Yin Tao, Ye Yichao, Jiang Hao, Lin Chengyin, Shu Riyang, Tian Zhipeng, Wang Chao, Shi Ning
Guangdong Provincial Key Laboratory of Functional Soft Condensed Matter, School of Materials and Energy, Guangdong University of Technology, Guangzhou, 510006, P. R. China.
School of Chemical Engineering, Guizhou Institute of Technology, Guiyang, 550003, P. R. China.
ChemSusChem. 2025 Jan 2;18(1):e202401870. doi: 10.1002/cssc.202401870. Epub 2024 Nov 15.
Hydrodeoxygenation (HDO) is a common strategy for upgrading lignin-derived phenolic compounds into high-quality liquid fuels, and the support rational design of HDO catalysts is critical to achieve a good reaction performance. This work proposed a novel Ru-based catalyst with biochar and AlO as composite support. The addition of biochar can enlarge the porous structure, and the addition of AlO can enhance the acid property of the support. By regulating the content of biochar and AlO components, Ru/CA-2 catalyst achieved the best HDO performance of lignin-derived phenolic compounds, with the optimal component balance of 50 %C and 50 %AlO. This catalyst possesses the high Ru metal dispersion (1.38 nm particle size) to activate the hydrogen source, the moderate acid property to suppress carbon deposition and the abundant oxygen vacancy to promote substrate adsorption at the same time. 99.9 % conversion of guaiacol is obtained at 230 °C, with 99.9 % selectivity towards cyclohexane. Ru/CA-2 catalyst also has a good recyclability, with no obvious activity loss after five runs. Furthermore, in the application of catalytic lignin-oil HDO, the content of hydrocarbons increase from 10.7 % to 95.7 %, showing great potential on the industrial usage.
加氢脱氧(HDO)是将木质素衍生的酚类化合物升级为高质量液体燃料的常用策略,合理设计HDO催化剂对于实现良好的反应性能至关重要。这项工作提出了一种以生物炭和AlO为复合载体的新型钌基催化剂。生物炭的添加可以扩大多孔结构,AlO的添加可以增强载体的酸性。通过调节生物炭和AlO组分的含量,Ru/CA-2催化剂在木质素衍生的酚类化合物的HDO性能方面表现最佳,最佳组分平衡为50%C和50%AlO。该催化剂具有高钌金属分散度(粒径1.38 nm)以激活氢源、适中的酸性以抑制积碳以及丰富的氧空位以促进底物吸附。在230°C下,愈创木酚的转化率达到99.9%,对环己烷的选择性为99.9%。Ru/CA-2催化剂还具有良好的可回收性,经过五次循环后没有明显的活性损失。此外,在催化木质素油HDO的应用中,碳氢化合物的含量从10.7%增加到95.7%,在工业应用中显示出巨大潜力。