References

Abramowitz, M. and Stegun, J. A. (1964). Handbook of Mathematical Functions. Nat. Bureau of Standards, Washington.

Ackerman, G. (1937). “Simultaneous Heat and Mass Transfer with Large Temperature and Partial Pressure Differences.” Ver. deutscher Ig. Forth., 8, 1–16 (in German).

Acrivos, A. and Taylor, T. E. (1962). “Heat and Mass Transfer from Single Sphere in Stokes Flow,” Phys. Fluids, 5, 387–394.

Akita, K and Yoshida, F. (1974). “Gas Holdup and Volumetric Mass Transfer Coefficients in Bubble Columns.” Ind. Eng. Chem. Proc. Des. Dev., 13, 84.

Amelin, A. G. (1967). “Theory of Fog Condensation,” Israel Program for Scientific Translations, Jerusalem. Second edition.

Aris, R. and Amundson, N. R. (1957). “Some Remarks on Longitudinal Mixing or Diffusion in Fixed Beds.” AIChE Journal, 3, 280–282.

Aris, R. and Hatfield, B. (1969). “Combined Effect of External and Internal Diffusion for Nonisothermal Case.” Chem. Eng. Sci., 24, 1213–1220.

Astarita, G. (1967) Mass Transfer with Chemical Reaction. Elsevier, Amsterdam.

Avdeev, A. A. (2016). “Bubble Growth, Condensation (Dissolution) in Turbulent Flows.” In: Bubble Systems: Mathematical Engineering, Springer, Cham.

Avrami, M. (1939). “Kinetics of Phase Change. I. General Theory.” Journal of Chemical Physics, 7(12), 1103–1112.

Avrami, M. (1940). “Kinetics of Phase Change. II. Transformation-Time Relations for Random Distribution of Nuclei.” Journal of Chemical Physics, 8(2), 212–224.

Avrami, M. (1941). “Kinetics of Phase Change. III. Granulation, Phase Change, and Microstructure.” Journal of Chemical Physics, 9(2), 177–184.

Baker, R. W., Yoshioka, N., Mohr, J. M., and Khan, A. J. (1987). “Separation of Organic Vapors from Air.” J. Membrane Sci., 31, 259–271.

Barrer, R. M. (1951). Diffusion in and through Solids. Cambridge University Press, Cambridge, England.

Barrer, R. M. (1984). “Diffusivities In Glassy Polymers for The Dual Mode Sorption Model.” J. Membrane Sci., 18, 25.

Battles, Z. and Trefethen, L. N. (2004). “An Extension of Matlab to Continuous Functions and Operators.” SIAM Journal on Scientific Computing, 25, 1743–1770.

Bausa, J. and Marquardt, W., (2000). “Shortcut Design Methods for Hybrid Membrane/Distillation Processes for the Separation of Nonideal Multicomponent Mixtures.” Ind. Eng. Chem. Res., 39 (6), 1658–1672.

Bejan, A. (2004). Convective Heat Transfer. John Wiley & Sons, Hoboken.

Berbente, C. P. and Ruckenstein, E. (1968). “Hydrodynamics of Wave Flow.” AIChE J., 14, 772–782.

Berger, D. and Pei, D. C. T. (1973). “Drying of Hygroscopic Capillary Porious Solids: A Theoretical Approach.” Int. J. Heat and Mass Transfer, 16, 293–302.

Beukes, N. T. and Badenhorst, J. (2009). “Copper Electrowinning: Theoretical and Practical Design.” Hydrometallurgy Conference, African Institute of Mining and Metallurgy, 213–240.

Bhagwat, S. S. and Sharma, M. M. (1988). “Intensification of Solid-Liquid Reactions with Microemulsions.” Chem. Eng. Sci., 43, 195–205.

Bhatia, S. K. and Perlmutter, D. D. (1981). “The Effect of Pore Structure on Fluid-Solid reactions: Application to the SO2-Lime Reaction.” AIChE Journal, 27, 226–234.

Bhattacharya, A. and Ramachandran, P. A. (1986). “’A General Analysis of Mass Transfer Accompanied by Multiple Equilibrium Reactions.” J. Indian Inst. Sci., 66, 583–594.

Bhavaraju, S. M., Russell, T. W. F., and Blanch, H. W. (1978). “Design of Gas-Sparged Devices for Viscous Liquid Systems,” AIChE Journal, 24, 454–466.

Bin, A. K. (1983) “Mass Transfer into a Turbulent Liquid Film.” Int. J. Heat and Mass Transfer, 26, 981–991.

Bischoff, K. B. (1965). “Effectiveness Factor for General Reaction Rate Forms.” A. I. Ch.E Journal, 11, 351.

Bischoff, K. B. and Dedrick, R. L. (1980). “Species Similarities in Pharmacokinetics.” Federation Proc. in Pharamacokinetics, 39, 54–59.

Bischoff, K. B., Dedrick, R. L., and Zaharko, D. S. and Longstreth, J. A. (1971). “Methotrexate Pharmacokinetics.” J. Phram. Sci., 60, 1128–1133.

Bjerle, I., Bengtsson, S., and Farnkvist, K. (1969). “Absorption of SO2 in CaCO3-Slurry in a Laminar Jet Absorber.” Chem. Eng sci., 27, 1832–1856.

Blasius, H. (1908). “Grenzschicten in Flussigkeiten mit Kleiner Reibung.” ZAMP Soc, 56, 1. (English translation in NACA TM 1256.)

Botemuma, R. H. B., Checchetti, A., Chidichimo, G., and Drioli, E. (1977). “Permeation through a Heterogeneous Membrane: The Effect of the Dispersed Phase.” J. Membrane Sci., 128, 141.

Brian, P. L. T., Hales, H. B., and Sherwood, T. K. (1969). “Transport of Heat and Mass between Liquid and Spherical Particles in an Agitated Tank.” AIChE. Journal, 14, 727.

Brouwers, H. J. H. (1992). “Film Models for Transport Phenomena with Fog Formation: The Fog Film model.” Int. J. Heat and, Mass Transfer, 35(No. I), 13–28.

Brumfield, L. K., Houze, R. H. and Theofanous, T. G. (1975). “Turbulent Mass Transfer at Free Gas-Liquid Interfaces with Applications to Film Flow.” Int. J. Heat Mass Transfer, 18, 1077–1091.

Brunauer, S., Emett, P. H., and Teller, E. (1938). “Adsorption of Gases in Multimolecular Layers.” J. Am. Chem. Soc., 60, 309–319.

Calderbank, P. H., Johnson, D. S. L., and Loudon, J. (1970). “Mechanics of Mass Transfer of Single Bubbles in Free Rise through Some Newtonian and non-Newtonian Liquids.” Chem. Eng. Sci., 25, 235–241.

Calderbank, P. H. and Moo-Young (1961). “Mass Transfer in Bubble Swarms.” Chem. Eng. Sci., 16, 39–44.

Calvelo, A. and Smith, J. M. (1970). “Particle-Pellet Model for Gas-Solid Reactions.” Proceedings of Chemeca 1970, Butterworths, Sydney, paper 3.1, 15.

Camper, D., Becker, C., Koval, C., and Noble, R. (2005). “Low Pressure Hydrocarbon Solubility in Room Temperature Ionic Liquids.” Ind. Eng. Chem. Res., 44(6), 1928–1933.

Caracciolo, F., Cussler, E. L., and Evans, D. F. (1975). “Membranes with Common Ion Pumping.” AIChE Journal, 21, 160–167.

Carniglia, S. C. (1986). “Construction of Tortuosity Factor from Porosimetry.” J. Catalysis, 101, 401–418.

Cath, T., Childress, A., and Elimelech, M. (2006). “Forward Osmosis: Principles, Applications, and Recent Developments.” Journal of Membrane Science, 281, 70–87.

Cebeci, T. and Smith, A. M. O. (1974). Analysis of Turbulent Boundary Layers. Academic Press, New York.

Chakraborthy, S. and Balakotaiah, V. (2002). “Low-Dimensional Models for Describing Mixing Effects in Laminar Flow Tubular Reactors.” Chem. Eng. Sci., 57, 2545–2564.

Chen, S. and Pei, C. T. (1989). “A Mathematical Model for Drying Process.” Int. J. Heat and Mass Transfer, 32, 297–310.

Christman, P. G. and Edgar, T. F. (1983). “Distributed Pore-Size Model for Sulfation of Limestone.” AIChE J., 29, 399.

Chuanhui, H. and Tongwen, X. (2006). “Asymmetric Bipolar Membranes in Acid-Base Electrodialysis.” Environ. Sci. Technol., 40(17), 5527–5531.

Churchill, S. W. and Yu, B. (2006). “Effect of Transport on Reactions in Homogeneous Tubular Flow.” Ind. Eng. Chem. Res., 45, 8583–8593.

Clark, M. M. (2009). Transport Modeling for Environmental Engineers and Scientists, 2nd Edition. John Wiley & Sons, New York.

Cleland, F. A. and Wilhelm, R. H. (1956). “Diffusion and Reaction in Viscous Flow Reactor.” AIChE Journal, 2, 489–494.

Clift, R., Grace, J. R., and Weber, M. E. (1978). Bubbles, Drops and Particles. Dover Publications, Mineola, New York.

Colburn, A. P. and Drew, T. N. (1937). “Condensation of Mixed Vapors.” Trans. AIChE., 33, 197–215.

Combest, D. P., Ramachandran, P. A., and Dudukovic, M. P. (2011). “On the Gradient Diffusion Hypothesis and Passive Scalar Transport in Turbulent Flows.” Ind. Eng. Chem. Research, 50, 8817–8823.

Conner, J. M. and Elghobashi, S. E. (1987). “Numerical Solution of Laminar Flow Past a Sphere with Surface Mass Transfer.” Numerical Heat Transfer, 12, 57–68.

Crank, J. (1975). Mathematics of Diffusion. Clarendon Press, Oxford.

Crittenden, B., and Thomas, W. J. (1998). Adsorption Technology and Design. Butterworh-Heinemann, Oxford.

Cussler, E. L. (2009). Diffusion: Mass Transport in Fluid Systems. Cambridge University Press, Cambridge, UK.

Cussler, E. L. and Moggridge, G. D. (2001). Chemical Product Design. Cambridge University Press, Cambridge.

Dalvi, V. V. and Suresh, A. K. (2011). “The Separate Sulfation Rate of MgO Contained in Calcined Calcium Magnesium Acetate (CMA).” AIChE Journal, 57, 1329–1338.

Danckwerts, P. V. (1951). “Significance of Liquid Film Coefficients in Gas Absorption.” Ind. Eng. Chem., 43(1951), 1960–1967.

Danckwerts, P. V. (1970). Gas-Liquid Reactions. McGraw-Hill Co., New York.

Dani, A., Cockx, A., and Guiraud, P. (2006) “Direct Numerical Simulation of Mass Transfer from Spherical Bubbles: The Effect of Interface Contamination at Low Reynolds Numbers.” International Journal of Chemical Reactor Engineering online, 4, 1542–6580.

Davidson, J. F. and Cullen, E. J. (1957). “The determination of diffusion coefficients of sparingly soluble gases in liquids.” Trans. Instn. Chem. Engrs, 35, 51–60.

Davis, H. T. (1977). “Effective Medium Theory of Diffusion in Composite Media,” J. Am. Ceramic Soc., 60, 499.

Deen, W. M. (1987). “Hindered Diffusion of Large Molecules in Liquid Filled Pores.” AIChE Journal, 33(9) 1409–1425.

Deen, W. M. (2012). Analysis of Transport Phenomena. Second Edition, Oxford University Press.

De Groot, S. R. and Mazur, P. (1968). Non-Equilibrium Thermodynamics. Dover Publications, New York.

Delgado, J. M. P. Q. (2006). “A Critical Review of Dispersion in Packed Beds.” Heat Mass Transfer, 42, 279–310.

Doraiswamy, L. K. and Sharma, M. M. (1984). Heterogeneous Reactions: Analysis, Examples and Reactor Design. Wiley Interscience, New York.

Evangelista, J. J., Katz, S., and Shinnar, R. (1969). “Scale-up Criteria for Stirred Tank Reactors.” AIChE Journal, 15, 843–853

Fair, R.B. and Tsai, J. C. C. (1977). “Quantitative Model for the Diffusion of Phosphorus in Silicon and the Emitter Dip Effect.” J. Electrochem. Soc. 124 (7), 1107–1118.

Fan, L. T. and Hwang, W. S. (1965). “Dispersion of Ostwald-de-Waele fluid in Laminar Flow Through a Cylindrical Tube.” Proc. Roy. Soc. Lond., A283, 576–582.

Fournier, R. L. (2011). Basic Transport Phenomena in Biomedical Engineering. CRC Press, Boca Raton, FL.

Fredd, C. N. and Fogler, H. S. (1998). “Influence of Transport and Reaction on Worm-hole Formation in Porous Media.” AIChE Journal, 48, 1933–1949.

Freundlich, H. (1907) “ÜBer die Adsorption in Lösungen.” Zeitschrift fur Physikalische Chemie - Stöchiometrie und Verwandschaftslehre, 57, 385–470.

Froessling, N. (1938). The Evaporation of Falling Drops Beitr. Geophysik, 52, 170.

Froment, G. F., Bischoff, K. B., and de Wilde J. (2011). Chemical Reactor Analysis and Design. John Wiley & Sons Inc., 3rd edition, New York.

Fu, R. Q., Xu, T. W., Wang, G., Yang, Z. X., and Pan J. (2003). “PEG-Catalytic Water Splitting in the Interface of a Bipolar Membrane.” J. Colloid Interface Sci., 263 386.

Fuller, E. N., Schetteler, P. D., and Giddings, J. C. (1966). “New Method for Prediction of Binary Gas-Phase Diffusion Coefficients.” Ind. Eng. Chem., 58(5), 18–27.

Furno, J. S., Taylor, R., and Krishna, R., (1986). ‘Condensation of Vapor Mixtures. 2. Comparison with Experiment.” Ind. Eng. Chem. Proc. Des. Dev., 25, 98–101.

Garg, D. R. and Ruthven, D. M. (1973). “On Fixed Bed Sorption Behavior of Gases with Nonlinear Equilibria.” AIChE Journal., 19, 852–853.

Geiger G. H. and Poirer, D. R. (1998). Transport Phenomena in Material Processing. John Wiley & Sons, Hoboken.

Ghandhi, S. K. (1983). VLSI Fabrication Principles: Silicon and Gallium Arsenide. Wiley-Interscience, New York.

Ghiaasiaan, S. M. (2011). Convective Heat and Mass Transfer. Cambridge University Press, Cambridge.

Glasgow, L. A. (2010). Transport Phenomena: An Introduction to Advanced Topics. John Wiley & Sons, Honoken, NJ.

Glassman, I., Hansel, J. G., and Eklund, T. (1969). “Hydrodynamic Effects in Flame Spreading, Ignitability and Steady Burning of Liquid Fuels.” Combustion and Flame, 13, 99–101.

Glueckauf, E. (1955). “Theory of Chromatography, Part 10: Formula for Diffusion into Spheres and Their Application to Chromatography.” Trans. Faraday. Soc., 51, 1540–1543.

Gmehling, J. and Onken, U. (1984). “Vapor Liquid Equilibrium Data Collection.” DCHEMA Chem. Data. Series, 1–8, 197.

Goettler, R. and Pigford, R. L. (1971). “Computational Studies of Simultaneous Chemical Absorption of Two Gases.” AIChE Journal, 17, 1213–1220.

Gray, P. G. and Do, D. D. (1991). “Dynamics of Carbon Dioxide Sorption on Activated-Carbon Particles.” AIChE Journal, 37(7), 1027–1034.

Gray, W. G. (1983). “Local Volume Averaging of Multiphase Systems Using a Non-Constant Averaging Volume.” International Journal of Multiphase Flow, 9, 755–761.

Grimsrud, L. and Babb, A. L. (1966). “Velocity and Concentration Profiles for Laminar Flow of a Newtonian Fluid in a Dialyser.” Chem. Eng. Progr. Symposium Ser. 62, 66, 20–31.

Grossman, G. and Heath, M. T. (1984). “Simultaneous Heat and Mass Transfer in Absorption of Gases in Turbulent Liquid Films.” Int. J. Heat and Mass Transfer, 27, 2365–2376.

Gupta, A. S. and Thodos, G. (1963). “Direct Analogy between Mass and Heat Transfer to Beds of Spheres.” AIChE Journal, 9(6) 751–754.

Haase, R. (1968). Thermodynamics of Irreversible Processes. Dover Publishing Company, New York.

Hadamard, J. S. (1911). “Mouvement Permanent lent d’une Sphere Liquide et Visqueuse dans un Liquide Visquex.” Comp. Rend. Acad. Sci., 152, 1735–1738.

Hanna, O. T., Sandall, O. C., and Mazet, P. R. (1981). “Mixing Length Model for Mass Transfer.” AIChE Journal, 27, 693–697.

Harriott, P. (2003). Chemical Reactor Design. Marcel Dekker, New York.

Harrison, R. G. (2014). “Bioseparations Basics.” Chem. Eng. Progress, October, 36–42.

Harrison, R. G., Todd, P. W., Rudge, S. R., and Petrides, D. (2002). Bioseparations Science and Engineering (Topics in Chemical Engineering), 1st Edition, Oxford University Press, New York.

Hatta, S. (1932). “On the Absorption Velocity of Gases by Liquids.” Technol. Repts. Tohoku Imp. University 10, 119–135.

Haynes, H. W. (1984). “Multicomponent Diffusion and Reaction in a Porous Catalyst.” ACS Symposium Series, Edited by M. P. Dudukovic and P. L. Mills, Vol. 217, p. 407.

He, X., Kim, T., and Hagg, M. (2014). “Hybrid Fixed-Site-Carrier Membranes for CO2 Removal from High Pressure Natural gas: Membrane Optimization and Process Condition Investigation.” J. Membrane Science, 470, 266–274.

Higbie, R. (1935). “Rate of Absorption of a Pure Gas into Still Liquids during Short Periods of Exposure.” Trans AIChE, 31, 368–389.

Hikita, H. and Asai, S. (1963). “Gas Absorption with (m,n)-th Order Irreversible Reaction.” Int. Chem. Eng., 4, 312–340.

Hikita, H., Ishimi, K., and Ohba, A. Y. (1979). “Simultaneous Heat and Mass Transfer in Turbulent Gas Streams in Wetted-wall Columns” Can J. Chem Eng., 57, 578–581.

Hines, A. L. and Maddox, R. N. (1985). Mass Transfer: Fundamentals and Applications, Prentice-Hall, Englewood Cliffs, NJ.

Huang, C. and Xu, T. (2006). “Electrodialysis with Bipolar Membranes for Sustainable Development.” Environ. Sci. Technol., 40(17), 5233–5243.

Hyman, W. A. (1975). “Augmented Diffusion in Flowing Blood.” Trans. ASME, 58.

Ishida, M. and Wen, C. Y. (1968). “Comparison of Kinetic and Diffusional Models for Solid-Gas Reactions.” AIChE Journal, 14, 311–317.

Jarzynska, M. and Pietruszka, M. (2008). “Derivation of the Practical KedemKatchalski Equation.” Old and New Concepts in Physics, 5(3), 459–474.

Jiang, F. and Peng, P. (2016) “Elucidating the Performance Limitations of Lithium-Ion Batteries due to Species and Charge Transport through Five Characteristic Parmeters.” Sci. Rep., 6, 326–339.

Kalia, N. and Balakotaiah, V. (2007). “Modeling and Analysis of Wormhole Formation in Reactive Dissolution of Carbonate Rocks.” Chem. Eng. Sci., 62(4), 919–928.

Kalia, N. and Balakotaian, V. (2009). “Effect of Medium Heterogeneities on Reactive Dissolution of Carbonates.” Chem. Eng. Sci., 64(2), 376–390.

Katchalsky, A. and Curren, P. F. (1965). Non-Equilibrium Thermodynamics in Biophysics, Harvard University Press, Cambridge, MA.

Katz, W. E. (1979). Electrodialyisis Reversal (EDR) Process. Desalination, 28(1), 31–40.

Kedem, O. and Katchalsky, A. (1958). “Thermodynamic Analysis of the Permeability of Biological Membranes to non-Electrolytes.” Biochim. Biophys. Acta., 27, 229–246.

Kedem, O. and Katchalsky, A. (1961). “A Physical Interpretation of the Phenomenological Coefficients of Membrane Permeability.” J. Gen. Physiol. 45, 143–179.

Kendoush, A. A. (1994). “Theory of Convective Heat and Mass Transfer in Spherical Cap Bubbles.” AIChE Journal, 40, 1440–1447.

Kilic, S. G. (2008). Dynamic Fugacity Modeling in Environmental Systems. Doctoral Thesis, Georgia Institute of Technology.

King, C. J. (1966). “Turbulent Phase Mass Transfer at a Free Gas-Liquid Interface.” Ind. Eng. Chem. Fundamentals, 5, 1–8.

Klinkenberg, A. (1954). “Heat Transfer in Cross-Flow Heat Exchangers and Packed Beds.” Ind. Eng. Chem, 46, 2285–2289.

Kolmogorov, A. N. (1949). “On the Disintegration of Drops in a Turbulent Flow.” Dokl. Akad. Nauk, SSSR, 66, 825–828.

Korngold, F. “Electrodialysis Unit: Optimization and Calculation of Energy Requirement.” Desalination, 40, 171–179.

Koros, W. J. and Paul, D. R. (1980). “Sorption and Transport of CO2 above and below the Glass Transition of Poly(ethylene terephthalate).” Poly. Engr. and Sci., 20, 14.

Kraaijeveld, G., Sumbervova, N. V., Kuindersma, S., and Wesselingh, H. (1995). “Modeling Electrodialyis Using the Maxwell-Stefan Description.” Chem. Eng. and Biochemical Eng. Journal, 57(2), 163–176.

Kreyszig, E. (2011). Advanced Engineering Mathematics. Wiley, New York.

Krishna, R. and Panchal, C. B. (1977). “Simplified Mass Tranfer Analysis for Multicomponent Condensation.” Chem. Eng. Sci., 32, 741.

Krogh, A. (1919). “The Number and Distribution of Capillaries in Muscles with Calculation of the Oxygen Pressure Necessary for Supplying the Tissue.” J. Physiol, 52, 409–415.

Kulkarni, P. S., Tiwari, K. K., and Mahajani, V. V. (1999). “Studies in Extraction of Nickel by Liquid Emulsion Membrane Process.” Indian J Chem., 6, 329–335.

Kuo, S. (1996). Transport Phenomena and Materials Processing. Wiley-Interscience, New York.

Laddha, G. S. and Degaleesan, T. E. (1976). Transport Phenomena in Liquid Extraction. Tata McGraw-Hill Publishing Company, New Delhi, India.

Lapicque, F. and Storck, A. (1985). “Modelling of a Continuous Parallel Plate Plug Flow Electrochemical Reactor: Electrowinning of Copper.” Journal of Applied Electrochemistry, 15(6), 925–935.

Larson, R. I., and Verazunis, S. (1973). “Mass Transfer in Turbulent Flow.” Int. Journal of Heat and Mass Transfer, 16, 121–128.

Lee, H., Sarfert, F. Strathmann, H., and Moon, S. (2002). “Designing of an Electrodialysis Desalination Plant.” Desalination, 142(3), 267–286.

Lennard-Jones, J. E. (1924). “On the Determination of Molecular Fields.” Proc. R Soc. Lond A., 106(738), 463–477.

Levenspiel, O. (1999). Chemical Reaction Engineering. John Wiley & Sons, New York. Levenspiel, O. (2013). Chemical Reactor Omnibook. Oregon State University Press, Corvallis.

Levenspiel, O. and Godfrey, J. H. (1974). “A Gradientless Contactor for Experimental Study of Interphase Mass Transfer with/without Reaction.” Chem. Eng. Sci., 29, 1723–1730.

Levenspiel, O. and Smith, W. K. (1957). “Notes on the Diffusion-type Model for the Longitudinal Mixing of Fluids in Flow.” Chem. Eng. Sci., 6, 227–233.

Levich, V. G. (1962). Physicochemical Hydrodynamics. Prentice-Hall, Englewood Cliffs, NJ.

Lewis, W. K. and Whitman, W. G. (1924). “Principles of Gas Absorption.” Ind. Eng. Chem. 16, 1215–1220.

Lightfoot, E. N. (1974). Transport Phenomena in Living Systems. John Wiley & Sons Publishers, New York.

Linek, F. and Dudukovic, M. P. (1982). “Representation of Breakthrough Curves for Fixed-bed Adsorbers and Reactors using Moments of the Impulse Response.” Chem. Eng. Jl., 23, 31–36.

Linton, W. H. J. and Sherwood, T. K. (1950). “Mass Transfer from Solid Shapes to Water in Streamline and Turbulent flow.” Chem. Eng. Progress, 46, 258–264.

Liu, F. and Bhatia, S. K. (2001). “Application of Petrov-Galerkin methods to Transient Boundary Value Problems in Chemical Engineering: Adsorption with Steep Gradients in Bidisperse Solids.” Chem. Eng. Science, 56, 3727–3735.

Mackay, D. (2001). Multimedia Environmental Models: The Fugacity Approach, Second Edition. Lewis Publishers, Boca Raton, FL.

Mackay, D. (2001). Multimedia Environmental Models. Lewis Publishers.

Mackay, D. and Paterson, S. (1991). “Evaluating the Multimedia Fate of Organic Chemicals: A Level III Fugacity Model.” Environmental Science & Technology. 25(3), 427–436.

Mackay, D., Paterson, S., Di Guardo, A., and Cowan, E.C. (1996a). “Evaluating the Environmental Fate of a Variety of Types of Chemicals Using the EQC Model.” Environ. Toxicol. Chem., 15, 1627–1637.

Mackay, D., Paterson, S., Kicsi, G., Cowan, E.C., Di Guardo, A., and Kane, D.M. (1996b). “Assessment of Chemical Fate in the Environment Using Evaluative, Regional and Local-Scale Models: Illustrative Application to Chlorobenzene and Linear Alkylbenzene Sulfonates.” Environ. Toxicol. Chem., 15, 1638–1648.

Mackay, D., Paterson, S., Kicsi, G., Di Guardo, A., and Cowan, C. E. (1996c). “Assessing the Fate of New and Existing Chemicals: A Five Stage Process.” Environ. Toxicol. Chem., 15, 1618–1626.

Mao, Z. and Chen, J. (2004). “Numerical Simulation of Marangoni Effect on Mass Transfer to Single Slowly Moving Drop in Liquid-Liquid Systems.” Chem. Eng. Sci., 59, 1815–1828.

Marzouqi, M. H., Abdulkarim, M. A., Marzouk, S. A., El-Naas, M. H., and Hasanain, H. M. (2005). “Facilitated Transport of CO2 Through Liquid Membrane.” Ind. Eng. Chem. Res., 44, 9273–9278.

Mashelkar, R. A. and Chavan, V. V. (1973). “Solid Dissolution in Falling Films of non-Newtonian Liquids.” J. Chem. Eng. Japan., 6, 160–167.

Masheklar, R. A. and Soylu, M. A. (1974). “Diffusion in Flowing Films of Dilute Polymeric Solutions.” Chem. Eng. Sci., 29, 1089.

McAdams, W. H. (1954). Heat Transmission, Third Edition. McGraw-Hill Book Company, New York.

McCabe, W. L., Smith, J. C., and Harriott, P. (2010). Unit Operations of Chemical Engineering. Seventh Edition. McGraw-Hill Publications, New York.

Meadows, D. L. and Peppas, N. A. (1984). “Solute Diffusion in Swollen Membranes. III. Non-Equilibrium Thermodynamic Aspects of Solute Diffusion in Polymer Network Membranes.” Chem. Eng. Commun., 31, 101–119.

Mehta, B. N and Aris, R. (1971). “Internal Diffusion for Fractional Order Reactions.” Chem. Eng. Sci. J., 26, 1699–1711.

Merkel, F. (1925). Verdunstungskuhlung, VDI. Forschungsarbeiten, Berlin, 275.

Merrill, L. S. and Hamrin, C. E. (1970). “Conversion and Temperature Profiles for Complex Reactions in Laminar and Plug Flow.” AIChE Journal, 16, 194.

Middleman, S. (1998). Introduction to Mass and Heat Transfer. John Wiley & Sons, New York.

Middleman, S. and Hochberg, A. K. (1993). Process Engineering Analysis in Semiconductor Device Fabrication. McGraw-Hill Publishing Co., New York.

Mills, A. F. (1993). Heat and Mass Transfer. Irwin Publishing Company, Toronto.

Mills, P. L., Ramachandran, P. A., and Chaudhari, R. V. (1992). “Multiphase Reaction Engineering for Fine Chemicals and Pharmaceuticals.” Reviews in Chemical Engineering, 8, 1–172.

Mujumdar, A. S. (Ed.) (1995). Handbook of Industrial Drying. Marcel Dekker, New York.

Nagasawa. H., Niimi, T., Kanezashi, M. Yoshioka, T., and Tsuru, T. (2014). “Modified Gas-Translation Model for Prediction of Gas Permeation through Microporous Organosilica Membranes.” AIChE Journal, 60, 4199–4210.

Nagata, S. (1975). Mixing Principles and Applications. Kodansha Ltd. Tokyo/Wiley, New York.

Neogi, P. (1966). Diffusion in Polymers. CRC Press, Boca Raton, FL.

Nernst, W. (1904). “Theorie der Reaktionsgeschwindigkeit in Heterogenen Systemen.” Published online: https://doi.org/10.1515/zpch-1904-4704.

Neumann, E. B. (1987). Chemical Reactor Design. John Wiley & Sons, New York.

Newman, J. and Thomas-Alyea. K. E. (2004). Electrochemical Reactions. John Wiley & Sons, Hoboken.

Nikuradse, J. (1932). “Laws of Turbulent Flow in Smooth Pipes.” VDI-Forschungsheft, 356, (English translation: NASA TT F-10: 359, 1966).

Noble, R. D. (1991). “Facilitated Transport Mechanism in Fixed Site Carrier Membranes.” J. Membrane Science, 60, 297–306.

Noble, R. D. and Koval, C. A. (2006). “Review of Facilitated Transport Membranes” in Materials Science of Membranes for Gas and Vapor Separation (Y. Yampolskii, I. Pinnau, and B. Freeman Eds.). John Wiley & Sons, Ltd, Chichester, UK.

Noble, R. D. and Stern, S. A. (Eds.) (1995). Membrane Separations Technology: Principles and Applications. Elsevier Science Publishing Company, Amsterdam.

Novosad, Z., and Ulbrecht, J. (1966). “Conversion in Chemical Reactions for Isothermal Laminar Flow of Non-Newtonian Liquids in a Tubular Reactor of Circular Cross Section.” Chem. Engg. Sci., 21, 405–411.

Nusselt, W. (1916). “Die Oberflachenkondensation des Wasserdampfes.” Zeitchr. ver. Deutsch Ing., 60, 541–569.

Olander, D. R. and Reddy, L. B. (1964). “Effect of Concentration Driving Force on Liquid-Liquid Mass Transfer.” Chem. Eng. Sci., 19, 63.

Oldrich, W. E. and Wild, J. D. (1960). “Diffusion from the Free Surface into a Liquid Film in Laminar Flow over Defined Shapes.” Chem. Eng. Sci., 24, 25–32.

Onda. K, Takeuchi, H., and Koyama, Y. (1967). “Effect of Packing Material on the Wetted Surface Area.” Kagaku Kogaku, 31, 126.

Onda. K, Takeuchi, H., and Okumoto, Y. (1968). “Mass Transfer Coefficients between Gas and Liquid Phases in Packed Columns.” J. Chem. Eng. Japan, 1, 56–62.

Onsager, L. (1945) “Theories and Problems of Liquid Diffusion.” Ann. N.Y. Acad. Sci., 46, 241–265.

Osborne, F. T. (1975). “Purely Convective Models for Tubular Reactors with Non-Newtonian Flow.” Chem. Eng. Sci., 30, 159–166.

Pai, S . I. (1953). “On Turbulent Flow Between Two Parallel Plates.” J. Appl. Mech., 20, 109–114.

Patankar, S. V. (1980). Numerical Heat Transfer and Fluid Flow Hemisphere, Washington, DC.

Peppas, N. A. and Meadows, D. L (1983). “Macromolecular Structure and Solute Diffusion in Membranes: An Overview of Recent Theories.” J. Membr. Sci., 16, 361–377.

Perry, R. L. and Green, D. W. (2007). Perry’s Chemical Engineering Handbook, McGraw-Hill Professional Publications, New York.

Petropoulos, J. H. (1985). “A Comparative Study of Approaches Applied to the Permeability of Binary Composite Polymeric Materials.” J. Polym. Sci., Polym. Phys. Ed., 23, 1309.

Plawsky, J. (2010). Transport Phenomena Fundamentals. CRC Press, Boca Raton, FL.

Poling, R. C., Prausnitz, J. M., and O’Connnell. J. P. (2001). Properties of Gases and Liquids, Fifth Edition. McGraw-Hill Publishers, New York.

Prandtl, L. (1925). “Bericht uber Untersuchungen zur ausgebildeten Turbulenz.” ZAMM, 5, 136.

Pratt, H. R. C. (1975). “Simplified Analytical Design Method for Differential Extractors with Backmixing. I. Linear Equilibrium Relationship.” Ind. Eng.Chem. Process Des. Dev, 14, 74.

Proudson, I., and Pearson, J. R. A. (1958). “Convection Cells induced by surface tension.” J. Fluid Mechanics, 4(5), 489–500.

Ramachandran, P. A. (1993). “Gas absorption in Slurries Containing Fine Particles:

Review of Models and Recent Advances.” Ind. Eng. Chem. Res., 46, 3137–3152.

Ramachandran, P. A. (2013). Advanced Transport Phenomena: Modeling: Analysis, Modeling and Computations. Cambridge University Press, U.K.

Ramachandran, P. A. and Chaudhari, R. V. (1983). Three Phase Catalytic Reactors. Gordon and Breach Science Publications, New York.

Ramachandran, P. A. and Doraiswamy, L. (1982). “Modeling of Non-Catalytic Gas-Solid Reactions.” AIChE Journal, 28(6), 881–900.

Ramachandran, P. A. and Mashelkar, R. A. (1980). “Lumped Parameter Model for Haemodialyser with Application to Simulation of Patient-Artificial Kidney System.” Med & Biol. Eng. Computing, 18, 179–188.

Ramachandran, P. A. and Mashelkar, R. A. (1976). “Homogeneous Reaction in Turbulent Pipe Flow.” Chem. Eng. Journal, 11, 73–76.

Ramachandran, P. A. and Sharma M. M. (1969). “Absorption with Fast Reaction in a Slurry Containing Soluble Fine Particles.” Chem. Eng. Sci., 24, 1681–1686.

Ramachandran, P. A. and Sharma, M. M. (1971). “Simultaneous Absorption of Two Gases.” Trans. Instn. Chem Engrs. U.K, 49, 253–280.

Ramachandran, P. A. and Smith, J. M. (1977). “Single-Pore Model For Gas-Solid Non-catalytic Reactions.” AIChE Journal, 23, 353–361.

Ramachandran, P. A. and Smith, J. M. (1979). “Dynamic Behavior of Trickle Bed Reactors.” Chem Eng. Sci., 34, 75–91.

Ramadesigan, V., Northrop, P. W. C., De. S., Santhanagoplan, S., Braatz, R. D., and Subramanian, V. R. (2012). “Modeling and Simulation of Lithium-Ion Batteries from a Systems Engineering Perspective.” J. Electrochem. Soc., 159, R31–45.

Ramaswamy, R. C. and Ramachandran, P. A. (2008). “Multiple Steady State Calculations for Diffusion Problems Using Arc Length Continuation.” J of Research in Eng. and Tech., Kasetsart University Publication, 5(3), 255–275.

Ramaswamy, R. C. and Ramachandran, P. A. (2013). “Modeling of Reactive Condensation Systems.” Paper presented at NASCRE conference.

Ramirez, W. F., Mickley, M. C., and Lewis, D. N. (1971). “Mathematical Modeling of a KIIL Haemodialyser.” Chem. Eng. Prog. Symp. Series, 114(67), 116–122.

Ramkrishna., D. and Amundson, N. R. (1985). Linear Operator Methods in Chemical Engineering, Prentice-Hall, Englewood Cliffs, NJ.

Ranz, W. E. and Marshall, W. R. (1952). “Evaporation from Drops.” Chem. Eng. Prog., 48, 141–146.

Rashidi, M. and Banerjee, S. (1988). “Turbulence Structure in Free Surface Channel Flows.” The Physics of Fluids, 31(9), 2491–2503.

Reddy, K. S. and Suresh, A. K. (2012). “Reactions in Solid Particles: A Reappraisal of Model.” AIChE Journal, 58, 3161–3166.

Reid, R. C., Prausnitz, J. M., and Poling, B. E. (1987). Properties of Gases and Liquids McGraw-Hill Publishing Co., New York.

Renkin, E. M. (1954). “Filtration, Diffusion and Molecular Motion in Porous Cellulosic Membranes.” J. Gen. Physiol, 38, 225–243.

Reyes, S. and Jensen, K. F. (1987). “Percolation Concepts in Modelling of Gas-Solid Reactions and Photonic Materials.” Chem. Eng. Sci., 42, 565.

Ritter, T. and Yang, T. (1987). “Equilibrium Adsorption of Multicomponent Gas Mixtures at Elevated Pressures.” Ind. Eng. Chem. Res, 26, 1679–1686.

Roberts, D. and Danckwerts, P. V. (1962). “Kinetics of CO2 Absorption in Alkaline Solutions. – I. Transient Absorption Rates and Catalysis by Arsenite.” Chem. Eng. Sci., 17, 961–969.

Ruckenstein, E. and Berbente, C. (1964). “Convective Instability in a Two-Layer System with an Interfacial Reaction.” Chem. Eng. Sci., 19, 329.

Rybczynski, W. (1911). “Uber die Fortschreitende Bewegung einer Flussigen Kugel in einem Zahen Medium.” Bull Acad. Sci, Carcovie, A 40–46.

Sampath, B. S., Ramachandran, P. A., and Hughes, R. (1975). “Modeling of Noncatalytic Gas-Solid Reactions: Transient Simulation of a Packed Bed Reactor.” Chem. Eng. Sci., 30(1), 135–43.

Sandler, S. L. (2006). Chemical and Biochemical and Engineering Thermodynamics, Fourth Edition, John Wiley & Sons, Hoboken.

Sardesai, R. G., and Webb, D. R., (1982) “Condensation of Binary Vapours of Immiscible Liquids,” Chem. Eng. Sci., 37(4), 529–537·

Schiltting, H. and Gersten, K. (2000). Boundary Layer Theory, Springer Publishing Co.

Schneider, P. and Smith, J. M. (1968). “Adsorption Rate Constants form Chromatography.” AIChE Journal, 14, 762–768.

Scriven, L. E. (1960). “Dynamics of a Fluid Interface.” Chem. Eng. Sci., 12, 98–108.

Seader, J. D., Henley, E. J., and Roper, D. K. (2011). Separation Process Principles with Applications Using Process Simulators. John Wiley & Sons, Hoboken, NJ.

Sharma, K. R. (2010). Transport Phenomena in Biomedical Engineering: Artificial Organ Design and Development and Tissue Design, McGraw-Hill Professional, New York, NY.

Shelelkhin, A. B., Dixon, A. G., and Ma. Y. H. (1995). “Theory of Gas Diffusion and Permeation in Inorganic Molecular Sieve Membranes.” AIChE Journal, 41, 58–67.

Sherwood, T. K. (1929). “Drying of Porous Solids.” Ind. Eng. Chem., 21, 12–16.

Sherwood, T. K. and Wei, J. C. (1955). “Ion Diffusion in Mass Transfer between Phases.” AIChE Journal, 1(4), 522–527.

Sherwood, T. K. and Wei, J. (1957). “Interfacial phenomena in liquid extraction.” Ind. Eng. Chem., 49, 1030.

Silverthorn, D. U. (2001). Human Physiology, An Integrated Approach, Second Edition. Prentice Hall, Upper Saddle River, NJ.

Simonsson, D. and Lindman, L. (1979). “On the Application of Shrinking Core Model for Liquid-Solid Reactions.” Chem. Eng. Sci., 34, 31–35.

Smith, J. M. (1981). Chemical Engineering Kinetics, McGraw-Hill, New York.

Smith, J. M., Van Ness, H. C. and Abbott, M. M. (2005). An Introduction to Chemical Engineering Thermodynamics. McGraw-Hill, New York.

Sohn, H. Y., and Han, D. H. (2011). “Ca-Mg Acetate as Dry SO2 Sorbent.” AIChE Journal, 57, 1329–1338.

Sohn, H. Y. and Szekely, J. (1972). “Structural Model for Gas-Solid Reactions with a Moving Boundary-III A General Dimensionless Representation of the Irreversible Reaction between a Porous Solid and a Reactant Gas.” Chem.. Eng. Sci., 27, 763–768.

Staverman, A. J. (1952). Nonequilibrium Thermodynamics of Membrane Transport. Trans. Faraday Soc., 48, 176–185.

Steinberger, R. L. and Treybal, R. E. (1960). “Mass Transfer from a Solid Soluble Sphere to a Flowing Liquid Stream.” AIChE Journal, 6(2), 227–232.

Steinmeyer, D. E. (1972). “Fog Formation in Partial Condensers.” Chem. Eng. Prog., 68(7), 64–68.

Sten-Knudsen. O. (2002). Biological Membranes: Theory of Transport. Cambridge University Press, Cambridge.

Stern, S. A. (1994). “Polymers for Gas Separations: The Next Decade.” J. Membrane Sci., 94, 1–65.

Sternling, C. V. and Scriven, L. E. (1959). “Interfacial Turbulence: Hydrodynamic Instability and Marangoni Effect.” AIChE Journal, 5, 514–523.

Stewart, W. E. and Prober, R. (1964). “Matrix Calculation of Multicomponent Mass Transfer in Isothermal Systems.” Ind. Eng. Chem. Fundamentals, 3, 224–235.

Suresh, A. K. and Ghoroi, C. (2009). Solid-Solid Reacitons in Series: Modeling and Experimental Studies.” AIChE Journal, 55, 2399.

Suwanvaipattana, P., Limtrakul, S., Vatanatham. T., and Ramachandran, P. A. “Modeling of Electro-Organic Synthesis to Facilitate Cleaner Manufacturing: Adiponitrile Production” J. of Cleaner Production, 142, 1296–1308.

Szekely, J., Evans, J. W., and Sohn, H. Y. (1976). Gas-Solid Reactions Academic Press.

Szekely, J. and Themelis, N. J. (1991). Rate Phenomena in Process Metallurgy. Wiley-Interscience, New York.

Takagaki, N., Kurose, R., Kimura, A., and Komori, S. (2016). “Effect of Schmidt Number on Mass Transfer Across a Sheared Gas-Liquid Interface in a Wind-Driven Turbulence.” Scientific Reports, 6, Article number: 37059.

Tanaka. Y. (2005). “Limiting Current Density of an Ion-Exchange Membrane and in an Electrodialyzer.” J. Membrane Sci., 266, 6–17.

Tavlarides, L. L. and Stamatoudis, M. (1981). “Analysis of Interface Reactions and Mass Transfer in Liquid-Liquid Dispersions.” Advances. in Chem. Eng., 11, 199–272.

Taylor, G. I. (1953). “Dispersion of a Solute Matter in a Solvent Flowing Slowly through a Tube.” Proc. Roy. Soc., A219, 186–203.

Taylor, G. I. (1954). “Conditions under Which Dispersion of a Solute in a Stream of Solvent Can Be Used to Measure Molecular Diffusion,” Proc. Roy. Soc. A., 225, 473–477.

Taylor, G. I. (1954). “Dispersion of Matter in Turbulent Flow through a Pipe.” Proc. Roy Soc. 223, 446–467.

Taylor, R. and Krishna, R. (1993). Multicomponent Mass Transfer. Wiley InterScience, New York, NY.

Taylor, R., Krishnamurthy, R., Furno, J. S., and Krishna, R. (1986). “Condensation of Vapor Mixtures. I. Nonequilibrium Models and Design Procedure.” Ind. Eng. Chem. Proc. Des. Dev., 25, 83–97.

Thampan, T., Malhotra, S. Zhang, J. X., and Datta, R. (2001). “PEM Fuel Cell as a Membrane Reactor.” Catalysis Today, 67, 15–32.

Tien, C. L. and Wasan, D. T. (1963). “Law of the Wall in Turbulent Channel Flow.” Physics of Fluids, 6, 144–146.

Tongwen, X. and Weihua, Y. (2002). “Citric Acid Production by Electrodialysis with Bipolar Membrane.” Chem. Eng and Processing, 41, 519–524.

Toor, H. L. (1957). “Diffusion in Three-Component Gas Mixtures.” AIChE Journal, 2, 198–207.

Trefethen, L. N. (2007). “Computing Numerically with Functions Instead of Numbers.” Mathematics in Computer Science, 1, 9–19.

Truskey, G. A., Yuan, F., and Katz, D. F. (2004). Transport Phenomena Biological Systems. Prentice Hall, Upper Saddle River, NJ.

Tsuru, T., Kondo, H., Yoshioka, T., and Asaeda, M. (2004). “Permeation of Non-aqueous Solution through Organic/Inorganic Hybrid Nanoporous Membranes.” AIChE Journal, 50, 1080–1087.

Valero, F. Barceló. A., and Arbós, R. (2011). Electrodialysis Technology - Theory and Applications, In: Desalination, Trends and Technologies, Michael Schorr (Ed.), InTech, pp. 3–20.

van Driest, E. R. (1956). On Turbulent Flow near a Wall J. Aero. Sci., 23, 1007–1001.

van’t Reit, K. (1979). “Review of Measuring Methods and Results in Nonviscous Gas-Liquid Mass Transfer in Stirred Vessels.” Ind. Eng. Chem. Proc. Des. Dev., 18, 357.

Vasudevan, T. V. and Sharma, M. M. “Some Aspects of Process Design of Liquid-Liquid Reactor.” Ind. Eng. Chem. Proc. Des. Dev., 23, 400.

Vigness, A. (1966). “Diffusion in Binary Solutions. Variation of Diffusion Coefficient with Composition.” Ind. Eng. Chem. Fundam. 5, 189–198.

Villadsen, J. V. and Michelsen, M. L. (1978). Solution of Differential Equation Models by Polynomial Approximation. Prentice-Hall, Englewood Cliffs, NJ.

Vrentas, J. S. and Vrentas, C. M. (2012). Diffusion and Mass Transfer. CRC Press, Boca Raton, FL.

Wakao, N. and Smith, J. M. (1962). “Diffusion in Porous Solids.” Chem. Eng. Sci., 17, 825.

Wang, Yi., Lin, Q., and Mukherjee, T. (2004). “System-Oriented Dispersion Models of General-Shaped Electrophoresis Microchannels.” Lab on Chip, 4, 453–463.

Warsi, Z. U. A. (1999). Fluid Dynamics: Theoretical and Computational Approaches. CRC Press, Boca Raton, FL.

Webb, D. R. and Sardesai, R. G. (1981). “Verification of Multicomponent Mass Transfer Models for Condensation Inside a Vertical Tube.” Int. J. Multiphase Flow, 7, 507–520.

Welty, J. R., Wicks, C. E., Wilson, R. E., and Rorrer, G. L. (2008). Fundamentals of Momentum, Heat and Mass Transfer. John Wiley & Sons, Inc, New York.

Wen, C. Y. and Fan, L. T. (1975). Models for Flow System and Chemical Reactors, Marcel Dekker, New York.

Wesselingh, J. A. and Krishna, R. (2000). Mass Transport in Multicomponent Mixtures. VSDD Publishers, Amsterdam.

Westermeier, R. (2005). Electrophoresis in Practice. Wiley-Blackwell, New York.

White, R. E. and Subramanian, V. (2010). Computational Methods in Chemical Engineering with MAPLE. Springer-Verlag, Berlin.

Wijmans, G. and Baker, R. W. (1993). “ASimple Predictive Treatment of the Permeation Process in Pervaporation,” Journal of Membrane Science 79, 101.

Wilke, C. R. (1950). “Diffusional Properties of Multicomponent Gases.” Chem. Eng. Progress, 46, 95–104.

Wilke, C. R. and Chang P. (1955). “Correlation of Diffusion Coefficients in Dilute Solutions.” AIChE Journal, 1, 264–270.

Won, Y. S. and Mills, A. F. (1982). “Correlation of the Effects of Viscosity and Surface Tension on Gas Absorption in Freely Falling Turbulent Films.” Int. J. Heat and Mass Transfer, 25, 223–229.

Wyman, C. E. and Carter, L. F. (1976). “Numerical Model for Tubular Polymerization Reactors.” AIChE Symp. Series, 72, 1.

Xiao, J. and Wei, J. (1992). “Diffusion Mechanisms of Hydrocarbons in Zeolites.” Chem. Eng. Sci., 47, 1123–1141.

Xu, T. (2005) “Ion Exchange Membranes: State of Their Development and Perspective.” Journal of Membrane Science, 263, 1–29.

Yamashita, F. and Inoue, H. (1975). “Gas Holdup in Bubble Columns.” J. Chem. Eng. Japan, 8, 334.

York, R. L., Bratlie, K. M., Hile, L. R., and Jang, L. K. (2011). “Dead Zones in Porous Catalysts: Concentration Profiles and Efficiency Factors.” Catalysis Today. 160, 204–212.

Yoshisato, R. A., Korndorf, L. M., Carmichael, G. R., and Datta, R. (1986). ”Performance Analysis of a Continuous Rotating Annular Electrophoresis Column.” Separation Science and Technology, 21(8), 727–753.

..................Content has been hidden....................

You can't read the all page of ebook, please click here login for view all page.
Reset
3.145.158.36