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Catalysis Today, ISSN 0920-5861, 2011, Volume 171, Issue 1, pp. 211 - 220
[Display omitted] ► In this study we compare methyl chloride and methanol as hydrocarbon precursors. ► The reactions are carried out over H-SAPO-34 catalysts.... 
Spectroscopy | Methyl chloride to olefins | MeXTO | Reaction mechanism | MTO | Acid catalysis | SAPO-34 | TO-HYDROCARBONS REACTION | SILICALITE CHANNELS | CHEMISTRY, PHYSICAL | CHLOROMETHANE TRANSFORMATION | ENGINEERING, CHEMICAL | POOL MECHANISM | ZEOLITE H-BETA | REACTION-MECHANISM | CO-REACTION | GAS-PHASE | CHEMISTRY, APPLIED | CATALYSTS | Methane | Olefins | Chloromethane | Methanol
Journal Article
工程(英文), ISSN 2095-8099, 2017, Volume 3, Issue 2, pp. 171 - 178
Most olefins (e.g., ethylene and propylene) will continue to be produced through steam cracking (SC) ofhydrocarbons in the coming decade. In an uncertain... 
Methane | Olefin | production | Steam | CO2 | gas | conversionShale | emissions | cracking | Olefin production | CO2 emissions | Steam cracking | Methane conversion | Shale gas | CATALYTIC MATERIALS | CONVERSION | FLUIDIZED-BED REACTOR | METHANOL-TO-HYDROCARBONS | LI-DOPED MGO | NATURAL-GAS | ENGINEERING, MULTIDISCIPLINARY | CARBON-DIOXIDE CAPTURE | TEMPERATURE | FISCHER-TROPSCH PROCESS
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 03/2006, Volume 128, Issue 11, pp. 3508 - 3509
Journal Article
ACS Catalysis, ISSN 2155-5435, 01/2015, Volume 5, Issue 1, pp. 317 - 326
Journal Article
ACS Catalysis, ISSN 2155-5435, 03/2015, Volume 5, Issue 3, pp. 1922 - 1938
The methanol-to-olefins (MTO) reaction is an interesting and important reaction for both fundamental research and industrial application. The Dalian Institute... 
scale-up | DMTO | reaction mechanism | SAPO molecular sieve | methanol to olefins | fluidized bed | FLUIDIZED-BED PROCESSES | TO-HYDROCARBONS | RESEARCH-AND-DEVELOPMENT | HEPTAMETHYLBENZENIUM CATION | CHEMISTRY, PHYSICAL | HYDROCARBON-POOL CHEMISTRY | SAPO MOLECULAR-SIEVES | IN-SITU NMR | CATALYTIC PERFORMANCE | REACTION-MECHANISM | COKE FORMATION
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 05/2016, Volume 55, Issue 19, pp. 5723 - 5726
The elementary reactions leading to the formation of the first carbon–carbon bond during early stages of the zeolite‐catalyzed methanol conversion into... 
olefin | methanol-to-hydrocarbons | zeolites | C−C coupling | carbonylation | C-C coupling | SELECTIVE CARBONYLATION | DIMETHYL ETHER | HZSM-5 | ZEOLITE H-ZSM-5 | SOLID ACIDS | CHEMISTRY, MULTIDISCIPLINARY | ACIDIC ZEOLITES | NMR | MILD CONDITIONS | C-C BOND | CATALYTIC CONVERSION | Methyl ether | Acetic acid | Zeolites | Olefins | Organic acids | Methanol | Chemical bonds | Hydrocarbons | Carbon
Journal Article
Industrial & Engineering Chemistry Research, ISSN 0888-5885, 11/2016, Volume 55, Issue 46, pp. 11887 - 11899
A reactor model for a methanol-to-olefin (MTO) reaction system was constructed by incorporating a filtered drag model, a filtered gas–solid heat-transfer... 
ENGINEERING, CHEMICAL | LIGHT OLEFINS | CONVERSION | 2-FLUID MODELS | HYDRODYNAMICS | COARSE-GRID SIMULATION | MTO | PARTICLE FLOWS | SAPO-34 CATALYST | CFD-SIMULATION | DEACTIVATION
Journal Article
Journal of Catalysis, ISSN 0021-9517, 05/2014, Volume 314, pp. 21 - 31
[Display omitted] •Effect of feed composition was studied under reaction conditions close to industrial MTP process.•Co-feeding aromatics with methanol... 
Hydrocarbon pool | Selectivity | Methanol-to-olefins | Co-feeding | PROPENE | CHEMISTRY, PHYSICAL | HYDROCARBON FORMATION | ENGINEERING, CHEMICAL | CATALYZED METHYLATION REACTIONS | H-ZSM-5 | GAS CONVERSION | REACTION-MECHANISM | ZSM-5 ZEOLITE | ZEOLITE CATALYSTS | SAPO-34 | Olefins | Methanol
Journal Article
Catalysis Science & Technology, ISSN 2044-4753, 08/2014, Volume 4, Issue 9, pp. 3268 - 3277
The mechanism of the methanol to olefin (MTO) reaction over AlPO-18 (without Broensted acid sites) and two SAPO-18 (with different Broensted acid site... 
Catalysts | Methyl alcohol | Olefins | Hydrocarbons | Formations | Catalysis | Pools | Density
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 03/2006, Volume 45, Issue 11, pp. 1714 - 1719
You are the weakest link, goodbye! Many individual steps of the direct mechanisms in the methanol‐to‐olefin process are tied together in an integrated scheme,... 
methanol‐to‐olefin process | ab initio calculations | zeolites | heterogeneous catalysis | CC coupling | C-C coupling | Heterogeneous catalysis | Ab initio calculations | Methanol-to-olefin process | Zeolites | SURFACE METHOXY GROUPS | MECHANISM | HYDROCARBONS | CONVERSION | DIMETHYL ETHER | BOND FORMATION | CHABAZITE | HZSM-5 | CHEMISTRY, MULTIDISCIPLINARY | ACIDIC ZEOLITES
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 09/2012, Volume 437-438, pp. 120 - 130
[Display omitted] ► Four catalysts each of 20–5000nm SAPO-34 and ZSM-5 were prepared. ► The smallest (<150nm) catalysts exhibited poor activity in the MTO... 
Crystallite size | Deactivation | MTO reaction | SAPO-34 | ZSM-5 | HYDROCARBONS | CONVERSION | PERFORMANCE | CHEMISTRY, PHYSICAL | MOLECULAR-SIEVES | H-SAPO-34 | ZEOLITE H-ZSM-5 | LIQUID-PHASE DEGRADATION | ENVIRONMENTAL SCIENCES | SHAPE-SELECTIVITY | Catalysis | Crystallites | Nanocrystals | Catalysts | Coke | Conversion | Zeolites | Deposition
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 05/2019, Volume 44, Issue 23, pp. 11808 - 11816
The performance of K and Fe loaded ZrO species (Fe[sbnd]K/ZrO )for CO hydrogenation was relevant to the concentration of oxygen vacancies due to the... 
m-ZrO | Oxygen vacancies | Light olefins | hydrogenation | t-ZrO | METHANOL SYNTHESIS | ELECTROCHEMISTRY | t-ZrO2 | ENERGY & FUELS | CHEMISTRY, PHYSICAL | ZIRCONIA MORPHOLOGY | H-2 | ZRO2 NANOSTRUCTURES | NANOPARTICLES | DYE | PHASE | PHOTOLUMINESCENCE PROPERTIES | EVOLUTION | REDUCTION | CO2 hydrogenation | m-ZrO2
Journal Article
Catalysis Science and Technology, ISSN 2044-4753, 8/2014, Volume 4, Issue 9, pp. 3268 - 3277
The mechanism of the methanol to olefin (MTO) reaction over AlPO-18 (without Brønsted acid sites) and two SAPO-18 (with different Brønsted acid site densities)... 
TO-HYDROCARBONS | CARBENIUM IONS | CONVERSION | HEPTAMETHYLBENZENIUM CATION | CHEMISTRY, PHYSICAL | BRONSTED ACID SITES | COKE FORMATION | ZEOLITE H-ZSM-5 | SELECTIVITY | CATALYTIC CYCLE | DEACTIVATION
Journal Article