Fundamental understanding of the mass transport of petrochemical and biomass derived molecules in microporous and mesoporous solid catalysts is important for developing the next generation of heterogeneous catalysts for traditional hydrocarbon processing including biomass pyrolysis and upgrading. Hierarchical zeolites with both micropores and mesopores exhibit enhanced mass transport and unique catalytic performance in reactions involving large molecules. However, quantitative description of mass transport in such materials remains elusive, owing to the complicated structure of hierarchical pores and difficulty in the synthesis of the materials with controllable structures. In this work, zero length column chromatography (ZLC) was used to s...
International audienceThe improvement of molecular transport properties of hierarchical H-ZSM-5 obta...
Zeolites are a type of microporous crystalline materials that have been widely used in industrial ap...
SSCI-VIDE+ING+CPG:DLP:ATU:FRM:DFANational audienceIt is well know that the auxiliary network in hier...
Development of microporous materials with hierarchical structures of both micro/mesopores leads to m...
Hierarchical zeolites with micropore lengths on the order of nanometers have been synthesized with t...
Ordered structures such as zeolites play an important role in a myriad of technological applications...
The performance of nanoporous materials during their application in heterogeneous catalysis and mass...
In recent years, hierarchical zeolites are becoming more and more attractive as a solution to the di...
Zeolite nanoparticles have been widely used to overcome diffusion limitations in heterogeneous catal...
Zeolites and related zeolite-analog materials have found major industrial applications as catalysts ...
Mass transport in zeolitic materials has been the object of extensive research in the last several d...
The work presented in this chapter involves comparison of simulation and experimental results for in...
Diffusional mass transport in porous materials is important for shape-selective catalysis and separa...
Micro/meso/macroporous (hierarchical) zeolites show remarkable catalytic performance for reactions i...
ABSTRACT: Diffusional mass transport in porous materials is important for shape-selective catalysis ...
International audienceThe improvement of molecular transport properties of hierarchical H-ZSM-5 obta...
Zeolites are a type of microporous crystalline materials that have been widely used in industrial ap...
SSCI-VIDE+ING+CPG:DLP:ATU:FRM:DFANational audienceIt is well know that the auxiliary network in hier...
Development of microporous materials with hierarchical structures of both micro/mesopores leads to m...
Hierarchical zeolites with micropore lengths on the order of nanometers have been synthesized with t...
Ordered structures such as zeolites play an important role in a myriad of technological applications...
The performance of nanoporous materials during their application in heterogeneous catalysis and mass...
In recent years, hierarchical zeolites are becoming more and more attractive as a solution to the di...
Zeolite nanoparticles have been widely used to overcome diffusion limitations in heterogeneous catal...
Zeolites and related zeolite-analog materials have found major industrial applications as catalysts ...
Mass transport in zeolitic materials has been the object of extensive research in the last several d...
The work presented in this chapter involves comparison of simulation and experimental results for in...
Diffusional mass transport in porous materials is important for shape-selective catalysis and separa...
Micro/meso/macroporous (hierarchical) zeolites show remarkable catalytic performance for reactions i...
ABSTRACT: Diffusional mass transport in porous materials is important for shape-selective catalysis ...
International audienceThe improvement of molecular transport properties of hierarchical H-ZSM-5 obta...
Zeolites are a type of microporous crystalline materials that have been widely used in industrial ap...
SSCI-VIDE+ING+CPG:DLP:ATU:FRM:DFANational audienceIt is well know that the auxiliary network in hier...