The aim of this work has been to evaluate the combined effect of modified atmosphere packaging (MAP), and a gaseous ozone pre-treatment on the main microbiological and chemical parameters of strawberries, raspberries and blueberries during cold storage. The three types of small fruit were exposed to 13 mg m-3 of gaseous ozone (about 6 ppm) for 16 h at 1 °C (±0.5 °C) and then stored for 15 d under MAP (10 kPa O2 and 40 kPa CO2) or in air at 4 °C. The combined technology determined a significant (P <= 0.05) reduction of the yeast and mould counts, compared to samples stored in air and MAP without any pre-treatment. The main quality parameters of the three types of fruit were not affected by combined ozone pre-treatment and MAP storage. The combined effects of ozone and MAP led to a better preservation of the total and individual anthocyanins in the blueberries during cold storage. In conclusion, the exposure to gaseous ozone before packaging followed by storage under MAP could be a useful technological approach to extend the postharvest storage of small berry fruit.

Effect of modified atmosphere packaging (MAP) and gaseous ozone pre-packaging treatment on the physico-chemical, microbiological and sensory quality of small berry fruit

Loris Pinto;Amedeo Palma;Maria Cefola;Bernardo Pace;Salvatore D'Aquino;Federico Baruzzi
2020

Abstract

The aim of this work has been to evaluate the combined effect of modified atmosphere packaging (MAP), and a gaseous ozone pre-treatment on the main microbiological and chemical parameters of strawberries, raspberries and blueberries during cold storage. The three types of small fruit were exposed to 13 mg m-3 of gaseous ozone (about 6 ppm) for 16 h at 1 °C (±0.5 °C) and then stored for 15 d under MAP (10 kPa O2 and 40 kPa CO2) or in air at 4 °C. The combined technology determined a significant (P <= 0.05) reduction of the yeast and mould counts, compared to samples stored in air and MAP without any pre-treatment. The main quality parameters of the three types of fruit were not affected by combined ozone pre-treatment and MAP storage. The combined effects of ozone and MAP led to a better preservation of the total and individual anthocyanins in the blueberries during cold storage. In conclusion, the exposure to gaseous ozone before packaging followed by storage under MAP could be a useful technological approach to extend the postharvest storage of small berry fruit.
2020
Istituto di Scienze delle Produzioni Alimentari - ISPA
Modified atmosphere packaging
Gaseous ozone
Microbial control
Anthocyanins
Postharvest storage
Berry quality
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/377744
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