Catalyst deactivation involves a complex interplay of processes taking place at different length and time scales. Understanding this phenomenon is one of the grand challenges in solid catalyst characterization. A process contributing to deactivation is carbon deposition (i. e., coking), which reduces catalyst activity by limiting diffusion and blocking active sites. However, characterizing coke formation and its effects remains challenging as it involves both the organic and inorganic phase of the catalytic process and length scales from the atomic scale to the scale of the catalyst body. Here we present a combination of hard X-ray imaging techniques able to visualize in 3-D the distribution, effect and nature of carbon deposits in the macr...
During use, carbonaceous material or ‘coke’ can deposit on catalysts resulting in decreased activity...
Catalyst deactivation by coke deposition has a direct impact on the economic viability of heavy hydr...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...
Catalyst deactivation involves a complex interplay of processes taking place at different length and...
Understanding catalyst deactivation by coking is crucial for knowledge-based catalyst and process de...
Understanding catalyst deactivation by coking is crucial for knowledge-based catalyst and process de...
Fluid catalytic cracking (FCC) particles account for 40 to 45% of worldwide gasoline production. The...
Accumulation of carbonaceous deposits (also known industrially as “coke”) on catalytic active sites ...
Fluid Catalytic Cracking (FCC) catalyst particles are complex, hierarchical, multi-component systems...
Artificially mimicking aging of an equilibrium catalyst (ECAT) is an effective strategy to model the...
Fluid Catalytic Cracking (FCC) catalyst particles are complex, hierarchical, multi-component systems...
Understanding Fe deposition in fluid catalytic cracking (FCC) catalysis is critical for the mitigati...
ABSTRACT: Full-field transmission X-ray microscopy has been used to determine the 3D structure of a ...
Full-field transmission X-ray microscopy has been used to determine the 3D structure of a whole indi...
The switch from a carbon-based to a hydrogen-based economy requires environmentally friendly methods...
During use, carbonaceous material or ‘coke’ can deposit on catalysts resulting in decreased activity...
Catalyst deactivation by coke deposition has a direct impact on the economic viability of heavy hydr...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...
Catalyst deactivation involves a complex interplay of processes taking place at different length and...
Understanding catalyst deactivation by coking is crucial for knowledge-based catalyst and process de...
Understanding catalyst deactivation by coking is crucial for knowledge-based catalyst and process de...
Fluid catalytic cracking (FCC) particles account for 40 to 45% of worldwide gasoline production. The...
Accumulation of carbonaceous deposits (also known industrially as “coke”) on catalytic active sites ...
Fluid Catalytic Cracking (FCC) catalyst particles are complex, hierarchical, multi-component systems...
Artificially mimicking aging of an equilibrium catalyst (ECAT) is an effective strategy to model the...
Fluid Catalytic Cracking (FCC) catalyst particles are complex, hierarchical, multi-component systems...
Understanding Fe deposition in fluid catalytic cracking (FCC) catalysis is critical for the mitigati...
ABSTRACT: Full-field transmission X-ray microscopy has been used to determine the 3D structure of a ...
Full-field transmission X-ray microscopy has been used to determine the 3D structure of a whole indi...
The switch from a carbon-based to a hydrogen-based economy requires environmentally friendly methods...
During use, carbonaceous material or ‘coke’ can deposit on catalysts resulting in decreased activity...
Catalyst deactivation by coke deposition has a direct impact on the economic viability of heavy hydr...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...