Adsorption and Diffusion

Molecular Sieves - Science and Technology covers, in a comprehensive manner, the science and technology of zeolites and all related microporous and mesoporous materials. Authored by renowned experts, the contributions to this handbook-like series are grouped together topically in such a way that eac...

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Bibliographic Details
Other Authors: Karge, Hellmut G. (Editor), Weitkamp, Jens (Editor)
Format: eBook
Language:English
Published: Berlin, Heidelberg Springer Berlin Heidelberg 2008, 2008
Edition:1st ed. 2008
Series:Molecular Sieves, Science and Technology
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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505 0 |a Fundamentals of Adsorption Equilibrium and Kinetics in Microporous Solids -- Measurement of Diffusion in Microporous Solids by Macroscopic Methods -- Diffusion Measurements by NMR Techniques -- Application of IR Spectroscopy, IR Microscopy, and Optical Interference Microscopy to Diffusion in Zeolites -- Investigation of Diffusion in Molecular Sieves by Neutron Scattering Techniques -- Frequency Response Measurements of Diffusion in Microporous Materials -- Positron Emission Profiling: a Study of Hydrocarbon Diffusivity in MFI Zeolites -- Single-File Diffusion in Zeolites 
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653 |a Condensed Matter Physics 
653 |a Physical Chemistry 
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520 |a Molecular Sieves - Science and Technology covers, in a comprehensive manner, the science and technology of zeolites and all related microporous and mesoporous materials. Authored by renowned experts, the contributions to this handbook-like series are grouped together topically in such a way that each volume deals with a specific sub-field. Volume 7 is treating fundamentals and analyses of adsorption and diffusion in zeolites including single-file diffusion, i.e. phenomena of basic importance, especially with respect to separation processes and catalysis. Various methods of measuring adsorption and diffusion are described and discussed, i.e. techniques such as chromatographic, gravimetric and barometric uptake and desorption, nuclear magnetic resonance, infrared spectroscopy, interference microscopy, neutron scattering, frequency response as well as proton profiling