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Fluid Transport in Nanoporous Materials Proceedings of the NATO Advanced Study Institute, held in La Colle sur Loup, France, 16-28 June 2003 /

The last several years have seen a dramatic increase in the synthesis of new nanoporous materials. The most promising include molecular sieves which are being developed as inorganic or polymeric systems with 0. 3-30nm in pore dimensions. These nanoporous solids have a broad spectrum of applications...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor Corporativo: SpringerLink (Online service)
Otros Autores: Conner, Wm. Curtis (Editor ), Fraissard, Jacques (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Dordrecht : Springer Netherlands : Imprint: Springer, 2006.
Edición:1st ed. 2006.
Colección:NATO Science Series II: Mathematics, Physics and Chemistry, Mathematics, Physics and Chemistry ; 219
Temas:
Acceso en línea:Texto Completo
Tabla de Contenidos:
  • 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 IN POLYMERS SYSTEMS
  • THE 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 ALPO4-5 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 EXPERIMENT IN MATERIAL RESEARCH FOR NON CRYOGENIC GAS SEPARATION TECHNOLOGIES
  • MODELING JUMP DIFFUSION IN ZEOLITES: II. APPLICATIONS
  • DYNAMICS OF WATER SORPTION ON COMPOSITES "CaCl2IN 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.