Structured Catalysts of Biofuels Steam/Autothermal Reforming on Functionally Graded Substrates Based on Carbon Foam: Design and Performance Conference Abstracts
| Conference | 
                                    The 8th Tokyo Conference on Advanced Catalytic Science and Technology 05-10 Aug 2018 , Токио  | 
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| Source | The 8th Tokyo Conference on Advanced Catalytic Science and Technology Compilation, 2018.  | 
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| Output data | Year: 2018, Article number : OF509, Pages count : 2 | ||||||
| Tags | Biofuels reforming, foam substrates, structured catalysts. | ||||||
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Funding (1)
| 1 | The Ministry of Education and Science of the Russian Federation | 
                            Abstract:
                            For structured catalysts of biofuels reforming new types of inexpensive functionally graded substrates with a high thermal conductivity and thermochemical stability comprised of amorphous carbon foams with protective Ni, Ni-Al and NiAl2O4/corundum layers were designed. Procedures for supporting nanocomposite active components (Ni+Ru)/CaTiO3/10%Mg-Al2O3 and PrNi0.95Ru0.05O3 /10%Mg-Al2O3 on these substrates providing uniform spatial distribution were elaborated. These structured catalysts have a high and stable performance in reactions of steam and autothermal reforming of biofuels (ethanol, ethyl acetate, etc) in real feeds without coking and thermochemical degradation.
                        
                    
                
                        Cite:
                                Sadykov V.
    ,        Pavlova S.
    ,        Bespalko Y.
    ,        Arapova M.
    ,        Salanov A.
    ,        Smorygo O.
    ,        Mikutski V.
    
Structured Catalysts of Biofuels Steam/Autothermal Reforming on Functionally Graded Substrates Based on Carbon Foam: Design and Performance
In compilation The 8th Tokyo Conference on Advanced Catalytic Science and Technology. 2018.
                    
                    
                    
                    Structured Catalysts of Biofuels Steam/Autothermal Reforming on Functionally Graded Substrates Based on Carbon Foam: Design and Performance
In compilation The 8th Tokyo Conference on Advanced Catalytic Science and Technology. 2018.
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