Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/68381
metadata.dc.identifier.doi: https://doi.org/10.56042/ijftr.v51i3.24186
Title: Reinforcement of tapioca/glucomannan/poly(lactic acid) biothermoplastic composite using cellulose derivatives
Authors: A Harsojuwono, B
Hartiati, A
L Yulianti, N
A Ilyas, R
Keywords: Biothermoplastic composite,;Eco-friendly,;Cellulose derivative,;Tapioca;Glucomannan;Poly(lactic acid)
Issue Date: Sep-2026
Publisher: NIScPR-CSIR, India
Abstract: This research aims to determine the cellulose-derived filler that produces the best characteristics of the tapioca/glucomannan/polylactic acid (TP/GM/PLA) biothermoplastic composite. This research tried 10 treatments: control, use of microfibril cellulose (MFC), nanocrystalline cellulose (NCC), and nanofibril cellulose (NFC) with concentrations of 1.5, 2.5, and 3.5%, respectively. Measurements/observations: mechanical, physical, chemical, biodegradation, and thermal properties. The results showed that the TP/GM/PLA biothermoplastic composite with 2.5% NCC produced the best characteristics, with a tensile strength value of 24,668 MPa, elongation at break of 3.123%, Young's modulus of 1.843 GPA, and WVTR of 81.22 g/m2.day, O2TR of 85.46 ml/m2.day, WHC of 0.17%, swelling of 2.92%, glass transition temperature of 60.98 oC, crystallinity temperature of 68.19 oC, melting point of 159.76 oC, melt flow rate of 8.55 g/min, density of 1.25 g/cm3, biodegradation time of 11.67 days. Furthermore, a 12% weight loss occurred up to 600 °C, with the highest DTA peak at 493.9°C with a value of 28 μV, and a crystallinity peak at a 2Ɵ angle of 29.51°C. This composite contains O-H (alcohol), C=O, C=C (aromatic ring), and C-O functional groups. The longitudinal surface profile contains small, densely packed spots with no obvious holes. The transverse surface profile shows all holes closed, compact, and dense.
Page(s): 393-404
ISSN: 0975-1025 (Online) ; 0971-0426 (Print)
Appears in Collections:IJFTR Vol.51(3) [September 2026]

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