Green Additives in Chitosan-based Bioplastic Films: Long-term Stability Assessment and Aging Effects

Publication date

2024-07-08

Authors

Schnabl, Kordula BarbaraISNI 0000000526456572
Mandemaker, LaurensORCID 0000-0003-2630-7855ISNI 000000049261341X
Ganjkhanlou, Yadolah
Vollmer, InaORCID 0000-0001-9917-1499ISNI 0000000493071579
Weckhuysen, Bert M.ORCID 0000-0001-5245-1426ISNI 0000000110540180

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Document Type

Article
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cc_by

Abstract

Although biomass-based alternatives for the manufacturing of bioplastic films are an important aspect of a more sustainable future, their physicochemical properties need to be able to compete with the existing market to establish them as a viable alternative. One important factor that is often neglected is the long-term stability of renewables-based functional materials, as they should neither degrade after a day or week, nor last forever. One material showing high potential in this regard, also due to its intrinsic biodegradability and antibacterial properties, is chitosan, which can form stable, self-standing films. We previously showed that green additives introduce a broad tunability of the chitosan-based material properties. In this work, we investigate the long-term stability and related degradation processes of chitosan-based bioplastics by assessing their physicochemical properties over 400 days. It was found that the film properties change similarly for samples stored in the fridge (4 °C, dark) as at ambient conditions (20 °C, light/dark cycles of the day). Additives with high vapor pressure, such as glycerol, evaporate and degrade, causing both brittleness and discoloration. In contrast, films with the addition of crosslinking additives, such as citric acid, show high stability also over a long time, bearing great preconditions for practical applications. This knowledge serves as a stepping-stone to utilizing chitosan as an alternative material for renewable-resourced bioplastic products.

Keywords

Bioplastic Films, Chitosan, Materials Aging, Microscopy, Renewable Resources, General Chemical Engineering, General Energy, General Materials Science, Environmental Chemistry, SDG 7 - Affordable and Clean Energy

Citation

Schnabl, K B, Mandemaker, L D B, Ganjkhanlou, Y, Vollmer, I & Weckhuysen, B M 2024, 'Green Additives in Chitosan-based Bioplastic Films : Long-term Stability Assessment and Aging Effects', ChemSusChem, vol. 17, no. 13, e202301426. https://doi.org/10.1002/cssc.202301426