Department of Biological Systems Engineering, Washington State University, Richland, WA, 99354, USA.
Current address: Center of Biomass Engineering/College of Agronomy and Biotechnology, China Agricultural University, Beijing, 100193, PR China.
ChemSusChem. 2018 Jan 10;11(1):285-291. doi: 10.1002/cssc.201701567. Epub 2017 Nov 14.
Super Lewis acids containing the triflate anion [e.g., Hf(OTf) , Ln(OTf) , In(OTf) , Al(OTf) ] and noble metal catalysts (e.g., Ru/C, Ru/Al O ) formed efficient catalytic systems to generate saturated hydrocarbons from lignin in high yields. In such catalytic systems, the metal triflates mediated rapid ether bond cleavage through selective bonding to etheric oxygens while the noble metal catalyzed subsequent hydrodeoxygenation (HDO) reactions. Near theoretical yields of hydrocarbons were produced from lignin model compounds by the combined catalysis of Hf(OTf) and ruthenium-based catalysts. When a technical lignin derived from a pilot-scale biorefinery was used, more than 30 wt % of the hydrocarbons produced with this catalytic system were cyclohexane and alkylcyclohexanes in the jet fuel range. Super Lewis acids are postulated to strongly interact with lignin substrates by protonating hydroxyl groups and ether linkages, forming intermediate species that enhance hydrogenation catalysis by supported noble metal catalysts. Meanwhile, the hydrogenation of aromatic rings by the noble metal catalysts can promote deoxygenation reactions catalyzed by super Lewis acids.
含有三氟甲磺酸根阴离子的超强路易斯酸[例如 Hf(OTf) 、Ln(OTf) 、In(OTf) 、Al(OTf)]和贵金属催化剂(例如 Ru/C、Ru/Al2O3)形成了高效的催化体系,可从木质素中高收率地生成饱和烃。在这种催化体系中,金属三氟甲磺酸通过选择性键合醚氧来介导快速的醚键断裂,而贵金属则催化随后的加氢脱氧(HDO)反应。通过 Hf(OTf)和基于钌的催化剂的联合催化,木质素模型化合物可近乎理论产率生成烃类。当使用源自中试规模生物炼制厂的技术木质素时,该催化体系生成的产物中超过 30wt%为环己烷和在喷气燃料范围内的烷基环己烷。据推测,超强路易斯酸通过质子化羟基和醚键与木质素底物强烈相互作用,形成中间体物种,从而增强负载型贵金属催化剂的加氢催化作用。同时,贵金属催化剂对芳环的加氢可促进超强路易斯酸催化的脱氧反应。