Bio-oil hydrotreating using Nickel phosphide (cas 11104-08-8)s supported on carbon-covered alumina
-
Add time:07/19/2019 Source:sciencedirect.com
Fast pyrolysis oil is an attractive second-generation bio-fuel. However, due to its high oxygen content, upgrading technologies are necessary to improve the properties of bio-oil. The objective of this work is to evaluate the performance of nickel phosphides supported on carbon-covered alumina (CCA) in hydrotreating of a commercial bio-oil. The effect of two different phosphides phases was investigated. The results showed that the stoichiometry of the nickel phosphide can be controlled by the weight ratio of sucrose/Al2O3 used in the synthesis. Two distinct catalysts can be produced: Ni12P5/CCA-0.7 (weight ratio of 0.7) and the Ni2P/CC-1.4 (weight ratio of 1.4). The performances of these catalysts were compared with a commercial Ru/C. Catalytic evaluation was carried out at 250 °C and 75 bar in a batch reactor and the effect of two-step HDO (150–250 °C) was also investigated. The use of two-step HDO produced bio-oils with higher H/C ratios, indicating a higher occurrence of hydrogenation mechanisms. In addition, more thermally stable bio-oils were generated due to the significant reduction of compounds such as ketones, acid acetic and furfural. Nickel phosphides supported on CCA formulations presented similar performance to commercial Ru/C catalyst in terms of, degree deoxygenation (DOD) and O/C bio-oils ratios.
We also recommend Trading Suppliers and Manufacturers of Nickel phosphide (cas 11104-08-8). Pls Click Website Link as below: cas 11104-08-8 suppliers
Prev:Nanostructured Nickel phosphide (cas 11104-08-8) as an efficient photocatalyst: Effect of phase on physical properties and dye degradation
Next:Hydrodeoxygenation of phenolic compounds to cycloalkanes over supported Nickel phosphide (cas 11104-08-8)s) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- The regulatory effect of polyvinyl pyrrolidone on the microstructure and catalytic activity of Nickel phosphide (cas 11104-08-8)s07/26/2019
- Cobalt-tuned Nickel phosphide (cas 11104-08-8) nanoparticles for highly efficient electrocatalysis07/25/2019
- Facile preparation of large-area self-supported porous Nickel phosphide (cas 11104-08-8) nanosheets for efficient electrocatalytic hydrogen evolution07/24/2019
- Hierarchical zinc–Nickel phosphide (cas 11104-08-8)s nanosheets on 3D nickel foam as self-support electrocatalysts for hydrogen evolution reaction07/23/2019
- Transition metal-doped Nickel phosphide (cas 11104-08-8) nanoparticles as electro- and photocatalysts for hydrogen generation reactions07/22/2019
- Hydrogen evolution reaction catalyzed by nickel/Nickel phosphide (cas 11104-08-8) nanospheres synthesized through electrochemical methods07/20/2019
- Hydrodeoxygenation of phenolic compounds to cycloalkanes over supported Nickel phosphide (cas 11104-08-8)s07/21/2019
- Nanostructured Nickel phosphide (cas 11104-08-8) as an efficient photocatalyst: Effect of phase on physical properties and dye degradation07/18/2019
- In-situ growth of iron/Nickel phosphide (cas 11104-08-8)s hybrid on nickel foam as bifunctional electrocatalyst for overall water splitting07/17/2019
-
Health and Chemical more >
-
Related Products
- Nickel (2+) sulfate
- Nickel 2 - Ethylhexanoate
- Nickel acetylacetonate
- NICKEL ALLOY, BASE, Ni 57–62, Fe 22–28, Cr 14–18, Si 0.8–1.6, Mn 0–1, C 0–0.2
- Nickel alloy, Ni,Be
- Nickel ammonium sulfate (2:2:3)
- Nickel ammonium sulfate hexahydrate
- Nickel arsenide
- Nickel arsenide sulfide
- Nickel bis(dimethyldithiocarbamate)


