By Chang-Ha Lee
A presentation of analysis on adsorption technology and know-how. It serves as a reference for study in parts comparable to basics of adsorption and ion trade (equilibria and kinetics), new fabrics, adsorption characterization, novel techniques, strength and environmental methods. The papers are taken from the 3rd Pacific Basin convention on Adsorption technological know-how and know-how, held in Korea in 2003.
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Additional resources for Adsorption Science and Technology: Proceedings of the 3rd Pacific Basin Conference Kyongju, Korea May 25-29 2003
Richard, Zeolites ll,647-653(1991). 33. L. C. Rees, Microporous and Mesoporous Materials 35-36 301-314 (2000). 34. D. L. W. Conner, AIChE Jl. a,68-86(1996). 35. L. Gorring, J. C a t a l s , 13 (1973). 36. E. Lehmann, C. Chmelik, H. Scheidt, S. Vasenkov, B. Staudte, J. Kgrger, F. Kuemer, G. Zadvozna and J. Kornatowski, J. Am. Chem. - in press. 23 c Fig. 1. Schematic diagram of system for vapor phase ZLC or tracer ZLC measurements. 01 0 2 6 4 8 10 12 t (9 Fig. 2. ZLC response curves for C G h m a piece of carbon monolith at 303K.
E. Gubbins, MeltingRreezing Behavior of a Fluid Confined in Porous Glasses and MCM-41: Dielectric Spectroscopyand Molecular Simulation, J. Phys. 114 (2001) pp. 950-962 [ I i 1 M. Sliwinska-Bartkowiak,G. Dudziak, R. Sikorski, R. E. Gubbins and R. Radhakrishnan, Dielectric Studies of Freezing Behavior in Porous Materials: Water and Methanol in Activated Carbon Fibers, Phys. Chem. Chem. Phys. 3 (2001) pp. 1 179-1184 [*'] M. Sliwinska-Bartkowiak,R. E. Gubbins, Effect of Confinement on Melting in Slit-Shaped Pores: Experimental and Simulation Study of Aniline in Activated Carbon Fibers, Mol.
The pore diameters are uniform and tailorable, typically, in the range between 2 and 10 nm. These carbons show many new possibilities for applications to adsorbents, catalysts and electrode materials. Particularly for adsorption studies, it is expected that the well-defined mesoporous structures would be also useful as a reference pore system for the development of characterization methods and theoretical modeling for the adsorption on carbon surfaces. 1 INTRODUCTION The microporous (pore diameters less than 2 nm) and mesoporous (2-50 nm) carbons are widely used in many areas of modem science and technology, including water and air purification, gas separation, catalysts preparation, chromatography, fuel storage, and manufacturing of electrochemical devices [ 1,2].
Adsorption Science and Technology: Proceedings of the 3rd Pacific Basin Conference Kyongju, Korea May 25-29 2003 by Chang-Ha Lee