Thermal dry reforming of methane over La2O3 co-supported Ni/MgAl2O4 catalyst for hydrogen-rich syngas production
暂无分享,去创建一个
N. Amin | M. Anwar | M. Mehran | A. Javed | A. H. Khoja | Sehar Shakir | Arslan Mazhar
[1] Xinggui Zhou,et al. Dry reforming of methane on Ni-Fe-MgO catalysts: Influence of Fe on carbon-resistant property and kinetics , 2020 .
[2] N. Amin,et al. Kinetic study of dry reforming of methane using hybrid DBD plasma reactor over La2O3 co-supported Ni/MgAl2O4 catalyst , 2020 .
[3] D. Vo,et al. Dry reforming of methane over Ni/dendritic fibrous SBA-15 (Ni/DFSBA-15): Optimization, mechanism, and regeneration studies , 2020 .
[4] R. Rabelo-Neto,et al. Pt supported on doped CeO2/Al2O3 as catalyst for dry reforming of methane , 2020 .
[5] B. A. Rosen,et al. Effect of Fe and Mn Substitution in LaNiO3 on Exsolution, Activity, and Stability for Methane Dry Reforming , 2019, Catalysts.
[6] Muhammad Tahir,et al. Evaluating the Performance of a Ni Catalyst Supported on La2O3-MgAl2O4 for Dry Reforming of Methane in a Packed Bed Dielectric Barrier Discharge Plasma Reactor , 2019, Energy & Fuels.
[7] N. Amin,et al. Recent developments in non-thermal catalytic DBD plasma reactor for dry reforming of methane , 2019, Energy Conversion and Management.
[8] Jing Shen,et al. Ni/MgAl2O4 catalyst for low-temperature oxidative dry methane reforming with CO2 , 2019, International Journal of Hydrogen Energy.
[9] Liyi Shi,et al. Defect-induced efficient dry reforming of methane over two-dimensional Ni/h-boron nitride nanosheet catalysts , 2018, Applied Catalysis B: Environmental.
[10] Dia Milani,et al. Trends in CO2 conversion and utilization: A review from process systems perspective , 2018, Journal of Environmental Chemical Engineering.
[11] Q. Cai,et al. Understanding the role of Ni-Sn interaction to design highly effective CO2 conversion catalysts for dry reforming of methane , 2018, Journal of CO2 Utilization.
[12] N. Amin,et al. Cold plasma dielectric barrier discharge reactor for dry reforming of methane over Ni/ɤ-Al2O3-MgO nanocomposite , 2018, Fuel Processing Technology.
[13] K. Y. Lau,et al. Structure and breakdown property relationship of polyethylene nanocomposites containing laboratory-synthesized alumina, magnesia and magnesium aluminate nanofillers , 2018, Journal of Physics and Chemistry of Solids.
[14] D. Moon,et al. Studies on the steam CO2 reforming of methane over ordered mesoporous nickel–magnesium–alumina catalysts , 2018, Research on Chemical Intermediates.
[15] S. Bajpai,et al. Synthesis of MgAl2O4 spinel by thermal plasma and its synergetic structural study , 2017 .
[16] Bawadi Abdullah,et al. Recent Advances in Dry Reforming of Methane Over Ni-Based Catalysts , 2017 .
[17] Jim Patel,et al. A study of the synergy between support surface properties and catalyst deactivation for CO2 reforming over supported Ni nanoparticles , 2017 .
[18] N. Amin,et al. Dry reforming of methane using different dielectric materials and DBD plasma reactor configurations , 2017 .
[19] Xionggang Lu,et al. Investigation of mesoporous NiAl2O4/MOx (M = La, Ce, Ca, Mg)–γ-Al2O3 nanocomposites for dry reforming of methane , 2017 .
[20] A. Oszkó,et al. Dry reforming of CH4 on Co/Al2O3 catalysts reduced at different temperatures , 2017 .
[21] A. H. Khoja,et al. Experimental study of catalytic degradation of polypropylene by acid-activated clay and performance of Ni as a promoter , 2016 .
[22] Haiqian Wang,et al. Effects of Fe partial substitution of La2NiO4/LaNiO3 catalyst precursors prepared by wet impregnation method for the dry reforming of methane , 2016 .
[23] W. Daud,et al. Microemulsion based synthesis of Ni/MgO catalyst for dry reforming of methane , 2016 .
[24] Bawadi Abdullah,et al. Syngas production from methane dry reforming over Ni/Al2O3 catalyst , 2016, Research on Chemical Intermediates.
[25] J. Park,et al. High coke-resistance MgAl2O4 islands decorated catalyst with minimizing sintering in carbon dioxide reforming of methane , 2016 .
[26] Hazzim F. Abbas,et al. Dry reforming of methane: Influence of process parameters—A review , 2015 .
[27] P. Costa,et al. Effect of nickel incorporation into hydrotalcite-based catalyst systems for dry reforming of methane , 2015, Research on Chemical Intermediates.
[28] James Spivey,et al. A review of dry (CO2) reforming of methane over noble metal catalysts. , 2014, Chemical Society reviews.
[29] A. Al-Fatesh,et al. Role of La2O3 as Promoter and Support in Ni/γ-Al2O3 Catalysts for Dry Reforming of Methane , 2014 .
[30] P. Estifaee,et al. Synthesis and physicochemical characterizations of Ni/Al2O3–ZrO2 nanocatalyst prepared via impregnation method and treated with non-thermal plasma for CO2 reforming of CH4 , 2013 .
[31] Y. Schuurman,et al. Mechanism of CH4 dry reforming by pulse microcalorimetry: Metal nanoparticles on perovskite/fluorite supports with high oxygen mobility , 2013 .
[32] E. Assaf,et al. Combination of dry reforming and partial oxidation of methane on NiO–MgO–ZrO2 catalyst: Effect of nickel content , 2013 .
[33] M. Öveçoğlu,et al. Synthesis of LaB6 powders from La2O3, B2O3 and Mg blends via a mechanochemical route , 2012 .
[34] Xiaohong Zhang,et al. Modification effect of natural mixed rare earths on Co/γ-Al2O3 catalysts for CH4/CO2 reforming to synthesis gas , 2012 .
[35] E. Kondratenko,et al. Stable low-temperature dry reforming of methane over mesoporous La2O3-ZrO2 supported Ni catalyst , 2012 .
[36] J. Nagy,et al. Zeolite-supported Ni catalyst for methane reforming with carbon dioxide , 2011 .
[37] S. Yaşyerli,et al. Activity and stability enhancement of Ni-MCM-41 catalysts by Rh incorporation for hydrogen from dry reforming of methane , 2010 .
[38] G. Waghorn,et al. Greenhouse gas emissions. , 2008 .
[39] Mark A. Gerber,et al. Review of Novel Catalysts for Biomass Tar Cracking and Methane Reforming , 2007 .
[40] A. Kiennemann,et al. Ni catalysts from NiAl2O4 spinel for CO2 reforming of methane , 2006 .
[41] Hong Zhao,et al. Improvement of stability of out-layer MgAl2O4 spinel for a Ni/MgAl2O4/Al2O3 catalyst in dry reforming of methane , 2005 .
[42] S. Yoshida,et al. Preparation of Ni/SiO2 catalyst with high thermal stability for CO2-reforming of CH4 , 2003 .