Starch-based bio-nanocomposites films reinforced with cellulosic nanocrystals extracted from Kudzu (Pueraria montana) vine

In the current study, starch-based active nanocomposite films reinforced with cellulosic nanocrystals (CNCs) of Kudzu were developed as an alternative option to existing biodegradable plastic packaging. Firstly, Kudzu CNCs were prepared by subjecting Kudzu fibers to the processes such as depolymeriz...

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Veröffentlicht in:International journal of biological macromolecules 2022-04, Vol.203, p.350-360
Hauptverfasser: Punia Bangar, Sneh, Whiteside, William Scott, Dunno, Kyle D., Cavender, George Armstrong, Dawson, Paul, Love, Reid
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Sprache:eng
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Zusammenfassung:In the current study, starch-based active nanocomposite films reinforced with cellulosic nanocrystals (CNCs) of Kudzu were developed as an alternative option to existing biodegradable plastic packaging. Firstly, Kudzu CNCs were prepared by subjecting Kudzu fibers to the processes such as depolymerization followed by bleaching, acid hydrolysis, and mechanical dispersion. Further, nanocomposite films were formulated by blending pearl millet starch (PMS) and glycerol (30%) with different Kudzu CNCs compositions (0–7 wt%) using the solution casting process. The prepared PMS/Kudzu CNCs nanocomposite films were analyzed for their morphological (SEM and TEM), thermal (TGA and DSC), structural (FTIR), mechanical (tensile strength (TS), elongation at break and young modulus), and water barrier properties. The PMS/Kudzu CNCs films possessed improved crystallinity, heat and moisture-barrier properties, TS, and young-modulus after reinforcement. The optimum reinforcer concentration of CNCs was 5%. The Kudzu CNCs reinforced starch film offers a promising candidate for developing biodegradable films. •It was the first attempt to isolate cellulose nanocrystals from the Kudzu stem.•Starch-based nanocomposites films were developed by reinforcing cellulose nanocrystals.•Physical, mechanical, and barrier properties of the film were improved as CNCs added.•Thermal stabilities of the film enhanced with the addition of CNCs.•CNCs reinforced starch film offers a promising candidate for biodegradable films.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2022.01.133