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February 9, 20260 citationsOpen Access

Modulated Solar Irradiation: Impact on Drying Behavior and Quality Attributes of Chile de Agua (Capsicum annuum L.) Peppers Harvested at Different Maturity Stages

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DGDiana Paola García-MoreiraIMIvan MorenoNPNeith Pacheco

Key Points

  • The study aims to assess how modulated solar irradiation affects drying behavior and quality of Chile de Agua peppers at different maturity stages.
  • Two types of solar dryers were used: conventional and one with dynamic irradiance control.
  • Drying behavior was analyzed using moisture ratio and drying rate.
  • Quality attributes were assessed through color measurements and bioactive compound profiling.
  • Unripe peppers dried 14% faster than overripe ones.
  • CSD preserved color better, achieving ∆E of 15.29 for ripe chilies.
  • The SDIC method retained more total capsaicinoids and flavonoids, especially in ripe fruits, with levels up to 1700 µg/g DW of capsaicinoids.

Abstract

Drying chili peppers is a crucial technique for their preservation, as it extends shelf life while minimizing the degradation of high-value bioactive compounds. This study evaluated the impact of modulated solar irradiation on the drying kinetics and quality retention of “Chile de Agua” (Capsicum annuum L.) peppers across three maturity stages (unripe, ripe, and overripe). Two cylindrical solar dryers were employed: a conventional solar dryer (CSD) and a novel Solar Dryer with Dynamic Irradiance Control (SDIC) utilizing Polymer Dispersed Liquid Crystal (PDLC) technology. Drying behavior was analyzed through moisture ratio and drying rate, while quality attributes were assessed via color parameters, capsaicinoid content, and flavonoid profiling using UPLC-PDA-ESI-MS. Results demonstrated that the maturity stage significantly influences drying kinetics; unripe fruits exhibited the fastest dehydration rate, reducing drying time by approximately 14% compared to overripe fruits. Regarding quality, the CSD better preserved color (ΔE of 15.29 for ripe chilies). At the same time, the SDIC system significantly favored the retention of bioactive compounds, maintaining higher concentrations of total capsaicinoids (up to 1700 µg/g DW) and flavonoids such as luteolin (15.9 mg/100 g DW) and quercitrin (11.5 mg/100 g DW), especially in ripe fruits. The findings suggest that optimal processing requires selecting the drying method based on the targeted final use: CSD for color preservation in unripe chilies, or SDIC for maximizing bioactive retention in ripe fruits.

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Cite This Study

García-Moreira et al. (2026) studied this question.

synapsesocial.com/papers/69897a06f0ec2af6756e833dhttps://doi.org/10.3390/pr14040582
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