Phenanthrene catalytic cracking in supercritical water: effect of the reaction medium on NiMo/SiO2 catalysts
Author:
Funder
UNIHEAT project
Skolkovo Foundation
BP
Publisher
Elsevier BV
Subject
General Chemistry,Catalysis
Reference52 articles.
1. World Energy Council, World Energy Counc. 2013 World Energy Resour. A Summ. 2013. https://www.worldenergy.org/. (Accessed 14 September 2017).
2. Investigating the process of heavy crude oil steam cracking in the presence of dispersed catalysts. II: investigating the effect of Ni-containing catalyst concentration on the yield and properties of products;Eletskii;Catal. Ind.,2016
3. Recovery of useful lighter fuels from petroleum residual oil by oxidative cracking with steam using iron oxide catalyst;Funai;Chem. Eng. Sci.,2010
4. J. Carrazza, P. Pereira, N. Martinez, Process and catalyst for upgrading heavy hydrocarbon US Patent 568 8395 1997.
5. Amelioration of catalytic activity in steam catalytic cracking of vacuum residue with ZrO2-impregnated macro-mesoporous red mud;Nguyen-Huy;Fuel,2016
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