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April 19, 2026JSFA reports0 citationsOpen Access

Thin‐layer drying kinetics and mathematical modelling of osmotically pretreated vacuum dried green chilli

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MHMd. Raihanul HaqueMKMd. Iftekhar KabirMIMd. Nahidul Islam

Key Points

  • The research aims to evaluate the drying kinetics and mathematical models for osmotically pretreated green chilli under vacuum conditions.
  • Sliced green chilli samples were osmotically dehydrated at 40°C and 30 °Brix.
  • The samples were then vacuum dried at temperatures of 50, 60, and 70°C at 50 kPa.
  • Drying kinetics were evaluated, focusing on effective moisture diffusivity and activation energy.
  • Mathematical models were applied to determine the best fit for drying curves.
  • Osmotic pretreatment reduced moisture content to 68.87% ± 0.6% before drying.
  • The drying process was primarily in the falling-rate period, significantly shortening times with higher temperatures.
  • Effective moisture diffusivity ranged from 3.92 × 10 −10 to 5.16 × 10 −10 m²/s.
  • The best fit for drying curves was provided by the Page model, with activation energy at 12.57 kJ/mol.

Abstract

Abstract Background Chilli is highly perishable, often requiring drying to extend shelf life. This study assesses and compares the drying kinetics of osmotically pretreated green chilli under vacuum drying conditions while evaluating suitable mathematical models and calculating effective moisture diffusivity and activation energy. Results Sliced chilli samples were osmotically dehydrated (optimised: 40°C, 30 °Brix, 99.32 min) to 68.87% ± 0.6% moisture, then dried in a vacuum oven (50 kPa) at 50, 60, and 70°C. The drying process primarily occurred during the falling‐rate period, with significantly reduced temperatures resulting in shorter drying times (13 h at 50°C vs. 9 h at 70°C). The Page model provided the best fit for the drying curves, and the effective moisture diffusivity ranged from 3.92 × 10 −10 to 5.16 × 10 −10 m 2 /s. Activation energy was determined to be 12.57 kJ/mol. Conclusion Vacuum drying with osmotic pretreatment efficiently dehydrates green chilies and lowers the activation energy, thereby enhancing moisture removal. The Page model, diffusivity values, and insights into activation energy contribute to optimising drying processes. This method can significantly shorten drying times and preserve product quality, offering a promising industrial approach for chilli drying that may help minimise post‐harvest losses.

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Cite This Study

Haque et al. (2026) studied this question.

synapsesocial.com/papers/69e473de010ef96374d8f94chttps://doi.org/10.1002/jsf2.70068
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