羟醛缩合
催化作用
锆
甲醛
丙烯酸甲酯
醋酸甲酯
化学
冷凝
核化学
有机化学
高分子化学
单体
聚合物
热力学
物理
作者
Senlin Deng,Kai Zhao,Chao Li,Guoliang Zhang,Jie Li,Gang Wang,Chunshan Li
标识
DOI:10.1021/acs.iecr.4c00771
摘要
A series of Zr-Cs/SiO2 catalysts were synthesized using a simple impregnation method to trigger the vapor aldol condensation of methyl acetate with formaldehyde. The effects of zirconium precursor, textural structure, and acid–base properties on the catalytic activity were systematically investigated via various characterization techniques, such as the physical N2 adsorption, XRD, FT-IR, NH3-/CO2-TPD, Py-IR, XPS, TEM, solid-state NMR, UV–vis spectra, and in situ DRIFTS. The introduction of the Zr component increased the specific surface area and regulated the ratio between the acid and base site density, which was conducive to the improvement of the catalytic performance. The superior MA selectivity of 93.5% with a yield of 44.9% was achieved under the optimal condition. The in situ DRIFTS experiments revealed that the Lewis acid sites played a crucial role in reactant adsorption, while the kinetic studies confirmed that the activation energy of this aldol condensation was 65.0 kJ/mol. The best catalyst showed satisfied regeneration behavior during the 450 h time-on-stream test, rendering potential for industrial applications.
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