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Co-Ni/MgO催化剂上低温甲烷二氧化碳干重整研究
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作者 杨桐 冉景煜 +2 位作者 黄鑫 欧志良 邱华禹 《工程热物理学报》 EI CAS CSCD 北大核心 2024年第6期1735-1742,共8页
采用溶胶凝胶法制备Ni/MgO和Co-Ni/MgO催化剂,考察了催化剂在甲烷二氧化碳低温干重整反应中的性能。结果表明1%Co-10%Ni/Mg O催化剂拥有较高的CH_(4)、CO_(2)转化率以及最高的H_(2)/CO,且在450℃下反应20 h后该催化剂的CH_(4)、CO_(2)... 采用溶胶凝胶法制备Ni/MgO和Co-Ni/MgO催化剂,考察了催化剂在甲烷二氧化碳低温干重整反应中的性能。结果表明1%Co-10%Ni/Mg O催化剂拥有较高的CH_(4)、CO_(2)转化率以及最高的H_(2)/CO,且在450℃下反应20 h后该催化剂的CH_(4)、CO_(2)转化率以及H_(2)/CO仍高于Ni/Mg O催化剂,且积碳量比Ni/MgO催化剂少4.3%。通过XRD、H_(2)-TPR、TEM、SEM、TG、RAMAN等表征分析发现适量Co的添加有利于提升催化剂表面活性组分的分散度和粒径,减少催化剂颗粒的团簇,且能抑制积碳的形成。通过对干重整反应过程中反应物表观活化能的计算,发现适量Co的添加能降低反应物的表观活化能,有利于提升Ni/MgO催化剂的低温甲烷干重整反应性能。 展开更多
关键词 氧化镁 低温干重整 积碳
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Trifunctional strategy for the design and synthesis of a Ni-CeO_(2)@SiO_(2)catalyst with remarkable low-temperature sintering and coking resistance for methane dry reforming 被引量:5
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作者 Sixue Lin Jing Wang +5 位作者 Yangyang Mi Senyou Yang Zheng Wang Wenming Liu Daishe Wu Honggen Peng 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第10期1808-1820,共13页
In this study,a trifunctional strategy was developed to prepare a confined Ni-based catalyst(Ni-CeO_(2)@SiO_(2))for dry reforming of methane(DRM)of two main greenhouse gases-CO_(2)and CH_(4).The Ni-CeO_(2)@SiO_(2)cata... In this study,a trifunctional strategy was developed to prepare a confined Ni-based catalyst(Ni-CeO_(2)@SiO_(2))for dry reforming of methane(DRM)of two main greenhouse gases-CO_(2)and CH_(4).The Ni-CeO_(2)@SiO_(2)catalyst was fabricated by utilizing the confinement effect of the SiO_(2)shell and the synergistic interaction between Ni-Ce and the decoking effect of CeO_(2).The catalysts were systematically characterized via X-ray diffraction,N_(2 )adsorption/desorption,transmission electron microscopy,energy dispersive X-ray spectroscopy,hydrogen temperature reduction and desorption set by program,oxygen temperature program desorption,Raman spectroscopy,thermogravimetric analysis,and in situ diffuse reflectance infrared Fourier transform spectroscopy measurements to reveal their physicochemical properties and reaction mechanism.The Ni-CeO_(2)@SiO_(2)catalyst exhibited higher activity and stability than the catalyst synthesized via the traditional impregnation method.In addition,no carbon deposition was detected over Ni-CeO_(2)@SiO_(2)after a 100 h durability test at 800℃,and the average particle size of Ni nanoparticles(NPs)in the catalyst increased from 5.01 to 5.77 nm.Remarkably,Ni-CeO_(2)@SiO_(2)also exhibited superior low-temperature stability;no coke deposition was observed when the catalyst was reacted at 600℃ for 20 h.The high coking and sintering resistance of this confined Ni-based DRM catalyst can be attributed to its trifunctional effect.The trifunctional strategy developed in this study could be used as a guideline to design other high-performance catalysts for CO_(2)and CH4 dry forming and accelerate their industrialization. 展开更多
关键词 Methane dry forming Low-temperature stability Coke resistance Tri functional strategy CO_(2)utilization
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