This study combines the use of corn starch and Tetradesmus obliquus microalgae for the production of antioxidant starch films as flexible packaging material. Starch was plasticized with glycerol and blended with 1 w% polyallylamine chosen as an agent to modify the film physical properties. The addition of polyallylamine improved film water stability and water vapor transmission rate as well as mechanical stiffness and tenacity. The dried Tetradesmus obliquus microalgae, which showed an EC50 value of 2.8 mg/mg DPPH (2.2-Diphenyl-1-picrylhydrazyl radical), was then used as antioxidant filler. The addition of microalgae provided the films with good antioxidant activity, which increased with microalgae content increasing. To our knowledge, this is the first study reporting the development of sustainable bioactive packaging films composed of almost 100% starch, and follows the European union’s goals on plastics strategy concerning the promotion of bio-based, compostable plastics and the setting up of approaches to prevent food waste with a simple plastic packaging.

Sustainable bioactive packaging based on thermoplastic starch and microalgae / Tedeschi, A. M.; Di Caprio, F.; Piozzi, A.; Pagnanelli, F.; Francolini, I.. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 23:1(2022), pp. 1-21. [10.3390/ijms23010178]

Sustainable bioactive packaging based on thermoplastic starch and microalgae

Di Caprio F.;Piozzi A.;Pagnanelli F.;Francolini I.
2022

Abstract

This study combines the use of corn starch and Tetradesmus obliquus microalgae for the production of antioxidant starch films as flexible packaging material. Starch was plasticized with glycerol and blended with 1 w% polyallylamine chosen as an agent to modify the film physical properties. The addition of polyallylamine improved film water stability and water vapor transmission rate as well as mechanical stiffness and tenacity. The dried Tetradesmus obliquus microalgae, which showed an EC50 value of 2.8 mg/mg DPPH (2.2-Diphenyl-1-picrylhydrazyl radical), was then used as antioxidant filler. The addition of microalgae provided the films with good antioxidant activity, which increased with microalgae content increasing. To our knowledge, this is the first study reporting the development of sustainable bioactive packaging films composed of almost 100% starch, and follows the European union’s goals on plastics strategy concerning the promotion of bio-based, compostable plastics and the setting up of approaches to prevent food waste with a simple plastic packaging.
2022
starch; flexible packaging; microalgae; antioxidant packaging; food
01 Pubblicazione su rivista::01a Articolo in rivista
Sustainable bioactive packaging based on thermoplastic starch and microalgae / Tedeschi, A. M.; Di Caprio, F.; Piozzi, A.; Pagnanelli, F.; Francolini, I.. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 23:1(2022), pp. 1-21. [10.3390/ijms23010178]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1607734
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