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Featured researches published by Jixiang Chen.


Journal of Energy Chemistry | 2015

Deoxygenation of methyl laurate to hydrocarbons on silica-supported Ni-Mo phosphides: Effect of calcination temperatures of precursor

Zhengyi Pan; Rijie Wang; Mingfeng Li; Yang Chu; Jixiang Chen

Abstract SiO2-supported Ni-Mo bimetallic phosphides were prepared by temperature-programmed reduction (TPR) method from the phosphate precursors calcined at different temperatures. Their properties were characterized by means of ultraviolet-visible diffuse reflectance spectroscopy (UV-Vis DRS), H2 temperature-programmed reduction (H2-TPR), X-ray diffraction (XRD), transmission electron microscopy (TEM), CO chemisorption, H2 and NH3 temperature-programmed desorptions (H2-TPD and NH3-TPD). Their catalytic performances for the deoxygenation of methyl laurate were tested in a fixed-bed reactor. When the precursors were calcined at 400 and 500 °C, respectively, NiMoP2 phase could be formed apart from Ni2P and MoP phases in the prepared C400 and C500 catalysts. However, when the precursors were calcined at 600, 700 and 800 °C, respectively, only Ni2P and MoP phases could be detected in the prepared C600, C700 and C800 catalysts. Also, in C400, C500 and C600 catalysts, Mo atoms were found to be entered in the lattice of Ni2P phase, but the entering extent became less with the increase of calcination temperature. As the calcination temperature of the precursor increased, the interaction between Ni and Mo in the prepared catalysts decreased, and the phosphide crystallite size tended to increase, subsequently leading to the decrease in the surface metal site density and the acid amount. C600 catalyst showed the highest activity among the tested ones for the deoxygenation of methyl laurate. As the calcination temperature of the precursor increased, the selectivity to C12 hydrocarbons decreased while the selectivity to C11 hydrocarbons tended to increase. This can be mainly attributed to the decreased Ni-Mo interaction and the increased phosphide particle size. In sum, the structure and performance of Ni-Mo bimetallic phosphide catalyst can be tuned by the calcination temperature of precursor.


Fuel | 2008

Effect of preparation methods on structure and performance of Ni/Ce0.75Zr0.25O2 catalysts for CH4–CO2 reforming

Jixiang Chen; Qunying Wu; Jianxiang Zhang; Jiyan Zhang


Energy & Fuels | 2013

Deoxygenation of Methyl Laurate as a Model Compound to Hydrocarbons on Ni2P/SiO2, Ni2P/MCM-41, and Ni2P/SBA-15 Catalysts with Different Dispersions

Yan Yang; Jixiang Chen; Heng Shi


Fuel Processing Technology | 2014

Catalytic deoxygenation of methyl laurate as a model compound to hydrocarbons on nickel phosphide catalysts: Remarkable support effect

Heng Shi; Jixiang Chen; Yan Yang; Shasha Tian


Fuel | 2014

Regulating product distribution in deoxygenation of methyl laurate on silica-supported Ni–Mo phosphides: Effect of Ni/Mo ratio

Jixiang Chen; Yan Yang; Heng Shi; Mingfeng Li; Yang Chu; Zhengyi Pan; Xinbin Yu


Fuel Processing Technology | 2008

Effect of yttrium and praseodymium on properties of Ce0.75Zr0.25O2 solid solution for CH4-CO2 reforming

Qunying Wu; Jixiang Chen; Jiyan Zhang


Fuel Processing Technology | 2014

Hydroisomerization of n-dodecane on a new kind of bifunctional catalyst: Nickel phosphide supported on SAPO-11 molecular sieve

Shasha Tian; Jixiang Chen


Journal of Energy Chemistry | 2016

Effect of a second metal (Co, Fe, Mo and W) on performance of Ni2P/SiO2 for hydrodeoxygenation of methyl laurate☆

Zhengyi Pan; Rijie Wang; Ziyang Nie; Jixiang Chen


Energy & Fuels | 2014

Hydroconversion of Methyl Laurate as a Model Compound to Hydrocarbons on Bifunctional Ni2P/SAPO-11: Simultaneous Comparison with the Performance of Ni/SAPO-11

Sha Zhao; Mingfeng Li; Yang Chu; Jixiang Chen


Fuel Processing Technology | 2015

Influence of CS2 on performance of Ni2P/SiO2 for deoxygenation of methyl laurate as a model compound to hydrocarbons: Simultaneous investigation on catalyst deactivation

Zheng Zheng; Mingfeng Li; Yang Chu; Jixiang Chen

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