The microstructure of porous materials used in heterogeneous catalysis determines the mass transport inside networks, which may vary over many length scales. The theoretical prediction of mass transport phenomena in porous materials, however, is incomplete and is still not completely understood. Therefore, experimental data for every specific porous system is needed. One possible experimental technique for characterizing the mass transport in such pore networks is pulse experiments. The general evaluation of experimental outcomes of these techniques follows the solution of Fick’s second law where an integral and effective diffusion coefficient is recognized. However, a detailed local understanding of diffusion and sorption processes remains...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
Most porous media (just like catalyst pellets) have complicated pore structures, and understanding...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
WOS:000368434600025International audienceTransfers through porous materials where the driving force ...
WOS:000368434600025International audienceTransfers through porous materials where the driving force ...
We review and generalize a recent theoretical framework that provides a sound physicochemical basis ...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
In this paper, we developed a pore network model of multi-component mass transport in porous solids....
Small scale particles/pores from micrometers and down to nanometers often occur in multi-functional ...
Nanoporous solids are ubiquitous in chemical, energy, and environmental processes, where controlled ...
Diffusion is an omnipresent, most fundamental phenomenon in nature and thus critical for the perform...
In applications such as heterogeneous catalysis and drying, intraparticle transport resistances can ...
In applications such as heterogeneous catalysis and drying, intraparticle transport resistances can ...
The increased production of unconventional hydrocarbons emphasizes the need of understanding the tra...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
Most porous media (just like catalyst pellets) have complicated pore structures, and understanding...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
WOS:000368434600025International audienceTransfers through porous materials where the driving force ...
WOS:000368434600025International audienceTransfers through porous materials where the driving force ...
We review and generalize a recent theoretical framework that provides a sound physicochemical basis ...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
In this paper, we developed a pore network model of multi-component mass transport in porous solids....
Small scale particles/pores from micrometers and down to nanometers often occur in multi-functional ...
Nanoporous solids are ubiquitous in chemical, energy, and environmental processes, where controlled ...
Diffusion is an omnipresent, most fundamental phenomenon in nature and thus critical for the perform...
In applications such as heterogeneous catalysis and drying, intraparticle transport resistances can ...
In applications such as heterogeneous catalysis and drying, intraparticle transport resistances can ...
The increased production of unconventional hydrocarbons emphasizes the need of understanding the tra...
Determining structure-transport relationships is critical to optimising the activity and selectivity...
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
Most porous media (just like catalyst pellets) have complicated pore structures, and understanding...