High Performance of a Structured Ni-Based Catalyst for Autothermal Dry Reforming of Methane
Author:
Affiliation:
1. Graduate School of Science and Technology, Shizuoka University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/53/7/53_20we062/_pdf
Reference38 articles.
1. Abdul Ghani, A., F. Torabi and H. Ibrahim; “Autothermal Reforming Process for Efficient Hydrogen Production from Crude Glycerol Using Nickel Supported Catalyst: Parametric and Statistical Analysis,” Energy, 144, 129–145 (2018)
2. Abdel Karim Aramouni, N., J. Zeaiter, W. Kwapinski and M. N. Ahmad; “Thermodynamic Analysis of Methane Dry Reforming: Effect of the Catalyst Particle Size on Carbon Formation,” Energy Convers. Manage., 150, 614–622 (2017)
3. Alipour, Z., M. Rezaei and F. Meshkani; “Effects of Support Modifiers on the Catalytic Performance of Ni/Al2O3 Catalyst in CO2 Reforming of Methane,” Fuel, 129, 197–203 (2014)
4. Al-Fatesh, A.; “Suppression of Carbon Formation in CH4–CO2 Reforming by Addition of Sr into Bimetallic Ni–Co/γ-Al2O3 catalyst,” Journal of King Saud University–Engineering Science, 27, 101–107 (2015)
5. Arora, S. and R. Prasad; “An Overview on Dry Reforming of Methane: Strategies to Reduce Carbonaceous Deactivation of Catalysts,” RSC Advances, 6, 108668–108688 (2016)
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