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August 9, 2026Advanced Functional Materials

Mechanochemical–Mediated Lignocellulose Reassembly for High‐Strength, Sustainable Bioplastics

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Authors

YHYanrong HeBWBin WangJQJi‐Yun Qi

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Overview

Randomized trial demonstrates high-strength bioplastics from bamboo, highlighting circular economy benefits.

Key Points

  • This research aims to develop sustainable bioplastics using bamboo residues through a mechanochemical process.
  • Utilized a mechanochemically assisted strategy under mild alkali‐assisted ball milling (AABM) to enhance cellulose and lignin properties.
  • Hot-pressed the modified bamboo into dense, lignin-reinforced composites.
  • Evaluated the mechanical properties and sustainability of the resulting bioplastics.
  • The all-bamboo-based bioplastic (ABBP) achieved a tensile strength of 123.6 MPa and tensile modulus of 2.9 GPa.
  • The compression-molded dense plate exhibited a flexural strength of 125.0 MPa and flexural modulus of 6.8 GPa.
  • The biomass utilization rate was 95.4%, showcasing high efficiency in converting bamboo residues into performance materials.

Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/6a782d862e1896536c840b7dhttps://doi.org/10.1002/adfm.77577
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