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May 17, 2026ChemSusChem0 citations

Enhanced Depolymerization Performances in Converting Larch Lignin to Monophenolic Compounds by Heterogeneous Catalysts From Transition Metal‐Substituted Molybdovanadophosphoric Heteropolyacid and Alkaline Ionic Liquids With Hydrogen Peroxide

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YZYue ZhaoQZQinghua ZhaoZSZhe Sun

Key Points

  • This research aims to enhance the depolymerization of larch lignin into valuable monophenolic compounds.
  • Modified polyoxometalates were developed using Cu2+, Fe3+, and Co2+ to enhance reaction efficiency.
  • A multiactive catalyst was created by combining these metal-modified catalysts with alkaline ionic liquids and hydrogen peroxide.
  • The reaction occurred at 160°C for 6 hours in an ethanol/water/H2O2 system.
  • Total yield of monophenols reached 15.62 wt%, with vanillin at 5.93 wt% and ethyl vanillate at 9.1 wt%.
  • Cu-based polyoxometalates/ionic liquid catalysts demonstrated effective cleavage of C–C and C–O bonds.
  • The catalyst showed excellent durability, being recyclable up to 4 times without loss of performance.

Abstract

The selective preparation of vanillin (Van) and ethyl vanillate (EV) remains a major challenge in depolymerizing lignin. Larch lignin is full of coniferyl alcohol unit, which is preferred to produce Van and EV. In this study, the counterions in H 5 PMo 10 V 2 O 40 were replaced with different metal ions (Cu 2+ , Fe 3+ , and Co 2+ ) to develop the modified polyoxometalates, which were then combined with alkaline ionic liquid (IL) to construct a multiactive catalyst possessing acidic, basic, and oxidizing properties. The incorporation of Cu significantly enhanced the cleavage of C–C and C–O bonds in larch lignin at 160°C for 6 h in an ethanol/water/H 2 O 2 system. Under these conditions, the total yield of monophenol reached 15.62 wt%, Van and EV were dominant with the yield of 5.93 and 9.1 wt%, respectively. The fracture of lignin model compounds showed Cu‐based polyoxometalates/IL catalysts are effective in selectively preparing EV and Van. The catalyst can be recycled up to 4 times with excellent stability and recoverability. This study provides a more effective strategy for converting waste biomass into valuable platform chemicals.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/6a095c2c7880e6d24efe23a5https://doi.org/10.1002/cssc.70719
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