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通过原子层沉积在CuO-ZnO-AlO催化剂上制备超薄ZrO包覆层以提高CO加氢制二甲醚的催化性能。

Ultra-thin ZrOovercoating on CuO-ZnO-AlOcatalyst by atomic layer deposition for improved catalytic performance of COhydrogenation to dimethyl ether.

作者信息

Fan Xiao, Jin Baitang, He Xiaoqing, Li Shiguang, Liang Xinhua

机构信息

Linda and Bipin Doshi Department of Chemical and Biochemical Engineering, Missouri University of Science and Technology, Rolla, MO 65409, United States of America.

Electron Microscopy Core Facility, University of Missouri, Columbia, MO 65211, United States of America.

出版信息

Nanotechnology. 2023 Mar 20;34(23). doi: 10.1088/1361-6528/acc036.

Abstract

An ultra-thin overcoating of zirconium oxide (ZrO) film on CuO-ZnO-AlO(CZA) catalysts by atomic layer deposition (ALD) was proved to enhance the catalytic performance of CZA/HZSM-5 (H form of Zeolite Socony Mobil-5) bifunctional catalysts for hydrogenation of COto dimethyl ether (DME). Under optimal reaction conditions (i.e. 240 °C and 2.8 MPa), the yield of product DME increased from 17.22% for the bare CZA/HZSM-5 catalysts, to 18.40% for the CZA catalyst after 5 cycles of ZrOALD with HZSM-5 catalyst. All the catalysts modified by ZrOALD displayed significantly improved catalytic stability of hydrogenation of COto DME reaction, compared to that of CZA/HZSM-5 bifunctional catalysts. The loss of DME yield in 100 h of reaction was greatly mitigated from 6.20% (loss of absolute value) to 3.01% for the CZA catalyst with 20 cycles of ZrOALD overcoating. Characterizations including hydrogen temperature programmed reduction, x-ray powder diffraction, and x-ray photoelectron spectroscopy revealed that there was strong interaction between Cu active centers and ZrO.

摘要

通过原子层沉积(ALD)在CuO-ZnO-Al₂O₃(CZA)催化剂上制备了超薄氧化锆(ZrO)薄膜涂层,结果表明该涂层可提高CZA/HZSM-5(氢型ZSM-5分子筛)双功能催化剂对CO加氢合成二甲醚(DME)的催化性能。在最佳反应条件(即240℃和2.8MPa)下,产物DME的产率从未修饰的CZA/HZSM-5催化剂的17.22%,提高到与HZSM-5催化剂进行5次ZrO ALD循环后的CZA催化剂的18.40%。与CZA/HZSM-5双功能催化剂相比,所有经ZrO ALD修饰的催化剂在CO加氢合成DME反应中均表现出显著提高的催化稳定性。对于进行了20次ZrO ALD包覆的CZA催化剂,在100小时反应中DME产率的损失从6.20%(绝对值损失)大幅降低至3.01%。包括氢气程序升温还原、X射线粉末衍射和X射线光电子能谱在内的表征结果表明,Cu活性中心与ZrO之间存在强相互作用。

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