Xia Haihong, Li Jing, Zhao Jun, Zhou Minghao, Jiang Jianchun
Key Laboratory of Biomass Energy and Material, Jiangsu Province; Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Institute of Chemical Industry of Forest Products, CAF; Nanjing Forestry University, Nanjing, People's Republic of China.
Department of Biology, Institute of Bioresource and Agriculture, Hong Kong Baptist University, Kowloon Tong, Hong Kong SAR, People's Republic of China.
Environ Technol. 2023 May 10:1-10. doi: 10.1080/09593330.2023.2206526.
Cyclopentanol (CPL) was an eco-friendly solvent as well as important platform chemical which could be generated from biomass-derived furfural (FFA). In this paper, a series of Ni, Cu, Mo, Co bimetallic catalysts with different metals loadings supported on carbon nanotubes (CNT) were synthesized by an impregnation method for aqueous-phase hydrogenation of FFA to obtain CPL. Various effects of reaction parameters such as reaction solvent, reaction temperature, reaction time and different loading amounts of Ni over bimetallic Ni-based CNT catalysts were fully investigated. Among the catalysts studied, (15 + 5) wt% NiCu/CNT catalysts showed a high conversion of FFA and 88% selectivity towards CPL in water and 96% selectivity towards acetal in methanol at the mild condition of 160℃, 2 MPa hydrogen and 4 h reaction time. NiCu bimetallic synergistic effect was interpreted through H-TPR and NH-TPD measurement and a possible pathway was proposed. The features of the CNT-supported catalysts were investigated via XRD, XPS, TEM, H-TPR and NH-TPD. The Ni and bimetallic NiCu catalysts synthesized in this work were inexpensive and simple, which made them a promising candidate for the conversion of biomass-derived FFA to CPL.
环戊醇(CPL)是一种环境友好型溶剂,也是一种重要的平台化学品,可由生物质衍生的糠醛(FFA)制得。本文采用浸渍法合成了一系列负载在碳纳米管(CNT)上、具有不同金属负载量的Ni、Cu、Mo、Co双金属催化剂,用于FFA的水相加氢制备CPL。全面研究了反应参数如反应溶剂、反应温度、反应时间以及双金属Ni基CNT催化剂上不同Ni负载量的各种影响。在所研究的催化剂中,(15 + 5)wt% NiCu/CNT催化剂在160℃、2MPa氢气和4小时反应时间的温和条件下,在水中对FFA具有高转化率,对CPL的选择性为88%,在甲醇中对缩醛的选择性为96%。通过H-TPR和NH-TPD测量解释了NiCu双金属协同效应,并提出了可能的反应途径。通过XRD、XPS、TEM、H-TPR和NH-TPD对CNT负载型催化剂的特性进行了研究。本文合成的Ni和双金属NiCu催化剂价格低廉且制备简单,这使其成为将生物质衍生的FFA转化为CPL的有前景的候选催化剂。