n-Dodecane steam reforming over Ni catalysts supported on ZrO2–KNbO3
Autor: | Sungtae Park, Yong Sik Chung, Jong Shik Chung, Won Bae Kim, Seongmin Park, Jae Gi Sung, Tae-Wook Kim, Hwan Kim, Han Kyu Jung |
---|---|
Rok vydání: | 2020 |
Předmět: |
Alkane
chemistry.chemical_classification Materials science Renewable Energy Sustainability and the Environment Oxide Energy Engineering and Power Technology 02 engineering and technology 010402 general chemistry 021001 nanoscience & nanotechnology 01 natural sciences 0104 chemical sciences Catalysis Steam reforming chemistry.chemical_compound Hydrocarbon Chemical engineering chemistry Thermal stability Electrical and Electronic Engineering Physical and Theoretical Chemistry 0210 nano-technology Hydrogen production Space velocity |
Zdroj: | Journal of Power Sources. 479:228834 |
ISSN: | 0378-7753 |
DOI: | 10.1016/j.jpowsour.2020.228834 |
Popis: | Coke-resistant Ni catalyst supports are evaluated for steam reforming (SR) n-dodecane, the alkane used as a surrogate for diesel fuel in this study. Reactions are conducted at 800 °C for 5 h, with a molar steam-to-carbon ratio of 3.0 and a gas hourly space velocity of 20000 h−1. Thermally stable, coke-resistant supports loaded with 15 wt% Ni are prepared using the following potassium oxides: K2Ti2O5 (KTI), K4Zr5O12 (KZR), KNbO3 (KNB), KTaO3 (KTA), and K2WO4 (KW). Ni/KZR and Ni/KW show the best catalytic performance in the SR reaction due to their moderate-to-strong acidities and lack of porosity, which are necessary features for hydrocarbon cracking. Unfortunately, these catalysts are poorly stable under the defined operating conditions. KNB is the most suitable support due to its excellent thermal stability and coke-resistance; however, it lacks acidity. The acidity of KNB is enhanced by impregnation with ZrO2, which transforms it into an acidic oxide (ZR-KNB). ZR-KNB features high thermal stability and high coke-resistance during the SR of n-dodecane under the applied test conditions. The Ni/ZR-KNB catalyst delivers excellent SR performance with respect to both n-dodecane conversion and hydrogen selectivity. |
Databáze: | OpenAIRE |
Externí odkaz: |