Wang Jieqiong, Yang Jingyi, Bing Zezheng, Gao Yuanyuan, Yang Tao, Liu Qiaoyun, Zhang Meng, Liu Zhongyi
College of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
School of Chemical Engineering, Zhengzhou University, Zhengzhou 450001, China.
Molecules. 2025 Jan 8;30(2):225. doi: 10.3390/molecules30020225.
Controllable hydrogenation of carbonyl groups (C=O) is crucial for converting furfural into high-value furfuryl alcohol. Instead of traditional impregnation method, a novel Cu-based catalyst (Cu/SiO) is prepared using the ammonia evaporation method (AE) for the efficient hydrogenation of furfural to furfuryl alcohol under mild conditions. At the reaction conditions of 90 °C and 1 MPa H, the 5Cu/SiO-AE sample showed optimal performance with higher turnover frequency (36.0 h) and furfuryl alcohol selectivity (>99.9%). After five cycles, the catalyst recycled still showed a high reaction activity and selectivity for furfuryl alcohol. Characterization results such as XRD, H-TPR, FT-IR, and XPS showed that the excellent catalytic performance of 5Cu/SiO-AE catalyst was attributed to the formation of layered copper silicate and the high dispersion of Cu species. Furthermore, the formation of layered copper silicate resulted in a higher ratio of Cu/(Cu+Cu) at a reduction temperature of 250 °C, which was also responsible for the optimum activity. This work showed the importance of controllable synthesis of layered copper silicate in improving the catalytic performance of copper-containing catalyst.
羰基(C=O)的可控氢化对于将糠醛转化为高价值的糠醇至关重要。采用氨蒸发法(AE)制备了一种新型的铜基催化剂(Cu/SiO),用于在温和条件下将糠醛高效氢化为糠醇,而不是传统的浸渍法。在90℃和1MPa H的反应条件下,5Cu/SiO-AE样品表现出最佳性能,具有更高的周转频率(36.0 h)和糠醇选择性(>99.9%)。经过五个循环后,回收的催化剂对糠醇仍表现出高反应活性和选择性。XRD、H-TPR、FT-IR和XPS等表征结果表明,5Cu/SiO-AE催化剂优异的催化性能归因于层状硅酸铜的形成和铜物种的高分散性。此外,层状硅酸铜的形成导致在250℃还原温度下Cu/(Cu+Cu)的比例更高,这也是活性最佳的原因。这项工作表明了可控合成层状硅酸铜在提高含铜催化剂催化性能方面的重要性。