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Research progress on in-situ catalytic hydrodeoxygenation of lignin
Abstract:The development of renewable energy and carbon neutrality is imperativedue to the depletion of fossil fuels and environm... Open+
Abstract:

The development of renewable energy and carbon neutrality is imperativedue to the depletion of fossil fuels and environmental pollution. Lignin, as the only abundant natural aromatic polymer, can be valorized through depolymerization and upgrading to produce high-value chemicals and fuels , offering a promising alternative to fossil resources. The bio-oil and chemicals generated from lignin depolymerization have limited direct applications due to their high oxygen content. The strategy of hydrodeoxygenation (HDO) provides a promising pathway for the development of high-value biobased fuels and chemicals. However, the traditional lignin valorization process , which is dominated by high-pressure molecular hydrogen, poses safety hazards, hindering its industrial promotion. In-situ catalytic HDO of lignin can be an alternative strategy. It utilizes solvents or lignin's functional groups as hydrogen sources. During the catalytic process , hydrogen is generated in situ and acts on the substrate, achieving efficient value-added conversion. This method not only effectively avoids the need for extermal high-pressure hydrogen supply but also enables in-situ upgrading of lignin under mild conditions, improving atomic utilization and product selectivity. Through the study of in-situ catalytic HDO strategies for lignin, the research progress of in-situ hydrogen supply in recent years is summarized. The analysis includes the reaction mechanisms of four commonly used in-situ catalytic HDO strategies: combined reforming and HDO (RHDO) , combined metal hydrolysis and HDO process (HHDO) , catalytic transfer hydrogenation (CTH), and self-supported hydrogenolysis (SSH). The status of various strategies is discussed, and the research focus, challenges, and prospects of in-situ catalytic HDO strategies for lignin are explored.

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Authors:

  • ZHAO Yuying
  • ZHAN Jiahui
  • HU Rui
  • LUO Gang
  • ZHANG Shicheng

Units

  • Department of Environmental Science and Engineering Fudan University
  • Shanghai Technical Service Platform for Pollution Control and Resource Utilization of Organic Waste
  • Shanghai Key Laboratory of Atmospheric Particle Pollution and PreventionLAP3
  • Shanghai Institute of Pollution Control and Ecological Security

Keywords

  • Lignin
  • Hydrodeoxygenation
  • Aqueous phase reforming
  • Lignin
  • Catalytic transfer hydrogenation
  • Selfsupported hydrogenolysis

Funded projects

国家自然科学基金资助项目(22278085)

Citation

ZHAO Yuying,ZHAN Jiahui,HU Rui,LUO Gang,ZHANG Shicheng.Research progress on in-situ catalytic hydrodeoxygenation of lignin[J/OL].Energy Environmental Protection:1-11[2024-01-18].https://doi.org/10.20078/j.eep.20240117.

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