Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X‐Ray Imaging

JC Da Silva, K Mader, M Holler, D Haberthür… - …, 2015 - Wiley Online Library
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite‐particle …

[PDF][PDF] Assessment of the 3D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC da Silva, K Mader, M Holler, D Haberthür, A Diaz… - cyberleninka.org
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

[PDF][PDF] Assessment of the 3D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC da Silva, K Mader, M Holler, D Haberthür, A Diaz… - 2015 - researchgate.net
The sample was a composite Fluid Catalytic Cracking (FCC) catalyst formed by metakaolin
(calcined kaolin clay) and zeolite type Y with about 5% La2O3 exchange. They form …

Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging.

JC da Silva, K Mader, M Holler, D Haberthür, A Diaz… - ChemCatChem, 2015 - sonar.ch
English Porosity in catalyst particles is essential because it enables reactants to reach the
active sites and it enables products to leave the catalyst. The engineering of composite …

Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging.

JC da Silva, K Mader, M Holler, D Haberthür… - …, 2015 - search.ebscohost.com
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

Assessment of the 3D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC Da Silva, K Mader, M Holler… - …, 2015 - research-collection.ethz.ch
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

[PDF][PDF] Assessment of the 3D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC da Silva, K Mader, M Holler, D Haberthür, A Diaz… - dora.lib4ri.ch
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC da Silva, K Mader, M Holler… - …, 2015 - pubmed.ncbi.nlm.nih.gov
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

[HTML][HTML] Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging

JC da Silva, K Mader, M Holler, D Haberthür… - …, 2015 - ncbi.nlm.nih.gov
Porosity in catalyst particles is essential because it enables reactants to reach the active
sites and it enables products to leave the catalyst. The engineering of composite-particle …

Assessment of the 3 D Pore Structure and Individual Components of Preshaped Catalyst Bodies by X-Ray Imaging.

JC da Silva, K Mader, M Holler, D Haberthür, A Diaz… - ChemCatChem, 2015 - folia.unifr.ch
English Porosity in catalyst particles is essential because it enables reactants to reach the
active sites and it enables products to leave the catalyst. The engineering of composite …