Use of Hazelnut Perisperm as an Antioxidant for Production of Sustainable Biodegradable Active Films. 2022

Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano, SA, Italy.

Utilization of food-waste-derived bioactive compounds with biodegradable polymers is an attractive strategy leading innovation in the food packaging sector and contributing to reduce the environmental concerns of plastic packaging disposal. In this field, this work is aimed to use hazelnut perisperm as an antioxidant agent in the production of biodegradable polymeric films for active packaging applications. For this purpose, hazelnut perisperm of a selected particle size (<250 μm) at different percentages (0%, 5% and 10% by weight) was added to a bioderived and compostable polymer suitable for food contact, known as Ecovio®. The blends were produced by a twin-screw extrusion process, while active films were prepared with a pilot lab-scale film blowing plant. The films were characterized in terms of physical−mechanical properties (thermal, tensile, oxygen barrier, optical, sealing ability) and antioxidant activity (DPPH), to investigate their potential use as active packaging. The results showed that the presence of the hazelnut perisperm confers significant antioxidant activity to the films, which is useful in counteracting lipid oxidation and preserve the quality of lipophilic foods, e.g., nut-dried fruits. An extension of the sealability temperature range of the films without compromising their strength was also highlighted. Moreover, the hazelnut perisperm causes a gradual decrease in the stiffness and mechanical strength of the films and an increase in the ductility of the system.

UI MeSH Term Description Entries

Related Publications

Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
July 2019, International journal of biological macromolecules,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
January 2006, Prikladnaia biokhimiia i mikrobiologiia,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
April 2024, Carbohydrate polymers,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
August 2023, Polymers,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
August 2018, Polymers,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
January 2015, Carbohydrate polymers,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
November 2021, ACS omega,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
May 2024, Food chemistry,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
February 2024, Food chemistry,
Paola Scarfato, and Maria Luisa Graziano, and Arianna Pietrosanto, and Luciano Di Maio, and Loredana Incarnato
April 2024, Heliyon,
Copied contents to your clipboard!