxide membranes , 1999 .
[60] S. Kwak,et al. Use of atomic force microscopy and solid-state NMR spectroscopy to characterize structure-property-performance correlation in high-flux reverse osmosis (RO) membranes , 1999 .
[61] Yazhen Xu,et al. Investigation of the solute separation by charged nanofiltration membrane : effect of pH, ionic strength and solute type , 1999 .
[62] B. Van der Bruggen,et al. Influence of molecular size, polarity and charge on the retention of organic molecules by nanofiltration , 1999 .
[63] A. Zydney,et al. Effect of membrane morphology on the initial rate of protein fouling during microfiltration , 1999 .
[64] Awwa,et al. Membrane Filtration: Reverse osmosis and nanofiltration , 1998 .
[65] B. Van der Bruggen,et al. Nanofiltration as a treatment method for the removal of pesticides from ground waters , 1998 .
[66] G. Hagmeyer,et al. Modelling the salt rejection of nanofiltration membranes for ternary ion mixtures and for single salts at different pH values , 1998 .
[67] W. Richard Bowen,et al. Diafiltration by nanofiltration: Prediction and optimization , 1998 .
[68] A. Fane,et al. Effect of calcium ion on the fouling of nanofilter by humic acid in drinking water production , 1998 .
[69] T. Matsuura,et al. MEMBRANE CHARACTERIZATION BY SOLUTE TRANSPORT AND ATOMIC FORCE MICROSCOPY , 1998 .
[70] R. Gimbel,et al. Removal of pesticides and other micropollutants by nanofiltration , 1997 .
[71] S. Nakao,et al. The electrostatic and steric-hindrance model for the transport of charged solutes through nanofiltration membranes , 1997 .
[72] G. Laufenberg,et al. Waste water treatment using reverse osmosis: real osmotic pressure and chemical functionality as influencing parameters on the retention of carboxylic acids in multi-component systems , 1997 .
[73] W. P. Ball,et al. NANOFILTRATION OF NATURAL ORGANIC MATTER: pH AND IONIC STRENGTH EFFECTS , 1997 .
[74] Nidal Hilal,et al. CHARACTERISATION OF NANOFILTRATION MEMBRANES FOR PREDICTIVE PURPOSES - USE OF SALTS, UNCHARGED SOLUTES AND ATOMIC FORCE MICROSCOPY , 1997 .
[75] Masahiko Hirose,et al. Effect of skin layer surface structures on the flux behaviour of RO membranes , 1996 .
[76] W. Richard Bowen,et al. Characterisation and prediction of separation performance of nanofiltration membranes , 1996 .
[77] Nidal Hilal,et al. Atomic force microscope studies of membranes: Surface pore structures of Cyclopore and Anopore membranes , 1996 .
[78] Seppo Palosaari,et al. Calculation of permeate flux and rejection in simulation of ultrafiltration and reverse osmosis processes , 1993 .
[79] Y. Kiso,et al. The effects of molecular width on permeation of organic solute through cellulose acetate reverse osmosis membranes , 1992 .
[80] A. K. Fritzsche,et al. The structure and morphology of the skin of polyethersulfone ultrafiltration membranes : a comparative atomic force microscope and scanning electron microscope study , 1992 .
[81] H. K. Lonsdale,et al. Statistical-mechanical theory of membrane transport , 1990 .
[82] W. Deen. Hindered transport of large molecules in liquid‐filled pores , 1987 .
[83] Y. Kiso. Factors affecting adsorption of organic solutes on cellulose acetate in an aqueous solution system , 1986 .
[84] M. Reinhard,et al. Removing Trace Organics by Reverse Osmosis Using Cellulose Acetate and Polyamide Membranes , 1986 .
[85] S. Sourirajan,et al. Reverse Osmosis: A New Field of Applied Chemistry and Chemical Engineering , 1981 .
[86] Takeshi Matsuura,et al. Physicochemical criteria for reverse osmosis separation of alcohols, phenols, and monocarboxylic acid in aqueous solutions using porous cellulose acetate membranes , 1971 .
[87] K. S. Spiegler,et al. Thermodynamics of hyperfiltration (reverse osmosis): criteria for efficient membranes , 1966 .
[88] Hiroaki Ozaki,et al. Rejection of organic compounds by ultra-low pressure reverse osmosis membrane. , 2002, Water research.
[89] T. D. Waite,et al. Chemical Water and Wastewater Treatment VII , 2002 .
[90] R. D. Whitley,et al. Potable versus Reclaimed: Water Quality, Regulatory Issues, Emerging Concerns , 2000 .
[91] James S. Taylor,et al. SOC Removal in a Membrane Softening Process , 1992 .
[92] Shoji Kimura,et al. Calculation of ion rejection by extended nernst-planck equation with charged reverse osmosis membranes for single and mixed electrolyte solutions , 1991 .
[93] Shoji Kimura,et al. Reverse Osmosis of Single and Mixed Electrolytes with Charged Membranes: Experiment and Analysis , 1991 .
[94] O. Kedem,et al. Thermodynamics of hyperfiltration (reverse osmosis) , 1966 .
[95] A. Katchalsky,et al. Thermodynamic analysis of the permeability of biological membranes to non-electrolytes. , 1958, Biochimica et biophysica acta.