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Title: | Optimization of Lignin–Cellulose Nanofiber-Filled Thermoplastic Starch Composite Film Production for Potential Application in Food Packaging |
Authors: | AbdulRasheed-Adeleke, Tawakaltu Egwim, Evans Chidi Sadiku, Emmanuel Rotimi Ochigbo, Stephen Shaibu |
Keywords: | lignin nanocomposite cellulose nanofiber optimization percent elongation starch tensile strength Young’s modulus |
Issue Date: | 2022 |
Publisher: | Molecules |
Series/Report no.: | 27(22); |
Abstract: | The optimization of the production of thermoplastic starch (TPS) bionanocomposite films for their potential application in food packaging was carried out, according to the Box–Wilson Central Composite Design (CCD) with one center point, using Response Surface Methodology (RSM) and fillers based on lignin and nanofiber, which were derived from bamboo plant. The effects of the fillers on the moisture absorption (MAB), tensile strength (TS), percent elongation (PE) and Young’s modulus (YM) of the produced films were statistically examined. The obtained results showed that the nanocomposite films were best fitted by a quadratic regression model with a high coefficient of determination (R2) value. The film identified to be optimum has a desirability of 76.80%, which is close to the objective function, and contained 4.81 wt. % lignin and 5.00 wt. % nanofiber. The MAB, TS, YM and PE of the identified film were 17.80%, 21.51 MPa, 25.76 MPa and 48.81%, respectively. The addition of lignin and cellulose nanofiber to starch composite was found to have reduced the moisture-absorption tendency significantly and increased the mechanical properties of the films due to the good filler/matrix interfacial adhesion. Overall, the results suggested that the produced films would be suitable for application as packaging materials for food preservation. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/27220 |
Appears in Collections: | Biochemistry |
Files in This Item:
File | Description | Size | Format | |
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molecules-27-07708.pdf | Article | 1.73 MB | Adobe PDF | View/Open |
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