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Optimization of cellulose nanofiber loading and processing conditions during melt extrusion of poly(3-hydroxybutyrateco-3-hydroxyhexanoate) bionanocomposites


Citation

Shazleen, Siti Shazra and Sabaruddin, Fatimah Athiyah and Ando, Yoshito and Ariffin, Hidayah (2023) Optimization of cellulose nanofiber loading and processing conditions during melt extrusion of poly(3-hydroxybutyrateco-3-hydroxyhexanoate) bionanocomposites. Polymers, 15 (3). art. no. 671. pp. 1-15. ISSN 2073-4360

Abstract

This present study optimized the cellulose nanofiber (CNF) loading and melt processing conditions of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) P(HB-co-11% HHx) bionanocomposite fabrication in twin screw extruder by using the response surface methodology (RSM). A face-centered central composite design (CCD) was applied to statistically specify the important parameters, namely CNF loading (1–9 wt.%), rotational speed (20–60 rpm), and temperature (135–175 ◦C), on the mechanical properties of the P(HB-co-11% HHx) bionanocomposites. The developed model reveals that CNF loading and temperature were the dominating parameters that enhanced the mechanical properties of the P(HB-co-11% HHx)/CNF bionanocomposites. The optimal CNF loading, rotational speed, and temperature for P(HB-co-11% HHx) bionanocomposite fabrication were 1.5 wt.%, 20 rpm, and 160 ◦C, respectively. The predicted tensile strength, flexural strength, and flexural modulus for these optimum conditions were 22.96 MPa, 33.91 MPa, and 1.02 GPa, respectively, with maximum desirability of 0.929. P(HB-co-11% HHx)/CNF bionanocomposites exhibited improved tensile strength, flexural strength, and modulus by 17, 6, and 20%, respectively, as compared to the neat P(HB-co-11% HHx). While the crystallinity of P(HB-co-11% HHx)/CNF bionanocomposites increased by 17% under the optimal fabrication conditions, the thermal stability of the P(HB-co-11% HHx)/CNF bionanocomposites was not significantly different from neat P(HB-co-11% HHx).


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Additional Metadata

Item Type: Article
Divisions: Faculty of Biotechnology and Biomolecular Sciences
Institute of Tropical Forestry and Forest Products
DOI Number: https://doi.org/10.3390/polym15030671
Publisher: Multidisciplinary Digital Publishing Institute
Keywords: Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate); Cellulose nanofiber; Bionanocomposite; Melt-extrusion processing; Optimization; Response surface methodology
Depositing User: Ms. Nur Faseha Mohd Kadim
Date Deposited: 19 Aug 2024 04:21
Last Modified: 19 Aug 2024 04:21
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.3390/polym15030671
URI: http://psasir.upm.edu.my/id/eprint/109282
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