Basic Study of Solution-Loss Reaction of Highly Reactive Coke in a CO–CO2 Atmosphere with Catalyst-Supported Graphite
Author:
Affiliation:
1. Technical Development Bureau, Nippon Steel Corporation
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/kakoronbunshu/33/4/33_4_339/_pdf
Reference21 articles.
1. Baker, R. T. K., J. J. Chludzinski, Jr. and R. D. Sherwood; “A Comparison of the Catalytic Influence of Nickel,Iron and Nickel–Iron on the Gasification of Graphite in Various Gaseous Environments,” Carbon, 23, 245–254 (1985)
2. Carzorla-Amoros, D., A. Linares-Solano, C. Salinas-Martinez de Lecea, T. Kyotani, H. Yamashita and A. Tomita; “Carbon Gasification Catalyzed by Calcium: A High Vacuum Temperature Programmed Desorption Study,” Carbon, 30, 995–1000 (1992)
3. Fujita, H., M. Uba and S. Nishida: “Relation between Coke Structure and CO2 Reaction (III) Relation between Ash Compositionof Coke and CO2 Reaction,” J. Fuel Soc. Japan, 61, 301–305 (1982)
4. Hippo, F. and P .L.Walker, Jr; “Reactivity of Heat-treated Coals in Carbon Dioxide at 900°C,” Fuel, 54, 245–248 (1975)
5. Jalan, B. P. and Y. K. Rao; “A Study of the Rates of Catalyzed Boudouard Reaction,” Carbon, 16, 175–184 (1978)
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