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Updated: Sep 4, 2025

Fabric Moisture Uniform Control to Study the Influence of Air Impingement Parameters on Fabric Drying Characteristics
Published on: August 19, 2019
Convective drying of mango enriched with phenolic compounds from grape residue flour under different impregnation
Rafael Augusto Batista de Medeiros1, Edvaldo Vieira da Silva Júnior2, Zilmar Meireles Pimenta Barros3
1Universidade Federal de Pernambuco, Departamento de Nutrição, Av. Moraes Rego, s/n, Cidade Universitária, Recife, PE 50670-901, Brazil; Instituto Federal de Pernambuco, Cabo de Santo Agostinho Campus, Rodovia BR-101 Sul, km 107, Gleba 1A, s/n, Mercês, Cabo de Santo Agostinho, PE 54510-110, Brazil.
Abstract:
This work evaluated the effect of convective drying of mango impregnated with grape residue flour polyphenols under different vacuum impregnation methods with or without performing osmotic treatment and ultrasound on the global quality of dried mango in relation to chemical, microbiological and sensory aspects. Higher retention of carotenoids, phenolic compounds, and ascorbic acid was obtained with shorter drying times and lower oxygen exposure. Impregnated dried samples submitted to ultrasound-assisted vacuum impregnation showed a higher drying rate, greater retention of carotenoids (6.77 µg/g DM), and softer samples. Greater retention of phenolic compounds (1.84 mg GAE/g DM) was obtained for osmotic dehydration-assisted vacuum impregnation dried mango, while osmosonication-assisted impregnation was able to retain the highest ascorbic acid content (7.05 mg/100 g DM). Sensory evaluation showed that the impregnated samples showed good acceptance. The combination of osmotic dehydration and ultrasound could be a suitable way to produce dried mango impregnated with grape residue polyphenols.
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