content material: the answer concept modeling of fuel adsorption on zeolites / Arthur W. Woltman and William H. Hartwig --
Mathematical modeling of adsorption in multicomponent structures / Alexander P. Mathews and Walter J. Weber, Jr. --
research of mix 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 --
impact of presorbed water at the sorption of nitrogen via zeolites at ambient temperatures / Donald Peterson --
Selective sorption homes of zeolites / R.M. Dessau --
4 crystal buildings of BaxNa₁₂₂x-A (1[less than or equivalent to] x [less than or equivalent to] 6) on the subject of the instability of barium-exchanged zeolite A towards dehydration / Yang Kim, V. Subramanian, Roger L. Firor, and Karl Seff --
The influence 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 section 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 by means of heatless adsorption / M.D. Whitley and C.E. Hamrin, Jr. / a brand new approach for adsorption separation of fuel streams --
George E. Keller, II and Russell L. Jones.
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Additional info for Adsorption and Ion Exchange with Synthetic Zeolites. Principles and Practice
Can. J. Chem. , 1962, 40, 231. 20. Mathews, A. D. 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.
The equilibrium data for these solutes indicate that phenol and p-toluene sulfonate have similar energies of adsorption (24), as indicated by the constant b i n the component isotherm ( Cryogenic Eng'g. , IPC Science and Technology Press Guildford, Surrey GU2 5AW, England. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1980. 1. WOLTMAN AND HARTWIG Solution Theory Modeling 25 4. Woltman, A. D. Dissertation, The University of Texas at Austin, Austin, Texas, March 1978. 5. Ruthven, D. , Nature, Phys. , 1971, 232(29), 70. 6. , and Shaw, R. , J. , 1975, 52, 386. 7. Derrak, R. , Coughlin, K. , and Ruthven, D. , J . Chem. , Faraday I, 1972, 68, 1947. 8. Hill, T. L .
Adsorption and Ion Exchange with Synthetic Zeolites. Principles and Practice by Flank
Cryogenic Eng'g. , IPC Science and Technology Press Guildford, Surrey GU2 5AW, England. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1980. 1. WOLTMAN AND HARTWIG Solution Theory Modeling 25 4. Woltman, A. D. Dissertation, The University of Texas at Austin, Austin, Texas, March 1978. 5. Ruthven, D. , Nature, Phys. , 1971, 232(29), 70. 6. , and Shaw, R. , J. , 1975, 52, 386. 7. Derrak, R. , Coughlin, K. , and Ruthven, D. , J . Chem. , Faraday I, 1972, 68, 1947. 8. Hill, T. L .