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An efficient way to synthesize biomass-based molybdenum carbide catalyst via pyrolysis carbonization and its application for lignin catalytic pyrolysis

BIORESOURCE TECHNOLOGY [2022]
Jiajun Yu, Bingbing Luo, Yihan Wang, Siyu Wang, Kai Wu, Chao Liu, Sheng Chu, Huiyan Zhang
ABSTRACT

In this study, a simple and rapid method was proposed to synthesize orthorhombic α-Mo 2 C as catalyst for lignin catalytic pyrolysis. Biomass in-situ pyrolysis products were used as the carbon source and supporter, the carbonization of Mo precursor was realized under rapid heating. Experimental results show that Pine-Mo 2 C catalyst can achieve lignin pyrolysis vapor bond breaking and deoxidation under normal pressure, and the yield of monocyclic aromatic hydrocarbons is 13.26 wt%, of which aromatic hydrocarbons with side chain account for 74%. The side chain aliphatic hydrocarbons of lignin are effectively retained, and hydrogen consumption is minimized. The characterization of catalyst and experiments of guaiacol, 2-phenoxy-1-phenylethanol and 4,4′-biphenol shows that efficient deoxidation is due to targeted attack of catalyst on C-O. Therefore, Pine-Mo 2 C shows excellent activity in promoting direct bond breaking deoxidation of lignin.

MATERIALS

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