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HomeJournalsSigma Journal of Engineering and Natural Sciences10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-okra-by-infrared-radiation
SJSigma Journal of Engineering and Natural Sciences
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Article Open Access1 January 2019

Drying of Okra By Infrared Radiation

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Seda TANTA*, and İbrahim DOYMAZ

Sigma Journal of Engineering and Natural Sciences 2019, Vol. 37, Issue 1, pp. 93-104; doi.org/10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-okra-by-infrared-radiation

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Abstract

In this study, we tried to evaluate mass transfer during an infrared drying of okra. Infrared radiation (IR) power (62, 74, 88 and 104 W) as drying parameter is evaluated on drying characteristics of okra. The infrared power affected the drying and colour characteristics of okra. Drying time was found decreasing with increase in infrared power. Four thin-layer drying models were evaluated for moisture ratios using nonlinear regression analysis. The results of regression analysis indicated that the Midilli & Kucuk model gave the excellent fit for the drying data under all drying conditions with the lowest 2 and RMSE values and highest R2 value. The effective moisture diffusivity at each infrared power was determined by Fick’s second law of diffusion, an increase in the power led to increase in the effective moisture diffusivity between 8.54×10−10 and 2.32×10−9 m2/s. The dependence of effective moisture diffusivity on infrared power was expressed by a modified Arrhenius type equation. Activation energy was estimated as 3.91 kW/kg.

Keywords: Activation energy; effective moisture diffusivity; infrared drying; mathematical modelling; okra.

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TANTA, S.; DOYMAZ, İ. Drying of Okra By Infrared Radiation. Sigma Journal of Engineering and Natural Sciences 2019, Vol. 37, pp. 93-104. https://doi.org/10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-okra-by-infrared-radiation

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Publication History
Published1 January 2019
Versionv1
AccessOpen Access
10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-okra-by-infrared-radiation
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Infrared Drying Characteristics of Jerusalem Artichoke Slicesİbrahim DOYMAZSigma Journal of Engineering and Natural Sciences, 1 January 2017Drying of Black Carrot Pomace in an Infrared Dryer Kinetics Modelling and Energy Efficiencyİbrahim DOYMAZSigma Journal of Engineering and Natural Sciences, 1 January 2019Investigation of infrared drying of pomegranate by-productsİ. Doymaz, A. S. KipcakSigma Journal of Engineering and Natural Sciences, 1 January 2018
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