CAS Key Lab of Low Carbon Conversion Science and Engineering, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, 201210, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Chemistry. 2023 Apr 18;29(22):e202203960. doi: 10.1002/chem.202203960. Epub 2023 Mar 13.
Ethylene (C H ) is a major chemical for the modern society, and new technologies for its production are of strategic importance globally. Recently, oxidative dehydrogenation of ethane (C H ) using CO as a milder oxidant (CO -ODH) is proposed as a potential way for C H production, and development of effective catalysts for the process is drawing wide attention. Here, we report on a facilely prepared ZSM-5 supported Zn system, i. e., ZnZSM-5, which showed great promise in CO -ODH. Samples with different Zn loadings were prepared and evaluated, and the highest performance was obtained over 0.05ZnZSM-5 at 700 °C and a CO :C H feeding ratio of 5 : 1. During 340 min TOS, the C H conversion decreased moderately from 36.2 % to 23.1 %, and the C H yield stabilized at 21.9 % to 27.9 %. Based on systematic characterization and investigation of reaction conditions, the structure-performance relationship and reaction network were discussed in detail.
乙烯(C2H4)是现代社会的主要化学品,其生产的新技术具有全球战略重要性。最近,使用 CO 作为较温和氧化剂的乙烷(C2H6)氧化脱氢(CO-ODH)被提出作为 C2H4生产的一种潜在方法,该过程的有效催化剂的开发引起了广泛关注。在这里,我们报告了一种易于制备的 ZSM-5 负载的 Zn 体系,即 ZnZSM-5,它在 CO-ODH 中表现出很大的潜力。制备并评价了具有不同 Zn 负载量的样品,在 700°C 和 CO:C2H6进料比为 5:1 的条件下,0.05ZnZSM-5 表现出最佳性能。在 340 分钟的 TOS 期间,C2H4转化率从 36.2%适度下降到 23.1%,C2H4收率稳定在 21.9%至 27.9%。通过系统的表征和反应条件研究,详细讨论了结构-性能关系和反应网络。