Huang Yingying, Qiu Shiming, Xu Jianben, Lian Huan
School of Chemistry and Biological Engineering, Guangxi Normal University for Nationalities, Chongzuo 532200, PR China.
ACS Omega. 2020 Dec 22;6(1):476-482. doi: 10.1021/acsomega.0c04912. eCollection 2021 Jan 12.
In this paper, a waste fluid catalytic cracking (FCC) catalyst is used as a carrier to prepare a supported non-noble metal nickel catalyst (Ni/wFCC), which is applied to the selective hydrogenation of citral to citronellal. X-ray powder diffraction, Fourier transform infrared spectroscopy, and scanning electron microscopy were used to analyze the structural characteristics of the Ni-loaded sample. The catalyst after loading Ni still maintained a good zeolite structure, and the surface impurities were reduced. The effect of reaction conditions on the Ni/wFCC-catalyzed hydrogenation of citral to citronellal was investigated, and the optimal reaction conditions were obtained as follows: a Ni loading of 20 wt %, a catalyst amount of 5.6%, a hydrogenation temperature of 180 °C, a hydrogenation time of 90 min, and a hydrogenation pressure of 3.0 MPa. Under these conditions, the conversion of citral and selectivity of citronellal were 98.5 and 86.6%, respectively, indicating that the Ni/wFCC catalyst had strong catalytic activity and selectivity. This research provided new ideas for the recycling of waste FCC catalysts and industrial synthesis of citronellal.
本文以废流化催化裂化(FCC)催化剂为载体,制备了负载型非贵金属镍催化剂(Ni/wFCC),并将其应用于柠檬醛选择性加氢制香茅醛反应。采用X射线粉末衍射、傅里叶变换红外光谱和扫描电子显微镜对负载镍后的样品结构特征进行了分析。负载镍后的催化剂仍保持良好的沸石结构,表面杂质减少。考察了反应条件对Ni/wFCC催化柠檬醛加氢制香茅醛反应的影响,得到最佳反应条件为:镍负载量20 wt%、催化剂用量5.6%、加氢温度180℃、加氢时间90 min、加氢压力3.0 MPa。在此条件下,柠檬醛转化率和香茅醛选择性分别为98.5%和86.6%,表明Ni/wFCC催化剂具有较强的催化活性和选择性。该研究为废FCC催化剂的回收利用及香茅醛的工业合成提供了新思路。