Abstract

Lignin, a renewable source of aromatic chemicals in nature, has attracted increasing attention due to its structure and application prospect. Catalytic solvolysis has developed as a promising method for the production of value-added products from lignin. The liquefaction process is closely associated with heating methods, catalysts and solvents. Microwave assisted lignin liquefaction in hydrogen donor solvent with the presence of catalysts has been confirmed to be effective to promote the production of liquid fuels or fine chemicals. A great number of researchers should be greatly appreciated on account of their contributions on the progress of microwave technology in lignin liquefaction. In this study, microwave assisted liquefaction of lignin in a hydrogen donor solvent is extensively overviewed, concerning the effect of different solvents and catalysts. This review concludes that microwave assisted liquefaction is a promising technology for the valorization of lignin, which could reduce the reaction time, decrease the reaction temperature, and finally fulfill the utilization of lignin in a relatively mild condition. In the future, heterogeneous catalysts with high catalytic activity and stability need to be prepared to achieve the need for large-scale production of high-quality fuels and value-added chemicals from lignin.

Highlights

  • Biomass is regarded as one of the most promising renewable feedstocks for fossil energy, as it accounts for about 10% of the world’s energy storage [1]

  • This review focuses on presenting recent developments in microwave assisted liquefaction of lignin for renewable fuels and value-added chemicals, with the help of different types of solvents and catalysts

  • The results indicated that microwave assisted liquefaction of lignin in glycerol and 1,4-butanediol could provide a good alternative to petroleum-derived materials

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Summary

Introduction

Biomass is regarded as one of the most promising renewable feedstocks for fossil energy, as it accounts for about 10% of the world’s energy storage [1]. In recent decades, varied strategies have been explored for the utilization and valorization of lignin, including gasification, pyrolysis and liquefaction [14,15,16,17,18,19]. Among those conversion methods, lignin liquefaction with microwave heating has exhibited to be effective for the conversion of lignin in mild conditions, which is of better energy efficiency and higher selectivity. This review focuses on presenting recent developments in microwave assisted liquefaction of lignin for renewable fuels and value-added chemicals, with the help of different types of solvents and catalysts

Chemical Structure of Lignin
Microwave Assisted Lignin Liquefaction in Hydrogen Donor Solvents
Effect of Solvents
Hydrogen Donor Solvent of Single Components
Hydrogen Donor Solvent of Multi-Component
Effect of Catalysts
Homogeneous Catalyst
Heterogeneous Catalyst
Conventional Lignin Liquefaction in Hydrogen Donor Solvents
MPa H2
Findings
Conclusions
Full Text
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