Yan Yong-Qing, Wei Zhao, Wang Zhao, Li Yao, Wang Wei-Hao, Jiang Bo, Su Bao-Lian
Laboratory of Living Materials, the, State Key Laboratory of Advanced Technology for Material Synthesis and Processing, Wuhan University of Technology, Wuhan, 430070, Hubei, China.
Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory, Guangdong Laboratory, Xianhu Hydrogen Valley, Foshan, 528200, P. R. China.
Angew Chem Int Ed Engl. 2023 Sep 18;62(38):e202309013. doi: 10.1002/anie.202309013. Epub 2023 Aug 17.
H -free semi-hydrogenation at room temperature shows great advantage for replacing the thermocatalytic process in industry owing to the high energy and resource saving, however, remains great challenges. Herein, a tree-like Pd dendrites array decorated Pd membrane was constructed as the core device in an electrochemistry assisted gas-fed membrane reactor for butadiene semi-hydrogenation. It reveals that hydrogen atomic sieving effect of this Pd-based membrane under electrochemical condition was the key for semi-hydrogenation. The configuration study of Pd nanostructured membrane demonstrates that the penetration of hydrogen atoms through Pd membrane from electrochemical side to chemical side is affected by the consumption of hydrogen atom in semi-hydrogenation step. Such atomic sieving property of nanostructured Pd membrane with 5.1 times increase in catalytic active surface area brings above 14 times higher in butadiene conversion than that of bare Pd foil, with ≈90 % of butenes selectivity at butadiene conversion ≈98 % over 300 h of H -free reaction under 15 mA cm .
室温下的无氢半氢化反应因具有高能量和资源节约的特点,在取代工业中的热催化过程方面显示出巨大优势,但仍面临巨大挑战。在此,构建了一种树枝状钯枝晶阵列修饰的钯膜,作为电化学辅助气馈式膜反应器中丁二烯半氢化反应的核心装置。研究表明,该钯基膜在电化学条件下的氢原子筛分效应是半氢化反应的关键。钯纳米结构膜的构型研究表明,氢原子从电化学侧透过钯膜到化学侧的渗透受到半氢化步骤中氢原子消耗的影响。这种纳米结构钯膜的原子筛分特性使催化活性表面积增加了5.1倍,丁二烯转化率比裸钯箔高出14倍以上,在15 mA cm⁻²的无氢反应300小时内,丁二烯转化率约为98%时,丁烯选择性约为90%。