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Applied Energy, ISSN 0306-2619, 12/2016, Volume 184, pp. 1004 - 1015
With the increasing pressure on reducing carbon dioxide (CO ) emissions in China, petroleum refining and coking industry (PRCI), one of the largest CO emitters... 
Petroleum refining and coking industry | Driving factors | CO | emissions | China | LMDI method | GHG EMISSIONS | EMPIRICAL-ANALYSIS | DETERMINANTS | ENERGY & FUELS | INTENSITY | ENERGY-CONSUMPTION | POLICIES | CARBON-DIOXIDE EMISSIONS | ENGINEERING, CHEMICAL | REDUCTION | CO2 emissions | INCOME | DECOMPOSITION ANALYSIS
Journal Article
Energy & Fuels, ISSN 0887-0624, 06/2016, Volume 30, Issue 6, pp. 4596 - 4608
Solvent deasphalting of the bottom of vacuum distillation columns (vacuum residue, VR) is a process practiced worldwide. In Northern Alberta, a solvent... 
OXIDATION | ENGINEERING, CHEMICAL | PETROLEUM | MOLECULAR-STRUCTURE | ENERGY & FUELS | COAL | DISSOLVED ORGANIC-MATTER | DELAYED COKING | CRUDE-OIL | HUMIC SUBSTANCES | GPC FRACTIONS | ATHABASCA VACUUM RESIDUE
Journal Article
Journal of Catalysis, ISSN 0021-9517, 08/2015, Volume 330, pp. 261 - 272
The effects of H 2 concentration on the performance of a three-layer bed of Mo/HZSM-5 catalyst in nonoxidative methane dehydroaromatization at 1073 K and the... 
Methane dehydroaromatization | H 2 addition | Coking pathways | Mo/HZSM-5 | Coke distribution | BENZENE | CONVERSION | BEHAVIOR | CHEMISTRY, PHYSICAL | NONOXIDATIVE CONDITIONS | CATALYTIC PERFORMANCE | ENGINEERING, CHEMICAL | ACID SITES | DEHYDROAROMATIZATION | DEHYDRO-AROMATIZATION | ZEOLITE CATALYSTS | H-2 addition | DEACTIVATION
Journal Article
Applied Catalysis A: General, ISSN 0926-860X, 07/2014, Volume 482, pp. 387 - 396
Experimental investigation on the lifetime performance and coking behavior of a 6 wt% Mo/HZSM-5 catalyst in the non-oxidative methane dehydroaromatization was... 
Methane dehydroaromatization | Coking pathways | Mo/HZSM-5 | Coke distribution | Coke type | CARBONACEOUS DEPOSITS | MO-BASED CATALYSTS | CHEMISTRY, PHYSICAL | HIGHLY STABLE PERFORMANCE | CH4 DEHYDROAROMATIZATION | CH4-H-2 SWITCHING OPERATION | ENVIRONMENTAL SCIENCES | ACID SITES | MO/MCM-22 CATALYSTS | DEHYDRO-AROMATIZATION | ZEOLITE CATALYSTS | MEMBRANE REACTORS
Journal Article
Applied Energy, ISSN 0306-2619, 12/2016, Volume 184, pp. 1004 - 1015
•We conduct decomposition and scenario analyses on the CO2 emissions of China’s PRCI.•We decompose CO2 emissions change into five factors and compare their... 
Petroleum refining and coking industry | Driving factors | CO2 emissions | China | LMDI method
Journal Article
Journal of Catalysis, ISSN 0021-9517, 10/2015, Volume 330, pp. 261 - 272
[Display omitted] •Nonuniform coke distribution forms in a multilayer bed of Mo/HZSM-5 in MDA.•Absolute coke content decreases from its inlet to its outlet... 
H2 addition | Methane dehydroaromatization | Coking pathways | Mo/HZSM-5 | Coke distribution
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 07/2014, Volume 482, pp. 387 - 396
•Investigation on the lifetime performance and coking behavior of Mo/HZSM-5 catalyst.•Three stages catalyst deactivation with rapid decrease in benzene... 
Methane dehydroaromatization | Coking pathways | Mo/HZSM-5 | Coke type | Coke distribution | Methane | Pathways | Catalysts | Coke | Benzene | Exploration | Formations | X-ray photoelectron spectroscopy
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 2007, Volume 316, Issue 1, pp. 90 - 99
During the catalytic pyrolysis of C 2H 6, the radicals that formed on the nickel mesh catalyst surface easily desorb at high gas flow rates. The desorption of... 
Mesh catalyst | Pyrolysis | Coke formation | Nickel | Radical | Ethane | mesh catalyst | nickel | radical | CHEMISTRY, PHYSICAL | OXIDE CATALYSTS | coke formation | INDUCTION PERIOD | PHASE CHAIN-REACTION | ENVIRONMENTAL SCIENCES | pyrolysis | ethane | LIGHT ALKANES | METHANE | KINETICS | CARBON NANOFIBERS | GAS-PHASE | OXIDATIVE DEHYDROGENATION | METAL-SURFACES | Soft drink industry | Carbonated beverages | Radicals (Chemistry)
Journal Article
Journal Article
Fuel, ISSN 0016-2361, 11/2018, Volume 232, p. 632
Understanding the pyrolysis mechanism of lignin is of great importance for improvement of thermochemical conversion processes and upgrading of biofuels. In... 
Coking | Lignin | Pyrolysis | Atmospheric pressure | Quantum chemistry | Alkenes | Isomerization | Alkanes | Catechol | Organic chemistry | Pathways | Photoionization | Dehydrogenation | Cleavage | Dienes | Mass spectrometry | Alkynes
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 12/2017, Volume 329, pp. 35 - 44
•MTO kinetics in fluidized bed reactor and fixed bed reactor was experimentally studied.•Coke deposition profile leads to different performances in fixed bed... 
MTO | Kinetics | SAPO-34 | Coke deposition | PATHWAYS | LIGHT OLEFINS | HYDROCARBONS | DEPOSITION | ENGINEERING, CHEMICAL | COKING | METHANOL CONVERSION | ENGINEERING, ENVIRONMENTAL | COKE FORMATION | SELECTIVITY | DEACTIVATION | Comparative analysis | Yuan (China) | Olefins
Journal Article
Energy & Fuels, ISSN 0887-0624, 08/2011, Volume 25, Issue 8, pp. 3581 - 3589
Thin film pyrolysis was used to thermally crack asphaltene molecules into their constituent building blocks at 500 °C. By using a thin film of liquid of ca. 20... 
Fossil Fuels | ENGINEERING, CHEMICAL | COKING | ATHABASCA ASPHALTENE | PETROLEUM | MOLECULAR-STRUCTURE | ENERGY & FUELS | MASS-TRANSFER | REACTION PATHWAYS | WEIGHT | THERMAL-CRACKING | IONIZATION | RESINS | Paraffins | Thin films | Pyrolysis | Liquids | Asphaltenes | Simulation | Gas streams | Condensing | Recovery
Journal Article
Energy & Fuels, ISSN 0887-0624, 04/2013, Volume 27, Issue 4, pp. 1817 - 1829
The chemical building blocks that comprise petroleum asphaltene molecules were determined by thermal cracking of samples under conditions that minimized... 
ENGINEERING, CHEMICAL | COKING | FRACTIONS | ATHABASCA ASPHALTENE | PETROLEUM | MOLECULAR-STRUCTURE | ENERGY & FUELS | RESOLUTION MASS-SPECTROMETRY | MODEL | PYROLYSIS | REACTION PATHWAYS | CATALYSTS | Residues | Asphaltenes | Fracture mechanics | Crude oil | Coke | Distillates | Asphalts | Hydrogenation
Journal Article
Fuel, ISSN 0016-2361, 11/2017, Volume 208, pp. 10 - 19
•Reaction of a heavy oil is studied in sealed capillaries at 250–500°C.•Mass and radical concentration of two types of cokes are quantified.•The temperatures... 
Coking | Chlorobenzene insoluble | Toluene insoluble | Heavy oil | Radicals | ELECTRON-SPIN-RESONANCE | ASPHALTENE REACTION PATHWAYS | AMERICAN COALS | HYDROCARBONS | PETROLEUM | CRACKING | ENERGY & FUELS | PYROLYSIS TARS | STRUCTURAL-CHARACTERIZATION | ENGINEERING, CHEMICAL | CARBONIZATION | COKE FORMATION | Activation energy | Free radicals (Chemistry)
Journal Article
19.