content material: the answer thought modeling of fuel adsorption on zeolites / Arthur W. Woltman and William H. Hartwig --
Mathematical modeling of adsorption in multicomponent platforms / Alexander P. Mathews and Walter J. Weber, Jr. --
research of combination equilibria of methane and krypton on 5A zeolite / K.F. Loughlin and G.D. Roberts --
obvious floor diffusion results for carbon dioxide/air and carbon dioxide/nitrogen combos with pelleted zeolite beds / Richard T. Maurer --
impression of presorbed water at the sorption of nitrogen through zeolites at ambient temperatures / Donald Peterson --
Selective sorption homes of zeolites / R.M. Dessau --
4 crystal constructions of BaxNa₁₂₂x-A (1[less than or equivalent to] x [less than or equivalent to] 6) with regards to the instability of barium-exchanged zeolite A towards dehydration / Yang Kim, V. Subramanian, Roger L. Firor, and Karl Seff --
The impact of oxygen of photoluminescence and resonance strength move in copper (I) Y zeolite / D.H. Strome and ok. Klier --
guidance of copper(II)-exchanged Y zeolites from sodium and ammonium Y zeolites / Richard G. Herman and John B. Bulko --
Lead and cadmium ion trade of zeolite NaA / Elliot P. Hertzenberg and Howard S. Sherry --
Liquid part drying purposes of zeolites / George W. younger, Joseph R. Kiovsky, and Pramod B. Koradia --
Separation of n-paraffins from wax distillate with supercritical fluids and molecular sieves / Paul Barton and David F. Hajnik --
Polybed pressure-swing adsorption hydrogen processing / R.T. Cassidy --
Separation of hydrogen sulfide-hydrogen combos via heatless adsorption / M.D. Whitley and C.E. Hamrin, Jr. / a brand new technique for adsorption separation of gasoline streams --
George E. Keller, II and Russell L. Jones.
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Extra resources for Adsorption and Ion Exchange with Synthetic Zeolites. Principles and Practice
AIChE J . , 1972, 18, 761. 12. Schay, G. ; Fejes, F. ; Acta. Chem. Acad. Sci. Hungary, 1957, 12, 299. 13. Yon, C. ; Turnock, P. ; AIChE Symp. , 1971, 67, 75. 14. Mathews, A. ; Weber, W. J . ; AIChE Symp. , 1977, 73, 91. 15. Brian, P. L. ; Hales, H. ; AIChE J . , 1969, 15, 419. 16. Calderbank, P. ; Moo-Young, M. ; Chem. Eng. , 1961, 16, 39. 17. , AICh 18. Levins, D. , ; Gastonbury, J. ; Chem. Eng. , 1972, 27, 537. 19. ; Johnson, A. ; Can. J. Chem. , 1962, 40, 231. 20. Mathews, A. D. Thesis, University of Michigan, Ann Arbor, Michigan, 1975.
Thesis, University of Michigan, Ann Arbor, Michigan, 1975. 21. Brent, R. ; "Algorithm for Finding Zeros and Extrema of a Function Without Calculating Derivatives," Stanford Uni versity Technical Report CS-198, Stanford, California, 1971. 22. Weber, W. J . ; Morris, J. ; ASCE, J. Sanit. Eng. , 1964, SA3, 79. 23. Hiester, Ν. ; Chem. Eng. , 1952, 48, 505. 24. Keinath, T. ; Weber, W. ; "A Mathematical Model for Prediction of Concentration-Time Profiles for Design of Fluid-Bed Adsorbers," Tech. , Res.
M. and Gibbons, R. , Trans. , 1963, 59, 2569. 18. Breck, D. , 1974. RECEIVED April 24, 1980. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1980. 2 Mathematical Modeling of Adsorption in Multicomponent Systems ALEXANDER P. MATHEWS Department of Civil Engineering, Kansas State University, Manhatten, KS 66506 WALTER J. WEBER, JR. College of Engineering, The University of Michigan, Ann Arbor, MI 48104 Adsorption is an importan proces proces sing, air pollution control, and water and wastewater treatment.
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