Fluid transport in nanoporous materials [electronic resource] / edited by Wm. Curtis Conner and Jacques Fraissard.

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Bibliographic Details
Online Access: Full Text (via Springer)
Corporate Authors: NATO Advanced Study Institute on Fluid Transport in Nanoporous Materials La Colle-sur-Loup, France, North Atlantic Treaty Organization. Public Diplomacy Division
Other Authors: Conner, Wm. Curtis, Fraissard, Jacques P., 1934-
Format: Electronic Conference Proceeding eBook
Language:English
Published: Dordrecht, the Netherlands : Springer in cooperation with NATO Public Diplomacy Division, ©2006.
Series:NATO science series. Mathematics, physics, and chemistry ; v. 219.
Subjects:
Table of Contents:
  • Cover
  • Table Of Contents
  • Preface
  • Nato-asi fluid transport in nanoporous materials course ... a student's perspective and explanations from a veteran
  • Transport in microporous solids: an historical perpective Part I: Fundamental Principles and Sorption Kinetics
  • Measurement of diffusion in macromolecular systems: solute diffusion polymers systems
  • Role of diffusion in applications of novel nanoporous materials and in novel uses of traditional materials
  • Modeling jump diffusion in zeolites. I. Principles and methods
  • Adsorption, thermodynamics and molecular simulations of cyclic hydrocarbons in silicalite-1 and alpo[sub(4)]-5 zeolites
  • Transport in microporous solids Part II: Measurement of micropore diffusivities
  • Structure-related anomalous diffusion in zeolites
  • The contribution of surface diffusion to transport in nanoporous solids
  • The Maxwell-Stefan formulation of diffusion in zeolites
  • Sensitivity and resolution in magnetic resonance imaging of diffusive materials
  • Restricted diffusion and molecular exchange processes in porous media as studied by pulsed field gradient NMR
  • Vibrational spectroscopy to monitor synthesis, adsorption and diffusion in micro- and mesoporous metal phosphates
  • Nitrogen
  • oxygen diffusion in zeolites studied by drift
  • 129Xe NMR for diffusion of hydrocarbons in zeolites and 1H NMR imaging for competitive diffusion of binary mixtures of hydrocarbons in zeolites
  • Diffusion in zeolites measured by neutron scattering techniques
  • NMR imaging as a tool for studying mass transport in porous materials
  • PFG NMR diffusion studies of nanoporous materials
  • Diffusion of cyclic hydrocarbons in zeolites by frequency-response and molecular simulation methods
  • Surface diffusion of liquids in disordered nanopores and materials: a field cycling relaxometry approach
  • New trends on membrane science
  • The ionic and molecular transport in polymeric and biological membranes on magnetic resonance data
  • Molecular modeling: A complement to experimenmt in material research for non cryogenic gas separation technologies
  • Modeling jump diffusion in zeolites. Part II: Applications
  • Posters Communications
  • Dynamics of water sorption on composites "cacl2 in silica": single grain, granulated bed, consolidated layer
  • Effect of carbonaceous compounds on diffusion of alkanes in 5A zeolite
  • Application of interference and IR microscopy for studies of intracrystalline molecular transport in AFI type zeolites
  • Coal characterization for carbon dioxide sequestration purposes
  • Effect of the intrawall microporosity on the diffusion characterization of bi-porous SBA-15 materials
  • Structure of a single-species-fluid in a spherical pore
  • Carbon molecular sieve membranes: Characterisation and application to xenon recycling
  • An experimental study of the state of hexane in a confined geometry
  • A model for sound propagation in the presence of microporous solids
  • Mathematical modelling and research for diffusion processes in multilayer and nanoporous media
  • Neuronal network used for investigation of water in polymer gels
  • Dependence of self-diffusion coefficient on geometrical parameters of porous media
  • Index
  • Last Page.