Ren Zhiheng, Younis Muhammad Naeem, Li Chunshan, Li Zengxi, Yang Xiangui, Wang Gongying
Chengdu Institute of Organic Chemistry, Chinese Academy of Sciences Chengdu 610041 China
National Engineering Laboratory & Technology, University of Chinese Academy of Science Beijing 101408 China.
RSC Adv. 2020 Feb 4;10(10):5590-5603. doi: 10.1039/c9ra08780j.
Rare earth element (Ce, Y, and La) modified Cu/SiO catalysts hydrolysis precipitation and impregnation method were fabricated for the vapor-phase hydrogenation of methyl acetate to ethanol. LaO showed the most pronounced promotion in the catalytic tests. After detailed characterizations, N adsorption-desorption, XRD, NO chemisorption, FTIR, H-TPR, H-TPD, TEM, XPS, and TG/DTA, we found that the addition of promoter LaO can decrease the particle size while in turn, it can increase the dispersion of copper species. The strong interactions between copper and lanthanum atoms alter the surface chemical states of the copper species. This results in the generation of more Cu species and high values, which are responsible for the excellent activity and stability during hydrogenation. In addition, the content of additive LaO and reaction conditions (reaction temperature and LHSV) were optimized. Then, the long-term stability performance was evaluated over the selected catalyst in contrast with Cu/SiO.
采用水解沉淀法和浸渍法制备了稀土元素(铈、钇和镧)改性的Cu/SiO催化剂,用于醋酸甲酯气相加氢制乙醇。在催化试验中,LaO表现出最显著的促进作用。经过详细表征,包括N2吸附-脱附、XRD、NO化学吸附、FTIR、H-TPR、H-TPD、TEM、XPS以及TG/DTA,我们发现添加促进剂LaO可以减小粒径,进而增加铜物种的分散度。铜原子与镧原子之间的强相互作用改变了铜物种的表面化学状态。这导致生成更多的Cu物种和高活性值,这是氢化过程中优异活性和稳定性的原因。此外,对添加剂LaO的含量和反应条件(反应温度和液体空速)进行了优化。然后,与Cu/SiO相比,在选定的催化剂上评估了长期稳定性性能。