Author/Authors :
Peng Gao، نويسنده , , Feng Li، نويسنده , , Haijuan Zhan، نويسنده , , Ning Zhao، نويسنده , , Fukui Xiao، نويسنده , , Wei Wei، نويسنده , , Liangshu Zhong، نويسنده , , Hui Wang، نويسنده , , Yuhan Sun، نويسنده ,
Abstract :
A series of Cu/Zn/Al/Zr hydrotalcite-like precursors with Zr4+:(Al3++Zr4+) from 0 to 0.7 were synthesized by a co-precipitation method. X-ray diffraction and thermogravimetric measurements demonstrated that the yield of the hydrotalcite-like phase decreases with increased Zr content. The Cu/Zn/Al/Zr mixed oxides were then obtained by calcination of the hydrotalcite-like precursors and tested for methanol synthesis from CO2 hydrogenation. With increased Zr4+:(Al3++Zr4+) atomic ratio, the exposed Cu surface area and dispersion of Cu first increase until Zr4+:(Al3++Zr4+) = 0.3 and then decrease. However, the total number of basic sites on catalysts increases continuously. It is also found that the CO2 conversion is related to the exposed Cu surface area and the dispersion of Cu, while the CH3OH selectivity is related to the distribution of basic sites on the catalyst surface. The incorporation of a suitable amount of Zr is beneficial for the production of methanol, and the best catalytic performance is obtained when the Zr4+:(Al3++Zr4+) atomic ratio is 0.3.
Keywords :
Asymmetric transfer hydrogenation , Heterogeneous catalysis , Immobilization , mesoporous materials