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Updated: May 28, 2026

Designed for Molecular Recycling: A Lignin-Derived Semi-aromatic Biobased Polymer
Published on: November 30, 2020
Sustainable closed-loop recyclable bioplastics
Xia Sun1, Hao Sun1, Jiaying Zhu1
1Sustainable Functional Biomaterials Laboratory, Bioproducts Institute, Faculty of Forestry, University of British Columbia, Vancouver V6T1Z4, Canada.
Abstract:
Fossil plastics are versatile but generally cause serious pollution due to low recycling rates and non-degradability. Biodegradable bioplastics are eco-friendly, but they fall short in properties like stretchability and toughness. Moreover, the use of cross-linking agents and the need for costly reagents and complex procedures hinder their recyclability. Here, we introduce celluplastic, a sustainable bioplastic constructed from multiscale wood-derived microfibrillated cellulose network, dialcohol cellulose nanorods, and modified cellulose molecular chains. This hierarchical design enables celluplastic to match fossil plastics in terms of strength (>30 MPa), strain (>100%), transparency, and colorlessness, while outperforming other bioplastics. Importantly, celluplastic combines inherent biodegradability with straightforward aqueous closed-loop recyclability, demonstrated for over 100 cycles without substantial loss of performance. Our work establishes a scalable pathway for designing high-performance, circular bioplastics that retain fossil-plastic functionality with sustainable end-of-life solutions. This approach could accelerate the adoption of renewable materials in practical plastic applications.
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