Development and Characterization of Polylactic Acid (PLA)-Based Nanocomposites Used for Food Packaging

Author:

Moldovan Andrei1,Cuc Stanca2ORCID,Prodan Doina2,Rusu Mircea3,Popa Dorin4,Taut Adrian Catalin5,Petean Ioan6ORCID,Bomboş Dorin78,Doukeh Rami8ORCID,Nemes Ovidiu1ORCID

Affiliation:

1. Department Environmental Engineering and Sustainable Development Entrepreneurship, Technical University of Cluj-Napoca, 400641 Cluj-Napoca, Romania

2. “Raluca Ripan” Institute of Research in Chemistry, “Babes Bolyai” University, 400294 Cluj-Napoca, Romania

3. Lamar Auto Services S.R.L. Corpadea, 407038 Cluj-Napoca, Romania

4. Faculty of Exact Sciences and Engineering, “1 Decembrie 1918” University of Alba Iulia, 510009 Alba Iulia, Romania

5. Applied Electronics Department, Technical University of Cluj-Napoca, 400027 Cluj-Napoca, Romania

6. Faculty of Chemistry and Chemical Engineering, “Babes-Bolyai” University, 11 Arany Janos Street, 400084 Cluj-Napoca, Romania

7. S.C. Medacril S.R.L., 8 Carpați Street, 551022 Mediaş, Romania

8. Faculty of Petroleum Refining and Petrochemistry, Petroleum-Gas University of Ploiesti, 39 Bucharest Blvd., 100680 Ploiesti, Romania

Abstract

The present study is focused on polylactic acid (PLA) blending with bio nanoadditives, such as Tonsil® (clay) and Aerosil®, to obtain nanocomposites for a new generation of food packaging. The basic composition was enhanced using Sorbitan oleate (E494) and Proviplast as plasticizers, increasing the composite samples’ stability and their mechanical strength. Four mixtures were prepared: S1 with Tonsil®; S2 with Aerosil®; S3 with Aerosil® + Proviplast; and S4 with Sabosorb. They were complexly characterized by FT-IR spectroscopy, differential scanning calorimetry, mechanical tests on different temperatures, and absorption of the saline solution. FTIR shows a proper embedding of the filler component into the polymer matrix and DSC presents a good stability at the living body temperature for all prepared samples. Micro and nanostructural aspects were evidenced by SEM and AFM microscopy, revealing that S3 has the most compact and uniform filler distribution and S4 has the most irregular one. Thus, S3 evidenced the best diametral tensile strength and S4 evidenced the weakest values. All samples present the best bending strength at 18 °C and fair values at 4 °C, with the best values being obtained for the S1 sample and the worst for S4. The lack of mechanical strength of the S4 sample is compensated by its best resistance at liquid penetration, while S1 is more affected by the liquid infiltrations. Finally, results show that PLA composites are suitable for biodegradable and disposable food packages, and the desired properties could be achieved by proper adjustment of the filler proportions.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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