Benefits of Incorporating Lignin into Starch-Based Films: A Brief Review

Author:

Linan Lamia Zuniga1,Fakhouri Farayde Matta2,Nogueira Gislaine Ferreira3ORCID,Zoppe Justin2ORCID,Velasco José Ignacio2ORCID

Affiliation:

1. Department of Chemical Engineering, Federal University of Maranhão (COEQ/UFMA), Av. dos Portugueses 1966, São Luis 65080-805, Brazil

2. Poly2 Group, Department of Materials Science and Engineering, Universitat Politècnica de Catalunya (UPC Barcelona Tech), Carrer de Colom 11, 08222 Terrassa-Barcelona, Spain

3. Department of Biomedical and Health Sciences, Minas Gerais State University, Passos 37900-106, Brazil

Abstract

Polysaccharides are an excellent renewable source for developing food-packing materials. It is expected that these packages can be an efficient barrier against oxygen; can reduce lipid peroxidation, and can retain the natural aroma of a food commodity. Starch has tremendous potential to be explored in the preparation of food packaging; however, due to their high hydrophilic nature, packaging films produced from starch possess poor protective moisture barriers and low mechanical properties. This scenario limits their applications, especially in humid conditions. In contrast, lignin’s highly complex aromatic hetero-polymer network of phenylpropane units is known to play a filler role in polysaccharide films. Moreover, lignin can limit the biodegradability of polysaccharides films by a physical barrier, mainly, and by non-productive bindings. The main interactions affecting lignin non-productive bindings are hydrophobic interactions, electrostatic interactions, and hydrogen-bonding interactions, which are dependent on the total phenolic –OH and –COOH content in its chemical structure. In this review, the use of lignin as a reinforcement to improve the biodegradability of starch-based films in wet environments is presented. Moreover, the characteristics of the used lignins, the mechanisms of molecular interaction among these materials, and the sensitive physicochemical parameters for biodegradability detection are related.

Funder

Spanish Ministry of Science and Innovation

Publisher

MDPI AG

Reference98 articles.

1. (2024, August 02). Starch-Based Packaging Market. Available online: https://www.futuremarketinsights.com/reports/starch-based-packaging-market.

2. Recent Advances and Future Challenges of the Starch-Based Bio-Composites for Engineering Applications;Wang;Carbohydr. Polym.,2023

3. Research Progress of Starch-Based Biodegradable Materials: A Review;Yu;J. Mater. Sci.,2021

4. Comparative Study of Processing Methods for Starch/Gelatin Films;Fakhouri;Carbohydr. Polym.,2013

5. Bioinspired Colored Degradable Starch-Based Films with Excellent Tensile Strength;Wang;Ind. Crops Prod.,2021

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