Image analysis-based discoloration rate quantification and kinetic modeling for shelf-life prediction in herb-coated pear slices

Author:

R. Sathya,Rasane Prasad,Singh Aishvina,Singh Jyoti,Kaur Sawinder,Nanda Vikas,Kaur Jaspreet,Gunjal Mahendra,Bhadariya Vishesh,Ercisli Sezai,Ullah Riaz,Ali Essam A.

Abstract

AbstractThe present research study aimed to examine three different herb extract's effects on the discoloration rate of fresh-cut pear slices using an image analysis technique. Pear slices were sprayed and dip-coated with Ocimum basilicum, Origanum vulgare, and Camellia sinensis (0.1 g/ml) extract solution. During 15 days storage period with three days intervals, all sprayed/dip-coated pear slices were analyzed for the quality attribute (TA) and color parameters notably a*, b*, hue angle (H*), lightness (L*), and total color change (ΔE). Further, order kinetic models were used to observe the color changes and to predict the shelf-life. The results obtained showed that the applicability of image analysis helped to predict the discoloration rate, and it was better fitted to the first-order (FO) kinetic model (R2 ranging from 0.87 to 0.99). Based on the kinetic model, color features ΔE and L* was used to predict the shelf-life as they had high regression coefficient values. Thus, the findings obtained from the kinetic study demonstrated Camellia sinensis (assamica) extract spray-coated pear slices reported approximately 28.63- and 27.95-days shelf-stability without much discoloration compared with all other types of surface coating.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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