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Catalysts, ISSN 2073-4344, 2015, Volume 5, Issue 1, pp. 145 - 269
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 2001, Volume 212, Issue 1, pp. 17 - 60
The literature treating mechanisms of catalyst deactivation is reviewed. Intrinsic mechanisms of catalyst deactivation are many; nevertheless, they can be... 
Catalyst deactivation by: coke and carbon formation, vapor compound formation, vapor-solid and solid-solid reactions, attrition and crushing | Technical knowledge status of: mechanisms of catalyst deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation | Research opportunities and needs: mechanisms of catalyst deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation | Mechanisms of: catalyst deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation | Catalyst: deactivation, degradation, fouling, poisoning, sintering, and mechanical degradation of | research opportunities and needs : mechanisms of catalyst deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation | catalyst : deactivation, degradation, fouling, poisoning, sintering, and mechanical degradation of | and carbon formation, vapor compound formation, vapor-solid and solid-solid reactions, attrition and crushing | SURFACE-AREA | SUPPORTED PALLADIUM | PLATINUM | CHEMISTRY, PHYSICAL | catalyst deactivation by : coke | ATTRITION | ENVIRONMENTAL SCIENCES | NICKEL | CARBON-MONOXIDE | NITRIC-OXIDE | mechanisms of : catalyst, deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation | FLUIDIZED-BED | COKE FORMATION | SULFUR ADSORPTION | technical knowledge status of : mechanisms of catalyst deactivation, fouling, poisoning, sintering, vapor-solid and solid-solid reactions, and mechanical degradation
Journal Article
Catalysts, ISSN 2073-4344, 06/2015, Volume 5, Issue 2, pp. 949 - 954
...  Catalysts 2015, 5, 949-954; doi:10.3390/catal5020949 Editorial Calvin H. Bartholomew * and Morris D. Argyle Chemical Engineering Department, Brigham Young... 
CHEMISTRY, PHYSICAL | TROPSCH SYNTHESIS CATALYSTS | n/a
Journal Article
Microporous and Mesoporous Materials, ISSN 1387-1811, 01/2013, Volume 165, pp. 70 - 78
[Display omitted] ► We synthesize mesoporous γ-aluminas via a one-pot, solvent-deficient method. ► No template or surfactant is added. ► Alumina samples... 
Synthesis | Mesoporous | Pore structure | Alumina | Self-templating | CRYSTALLINE ALUMINA | ROUTE | MATERIALS SCIENCE, MULTIDISCIPLINARY | SIZE | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | MOLECULAR-SIEVES | NONIONIC SURFACTANTS | TRANSITION | MEDIA | CHEMISTRY, APPLIED | GAMMA-AL2O3
Journal Article
Journal of Catalysis, ISSN 0021-9517, 2014, Volume 319, pp. 220 - 231
The effects of support properties including pore size, hydroxyl group concentration, and support stabilizer were investigated for six alumina-supported FeCuK... 
Fischer-Tropsch Synthesis | Hydroxyl group | Iron loading | Pore size | Supported iron | Silica stabilizer | COBALT CATALYSTS | DESIGN | DISPERSION | CHEMISTRY, PHYSICAL | ENGINEERING, CHEMICAL | PRETREATMENT | OLEFINS | SILICA | SELECTIVITY
Journal Article
2006, 2nd ed., ISBN 9780471457138, 966
Catalysis is central to the chemical industry, as it is directly or involved in the production of almost all useful chemical products. In this book the... 
Catalysts | Industrial applications | Catalysis | Chemistry
Book
Microporous and Mesoporous Materials, ISSN 1387-1811, 01/2014, Volume 184, pp. 112 - 121
Journal Article
Microporous and Mesoporous Materials, ISSN 1387-1811, 01/2014, Volume 183, pp. 37 - 47
•Mesoporous gamma aluminas are synthesized via a one-pot, solvent deficient method.•By varying the H2O/Al molar ratio, pore size of the alumina supports can be... 
Hydrolysis | Controlled pore propert | Alumina alkoxides | Mesoporous | TRIBLOCK COPOLYMER | CRYSTALLINE ALUMINA | MESOSTRUCTURED FORMS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | MOLECULAR-SIEVES | CATALYTIC APPLICATIONS | ADSORPTION | BOEHMITE | OXIDE NANOPARTICLES | SURFACTANT | CHEMISTRY, APPLIED | GAMMA-AL2O3
Journal Article
Microporous and Mesoporous Materials, ISSN 1387-1811, 09/2013, Volume 177, pp. 37 - 46
•We synthesize alumina catalysts supports with controlled pore properties.•We control pore properties by varying alcohols used in the gelation of... 
Particle assembly | Alumina alkoxides | Mesoporous | Controlled pore property | Alcohols | PORE-SIZE | SURFACTANT-ASSISTED SYNTHESIS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | ALOOH | NANOSTRUCTURES | ADSORPTION | BOEHMITE | NANOPARTICLES | DEHYDRATION | NITROGEN | CHEMISTRY, APPLIED | GAMMA-AL2O3
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 07/2014, Volume 482, pp. 275 - 286
•CH4 selectivity lower for co-deposited noble metal than for seq-deposited.•Activity: Co/Pt-co>Co/Re-co>Co/Ru-co∼Co≥Co/Pt-seq≥Co/Ru-seq≥Co/Re-seq.•Co... 
Crystallite size | Cobalt catalysis | Cobalt | Catalytic promoters | Fischer–Tropsch synthesis | Deposition order | Fischer-Tropsch synthesis | REDUCTION PROPERTY | Ru | Pt | DISPERSION | CHEMISTRY, PHYSICAL | SUPPORTED METAL-CATALYSTS | L-III EDGES | ADSORPTION | REDUCIBILITY | ENVIRONMENTAL SCIENCES | CO HYDROGENATION | Re | CO/AL2O3 CATALYSTS | XPS | Ruthenium | Reduction | Crystallites | Catalysts | Platinum | Selectivity | Catalysis | Deposition | Standards
Journal Article
Journal of Catalysis, ISSN 0021-9517, 07/2015, Volume 327, pp. 33 - 47
[Display omitted] •Extensive deactivation by carbon data in the absence of other deactivation modes.•Deactivation rate increases with either increasing H2 or... 
Fischer–Tropsch | Cobalt catalyst | Deactivation | Polymeric carbon | H2 and CO partial pressures
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 12/2012, Volume 449, pp. 69 - 80
. [Display omitted] ► Co, Pt, and Re spatially uniform; Ru not. ► No loss of Pt, Re; 50% loss of Ru. ► Bonding in reduced catalyst: Co-Pt, Ru-Ru, Re2O7. ►... 
Fischer–Tropsch | Reducibility | Noble Metal | Cobalt | Fischer-Tropsch | REDUCTION PROPERTY | DISPERSION | CHEMISTRY, PHYSICAL | L-III EDGES | CO/NAY BIMETALLIC CATALYSTS | ENVIRONMENTAL SCIENCES | IN-SITU EXAFS | CO HYDROGENATION | PROMOTION | TPR | CO/AL2O3 CATALYSTS | PARTICLE-SIZE
Journal Article