Hydrodeoxygenation of water-insoluble bio-oil to alkanes using a highly dispersed Pd–Mo catalyst

Bio-oil, produced by the destructive distillation of cheap and renewable lignocellulosic biomass, contains high energy density oligomers in the water-insoluble fraction that can be utilized for diesel and valuable fine chemicals productions. Here, we show an efficient hydrodeoxygenation catalyst tha...

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Published inNature communications Vol. 8; no. 1; pp. 591 - 10
Main Authors Duan, Haohong, Dong, Juncai, Gu, Xianrui, Peng, Yung-Kang, Chen, Wenxing, Issariyakul, Titipong, Myers, William K., Li, Meng-Jung, Yi, Ni, Kilpatrick, Alexander F. R., Wang, Yu, Zheng, Xusheng, Ji, Shufang, Wang, Qian, Feng, Junting, Chen, Dongliang, Li, Yadong, Buffet, Jean-Charles, Liu, Haichao, Tsang, Shik Chi Edman, O’Hare, Dermot
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 19.09.2017
Nature Publishing Group
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Summary:Bio-oil, produced by the destructive distillation of cheap and renewable lignocellulosic biomass, contains high energy density oligomers in the water-insoluble fraction that can be utilized for diesel and valuable fine chemicals productions. Here, we show an efficient hydrodeoxygenation catalyst that combines highly dispersed palladium and ultrafine molybdenum phosphate nanoparticles on silica. Using phenol as a model substrate this catalyst is 100% effective and 97.5% selective for hydrodeoxygenation to cyclohexane under mild conditions in a batch reaction; this catalyst also demonstrates regeneration ability in long-term continuous flow tests. Detailed investigations into the nature of the catalyst show that it combines hydrogenation activity of Pd and high density of both Brønsted and Lewis acid sites; we believe these are key features for efficient catalytic hydrodeoxygenation behavior. Using a wood and bark-derived feedstock, this catalyst performs hydrodeoxygenation of lignin, cellulose, and hemicellulose-derived oligomers into liquid alkanes with high efficiency and yield. Bio-oil is a potential major source of renewable fuels and chemicals. Here, the authors report a palladium-molybdenum mixed catalyst for the selective hydrodeoxygenation of water-insoluble bio-oil to mixtures of alkanes with high carbon yield.
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ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-017-00596-3