1 |
Highly dispersed and stable Ni nanoparticles confined by MgO on ZrO2 for CO2 methanation Tan JJ, Wang JM, Zhang ZY, Ma Z, Wang LH, Liu Y Applied Surface Science, 481, 1538, 2019 |
2 |
Surface titration of supported Ni catalysts by O-2-pulse thermal analysis Millet MM, Frei E, Algara-Siller G, Schlogl R, Tarasov A Applied Catalysis A: General, 566, 155, 2018 |
3 |
Fabrication of a regenerable Ni supported NiO-MgO catalyst for methane steam reforming by exsolution Park YS, Kang M, Byeon P, Chung SY, Nakayama T, Ko T, Hwang H Journal of Power Sources, 397, 318, 2018 |
4 |
Insight into the reaction mechanism of CO2 activation for CH4 reforming over NiO-MgO: A combination of DRIFTS and DFT study Jiang SP, Lu Y, Wang SP, Zhao YJ, Ma XB Applied Surface Science, 416, 59, 2017 |
5 |
A combined experimental and computational modeling study on adsorption of propionic acid onto silica-embedded NiO/MgO nanoparticles El-Qanni A, Nassar NN, Vitale G Chemical Engineering Journal, 327, 666, 2017 |
6 |
NiO-MgO Solid Solution Prepared by Sol-Gel Method as Precursor for Ni/MgO Methane Dry Reforming Catalyst: Effect of Calcination Temperature on Catalytic Performance Jafarbegloo M, Tarlani A, Mesbah AW, Muzart J, Sahebdelfar S Catalysis Letters, 146(1), 238, 2016 |
7 |
Dry reforming of methane with carbon dioxide over NiO-MgO-ZrO2 Titus J, Roussiere T, Wasserschaff G, Schunk S, Milanov A, Schwab E, Wagner G, Oeckler O, Glaser R Catalysis Today, 270, 68, 2016 |
8 |
Molecular-size selective H-beta zeolite-encapsulated Ce-Zr/Ni-Mg catalysts for steam reforming Cimenler U, Joseph B, Kuhn JN Applied Catalysis A: General, 505, 494, 2015 |
9 |
Ceramic hollow fibres catalytic enhanced reactors for glycerol steam reforming Gallegos-Suarez E, Garcia-Garcia FR, Gonzalez-Jimenez ID, Rodriguez-Ramos I, Guerreo-Ruiz A, Li K Catalysis Today, 233, 21, 2014 |
10 |
Calcination temperature effect on the adsorption and hydrogenated dissociation of CO2 over the NiO/MgO catalyst Feng J, Ding YJ, Guo YP, Li XH, Li WY Fuel, 109, 110, 2013 |