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April 30, 2026Selcuk Journal of Agricultural and Food Sciences0 citationsOpen Access

Infrared Drying of Natural and Cultivated Asparagus: Effect of Energy Input on the Drying Characteristics and Physicochemical Quality

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ÖKÖzlem Gökçe KocabayOİOsman İsmail

Key Points

  • This research aims to investigate the drying kinetics and quality of both natural and cultivated asparagus using infrared drying.
  • Examined drying characteristics of natural and cultivated asparagus samples using infrared drying method.
  • Tested power levels at 104, 125, 167, and 209 W.
  • Calculated statistical parameters like R2, RMSE, and χ2 values for quality assessment.
  • Measured effective moisture diffusivity values for both asparagus samples.
  • Natural asparagus drying times decreased from 90 to 45 minutes as power increased from 104 to 209 W.
  • Cultivated asparagus drying times decreased from 120 to 75 minutes at the same power levels.
  • Effective moisture diffusivity values for natural asparagus increased with higher infrared power, reaching 1.90 x 10-9 m2 s-1 at 209 W.
  • Optimal dried product quality was achieved at 104 W for both types of asparagus.

Abstract

The aim of this study is to investigate the drying kinetics of asparagus using the infrared drying method for the first time. In the present study, drying characteristics of both natural and cultivated asparagus samples were examined at 104, 125, 167, and 209 W power levels. The drying times for natural asparagus samples were found to be 90, 75, 60, and 45 minutes at 104, 125, 167, and 209 W, respectively. In contrast, the corresponding drying times for cultivated asparagus samples were 120, 105, 90, and 75 minutes at the same power levels. According to the statistical parameter calculations, the R2, RMSE and χ2 values for natural asparagus samples ranged from 0.9938 to 0.9995, 0.000062 to 0.000779, and 0.007128 to 0.023547, respectively. For cultivated asparagus samples, these values ranged from 0.9919 and 0.9999, 0.000016 and 0.001343 and 0.000738, and 0.027984, respectively. For both products, the effective moisture diffusivity values increased with increasing infrared power. The Deff values for natural asparagus samples were calculated as 7.02 x 10-10, 1.19 x 10-9, 1.53 x 10-9, and 1.90 x 10-9 m2 s-1 at 104, 125, 167, and 209 W, respectively. However, the Deff values for cultivated asparagus samples were found to be 4.28 x 10-9, 4.84 x 10-9, 6.16 x 10-9, and 7.35 x 10-9 m2 s-1 at 104, 125, 167, and 209 W, respectively. High L* and low a*/b* values were obtained at an infrared power level of 104 W for both asparagus samples. The Aghbashlo et al. model was identified as the optimal model for describing the drying behavior of asparagus samples. According to the results of the color analysis, the best dried product quality was obtained at the 104 W power level for both natural and cultivated asparagus samples.

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Cite This Study

Kocabay et al. (2026) studied this question.

synapsesocial.com/papers/69f2a4f18c0f03fd67764187https://doi.org/10.15316/selcukjafsci.1828269
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