沸石
催化作用
甲烷
催化燃烧
化学
无机化学
空间速度
钯
燃烧
吸附
甲烷厌氧氧化
有机化学
选择性
作者
Mingyang Gao,Zhongmiao Gong,Xuefei Weng,Weixiang Shang,Yuchao Chai,Weili Dai,Guangjun Wu,Naijia Guan,Landong Li
标识
DOI:10.1016/s1872-2067(20)63775-5
摘要
Isolated cationic Pd species encapsulated in MFI zeolite, i.e., [email protected], have been successfully prepared via in situ hydrothermal route followed by oxidative treatment. The as-prepared [email protected] samples are investigated as promising catalysts in the reaction of methane combustion. Typically, [email protected] shows remarkable activity in methane catalytic combustion with a low apparent activation energy value of 70.7 kJ/mol as well as good catalytic stability even in excess water vapor. Detailed characterization results demonstrate the strong interaction between Pd sites and zeolite framework in [email protected] and the efficient stabilization of isolated Pd sites by zeolite thereof. Spectroscopy analyses reveal that the presence of Brønsted acid sites is beneficial to methane adsorption and its subsequent activation on adjacent Pd sites, constructing cooperation between Brønsted acid sites and Pd sites within the confined space of MFI zeolite toward high-efficiency methane catalytic combustion. The reaction mechanism of methane combustion catalyzed by [email protected] model catalyst is finally discussed.
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