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co-hydroprocessing (18) 18
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Canadian Journal of Chemical Engineering, ISSN 0008-4034, 06/2015, Volume 93, Issue 6, pp. 1017 - 1023
Journal Article
Catalysis Today, ISSN 0920-5861, 2019
Supported and unsupported (with or without Co and Ni promotors) MoS -based catalysts were prepared using conventional incipient wetness impregnation method on... 
Diesel | Hydrodeoxygenation | Co-hydroprocessing | Oleic acid | Bulk MoS | Unsupported catalysts
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 12/2017, Volume 80, pp. 1072 - 1088
Journal Article
The Canadian Journal of Chemical Engineering, ISSN 0008-4034, 06/2015, Volume 93, Issue 6, pp. 1017 - 1023
The aim of this study is to investigate the effect of CO2 on catalytic hydrotreatement of gas‐oil to evaluate the potential of catalytic co‐ hydroprocessing of... 
hydrodeoxygenation | WGS | decarbonylation | decarboxylation | co‐hydroprocessing | ENGINEERING, CHEMICAL | FUEL | co-hydroprocessing
Journal Article
Fuel Processing Technology, ISSN 0378-3820, 04/2016, Volume 144, pp. 20 - 26
During co-hydroprocessing of petroleum fractions with liquid biomass, carbon monoxide (CO), carbon dioxide (CO2) and water (H2O) constitute some of the main... 
Water | Methanation | WGS | Carbon monoxide | Co-hydroprocessing | Gas-oil | TRANSFORMATION | WASTE COOKING OIL | QUALITY | ENERGY & FUELS | MIXTURES | ENGINEERING, CHEMICAL | HYDRODEOXYGENATION | BIOMASS | OLEFINS | AROMATICS | CHEMISTRY, APPLIED | FUELS
Journal Article
JOURNAL OF CLEANER PRODUCTION, ISSN 0959-6526, 09/2016, Volume 131, pp. 321 - 326
Co-hydroprocessing of petroleum fractions with residual lipids is a promising technology for hybrid fuels production. The aim of this study is the... 
Waste cooking oil | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | STABILITY | Biofuel | CATALYST | Co-hydroprocessing | MIXTURES | FRACTION | ENVIRONMENTAL SCIENCES | TEMPERATURE | ENGINEERING, ENVIRONMENTAL | BIODIESEL | Hybrid fuel | FUELS
Journal Article
Fuel, ISSN 0016-2361, 02/2018, Volume 214, pp. 165 - 173
[Display omitted] This work study the catalytic co-hydroprocessing of used frying oil (UFO) with atmospheric gas oil (AGO), paying particular attention to the... 
Atmospheric gas oil | Hydrodenitrogenation | Co-hydroprocessing | Use frying oil | Hydrodesulfurization | Product properties | WASTE COOKING OIL | ENERGY & FUELS | VEGETABLE-OIL | MIXTURES | ENGINEERING, CHEMICAL | DIESEL | BIODIESEL | FEEDSTOCKS | Sulfur compounds | Usage
Journal Article
Journal of Cleaner Production, ISSN 0959-6526, 09/2016, Volume 131, pp. 321 - 326
Co-hydroprocessing of petroleum fractions with residual lipids is a promising technology for hybrid fuels production. The aim of this study is the... 
Waste cooking oil | Biofuel | Co-hydroprocessing | Hybrid fuel
Journal Article
Catalysis Today, ISSN 0920-5861, 09/2017, Volume 292, pp. 110 - 120
[Display omitted] •Co(Ni)-PMo catalysts supported on C-coated Al2O3 were prepared.•Sunflower oil acts on conversion of SRGO depending on the catalyst... 
Alumina-activated carbon | Vegetable oil | NiMoS | Co-hydroprocessing | Catalyst deactivation | CoMoS | WASTE COOKING OIL | SULFIDE CATALYSTS | HYDRODESULFURIZATION | ACTIVE PHASE | CHEMISTRY, PHYSICAL | DIESEL FRACTION | VEGETABLE-OIL | HYD REACTIONS | ENGINEERING, CHEMICAL | HDS CATALYSTS | COBALT CITRATE | CHEMISTRY, APPLIED | NIMO-SULFIDE
Journal Article
Fuel, ISSN 0016-2361, 11/2014, Volume 136, pp. 366 - 373
This study focuses on evaluating the effect of residual lipid co-hydroprocessing with a heavy petroleum fraction, towards the production of a hybrid diesel... 
Lipids | Biofuel | Co-hydroprocessing | Hybrid fuel | Decarbonization | WASTE COOKING OIL | QUALITY | ENERGY & FUELS | VEGETABLE-OIL | BLENDS | MIXTURES | BIOFUELS | ENGINEERING, CHEMICAL | HYDRODEOXYGENATION | KINETICS | BIOMASS | BIODIESEL | Biomass energy
Journal Article
Fuel, ISSN 0016-2361, 01/2014, Volume 116, pp. 49 - 55
[Display omitted] •Gas oil HDS on a NiMo/Al2O3 catalyst was not affected by the vegetable oil presence.•Gaseous and liquid phase analysis showed the same... 
Biuofuels | Co-hydroprocessing | Green diesel | Gas oil–vegetable oil | Gas oil-vegetable oil | ENGINEERING, CHEMICAL | SULFIDED NIMO/GAMMA-AL2O3 | VEGETABLE-OILS | HYDRODEOXYGENATION | DIESEL | ENERGY & FUELS | HDS | ESTERS
Journal Article
Applied Catalysis B, Environmental, ISSN 0926-3373, 2011, Volume 104, Issue 3, pp. 324 - 329
Journal Article
Catalysis Today, ISSN 0920-5861, 10/2014, Volume 234, pp. 192 - 199
•It was obtained a fuel rich in paraffins which can be used to improve cetane number.•It was known the behavior of decarboxylation and decarbonylation... 
Sustainable hydrocarbons | Decarbonylation | Kinetic modeling | Co-hydroprocessing | Jatropha oil | Decarboxylation | CHEMISTRY, PHYSICAL | FATTY-ACIDS | CATALYTIC DEOXYGENATION | ENGINEERING, CHEMICAL | OIL | REACTOR | HYDROCRACKING | DIESEL | STEARATE | CHEMISTRY, APPLIED | Models | Vegetables
Journal Article
International Journal of Global Warming, ISSN 1758-2083, 2017, Volume 13, Issue 3-4, pp. 473 - 487
Journal Article
Materials Today: Proceedings, ISSN 2214-7853, 2018, Volume 5, Issue 14, pp. 27369 - 27376
Co-hydroprocessing of Light Cycle Oil (LCO) with Waste Cooking Oil (WCO) was investigated as a means to improve the properties of LCO. Generally, LCO is a... 
Co-hydroprocessing | Light Cycle Oil | Waste Cooking Oil
Journal Article
by Yan, JS and Wang, HY and Zhang, JR and Xu, HJ
ACTA PHYSICO-CHIMICA SINICA, ISSN 1000-6818, 07/2014, Volume 30, Issue 7, pp. 1309 - 1317
TiO2-Al2O3 composite supports were prepared by in situ sol-gel and co-precipitation methods, and the supported nickel phosphide catalysts were prepared by... 
Composite support | PARTICLES | MECHANISM | Co-precipitation method | Sol-gel method | DIBENZOTHIOPHENE | CHEMISTRY, PHYSICAL | Titania | HYDROPROCESSING CATALYSTS | Nickel phosphide | QUINOLINE | Hydrodenitrogenation | NICKEL PHOSPHIDE CATALYSTS | SURFACE | Alumina | THIOPHENE HYDRODESULFURIZATION
Journal Article
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