Adsorption and diffusion in nanoporous materials from stochastic and process-based reconstruction techniques
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- Type
- article
- Published
- 2002-07-09
- Cited by
- 15
- References
- 48
- OpenAlex
- https://openalex.org/W2013248102
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95496491
Keywords
Knudsen number, Porosity, Nanoporous, Knudsen diffusion, Porous medium
References
- Realistic modeling of the interaction of vapors with densely packed spherical particles: Part I: Vapor absorption—desorption isotherms
- Principles and Applications
- The role of diffusion in catalysis
- Porous media : geometry and transports
- A Geometrical Approach to the Structure Of Liquids
- Realistic modeling of the interaction of vapors with densely packed spherical particles
- Statistical reconstruction of three-dimensional porous media from two-dimensional images
- Sorption and flow of carbon dioxide and some hydrocarbons in a microporous carbon membrane
- Geometrical properties of a random packing of hard spheres
- Packing of Spheres: Packing of Equal Spheres
- Phase Separation by Spinodal Decomposition in Isotropic Systems
- Analysis of Sorption Hysteresis in Mesoporous Solids Using a Pore Network Model
- Gas diffusion in random binary media
- Length scales relating the fluid permeability and electrical conductivity in random two-dimensional model porous media.
- THE SEDIMENT VOLUME IN DILUTE DISPERSIONS OF SPHERICAL PARTICLES
- Percolation theory of vapor adsorption—desorption processes in porous materials
- Temperature dependence of gas adsorption on a mesoporous solid: capillary criticality and hysteresis
- Characterization of Porous Glasses: Simulation Models, Adsorption Isotherms, and the Brunauer−Emmett−Teller Analysis Method
- Measurement of spatial correlation functions using image processing techniques
- GEOMETRICAL AND TRANSPORT PROPERTIES OF RANDOM PACKINGS OF SPHERES AND ASPHERICAL PARTICLES
Cited by
- Nondestructive characterization of nanopore microstructure: Spatially resolved Brunauer–Emmett–Teller isotherms using nuclear magnetic resonance imaging
- Transport and Reaction Characteristics of Reconstructed Polyolefin Particles
- Prediction of gas sorption kinetics for porous media using MRI
- Strategy for predicting effective transport properties of complex porous structures
- Characterisation of porous media by the virtual capillary condensation method
- Percolation models of adsorption–desorption equilibria and kinetics for systems with hysteresis
- Multiscale study for stochastic characterization of shale samples
- Reconstruction of three-dimensional porous media using a single thin section.
- Multiscale and multiresolution modeling of shales and their flow and morphological properties
- Higher-order correlation functions in disordered media: Computational algorithms and application to two-phase heterogeneous materials
- Study on a nitrogen-doped porous carbon from oil sludge for CO2 adsorption
- Estimation and modeling of pressure-dependent gas diffusion coefficient for coal: A fractal theory-based approach
- Adsorption of Hydrogen Sulfide on Activated Carbon Materials Derived from the Solid Fibrous Digestate
- Adsorption of Hydrogen Sulphide on Activated Carbon Materials Derived from the Solid Fibrous Digestate
- Modeling of Transport and Transformation Processes in Porous and Multiphase Bodies
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