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Original Articles

Mo2C/SBA-15 Modified by Ni for the Dry Reforming of Methane

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Pages 2249-2256 | Received 09 Sep 2010, Accepted 26 Nov 2010, Published online: 31 Oct 2011

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Parham Roohi, Reza Alizadeh & Esmaeil Fatehifar. (2016) Dry reforming of methane over nano-Mo2C/Al2O3 catalyst: Effect of carburization conditions on excess carbon deposition. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:24, pages 3565-3571.
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LiNan Huang, Danyang Li, Dong Tian, Lei Jiang, Zhiqiang Li, Hua Wang & Kongzhai Li. (2022) Optimization of Ni-Based Catalysts for Dry Reforming of Methane via Alloy Design: A Review. Energy & Fuels 36:10, pages 5102-5151.
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Jiming Wang, Guojie Zhang, Guoqiang Li, Jun Liu, Ying Wang, Ying Xu & Yongkang Lyu. (2022) Understanding structure-activity relationships of the highly active and stable La promoted Co/WC-AC catalyst for methane dry reforming. International Journal of Hydrogen Energy.
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Ioannis V. Yentekakis, Paraskevi Panagiotopoulou & Georgios Artemakis. (2021) A review of recent efforts to promote dry reforming of methane (DRM) to syngas production via bimetallic catalyst formulations. Applied Catalysis B: Environmental 296, pages 120210.
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Yao Lu, Dan Guo, Yifan Zhao, Yujun Zhao, Shengping Wang & Xinbin Ma. (2021) Enhanced performance of xNi@yMo-HSS catalysts for DRM reaction via the formation of a novel SiMoOx species. Applied Catalysis B: Environmental 291, pages 120075.
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Lin Zhang, Ying Yang, Zhiwei Yao, Shi Yan & Xiaoxue Kang. (2021) Finding of a new cycle route in Ni/Mo 2 C catalyzed CH 4 –CO 2 reforming . Catalysis Science & Technology.
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Qiuchen Yang, Rui Qiu, Xixi Ma, Ruijun Hou & Kening Sun. (2020) Surface reconstruction and the effect of Ni-modification on the selective hydrogenation of 1,3-butadiene over Mo 2 C-based catalysts . Catalysis Science & Technology 10:11, pages 3670-3680.
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Wenxi Wu, Qingyou Liu, Yan Shi, Zhiwei Yao, Wei Ding & Binlin Dou. (2020) Binary and ternary transition metal phosphides for dry reforming of methane. Reaction Chemistry & Engineering 5:4, pages 719-727.
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Haifeng Gao, Zhiwei Yao, Yan Shi, Renren Jia, Feixue Liang, Yue Sun, Wei Mao & Haiyan Wang. (2018) Simple and large-scale synthesis of β-phase molybdenum carbides as highly stable catalysts for dry reforming of methane. Inorganic Chemistry Frontiers 5:1, pages 90-99.
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Haifeng Gao, Zhiwei Yao, Yan Shi & Siqi Wang. (2018) Improvement of the catalytic stability of molybdenum carbide via encapsulation within carbon nanotubes in dry methane reforming . Catalysis Science & Technology 8:3, pages 697-701.
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Yufei Ma, Guoqing Guan, Xiaogang Hao, Ji Cao & Abuliti Abudula. (2017) Molybdenum carbide as alternative catalyst for hydrogen production – A review. Renewable and Sustainable Energy Reviews 75, pages 1101-1129.
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Pengliang Liang, Haifeng Gao, Zhiwei Yao, Renren Jia, Yan Shi, Yue Sun, Qi Fan & Haiyan Wang. (2017) Simple synthesis of ultrasmall β-Mo 2 C and α-MoC 1−x nanoparticles and new insights into their catalytic mechanisms for dry reforming of methane . Catalysis Science & Technology 7:15, pages 3312-3324.
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Zhiwei Yao, Fubing Luan, Yue Sun, Baojiang Jiang, Jia Song & Haiyan Wang. (2016) Molybdenum phosphide as a novel and stable catalyst for dry reforming of methane. Catalysis Science & Technology 6:22, pages 7996-8004.
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Zhiwei Yao, Jun Jiang, Yu Zhao, Fubing Luan, Jiang Zhu, Yan Shi, Haifeng Gao & Haiyan Wang. (2016) Insights into the deactivation mechanism of metal carbide catalysts for dry reforming of methane via comparison of nickel-modified molybdenum and tungsten carbides. RSC Advances 6:24, pages 19944-19951.
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Cheng Wan & Brian M. Leonard. (2015) Iron-Doped Molybdenum Carbide Catalyst with High Activity and Stability for the Hydrogen Evolution Reaction. Chemistry of Materials 27:12, pages 4281-4288.
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Yonghui Zhao, Shenggang Li & Yuhan Sun. (2013) Ni-Doping Effects on Carbon Diffusion and Oxidation over Mo 2 C Surfaces . The Journal of Physical Chemistry C 117:37, pages 18936-18946.
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