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HomeJournalsSigma Journal of Engineering and Natural Sciences10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-black-carrot-pomace-in-an-infrared-dryer-kinetics-modelling-and-energy
SJSigma Journal of Engineering and Natural Sciences
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Article Open Access1 January 2019

Drying of Black Carrot Pomace in an Infrared Dryer Kinetics Modelling and Energy Efficiency

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İbrahim DOYMAZ*

Sigma Journal of Engineering and Natural Sciences 2019, Vol. 37, Issue 1, pp. 71-84; doi.org/10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-black-carrot-pomace-in-an-infrared-dryer-kinetics-modelling-and-energy

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Abstract

The effect of different infrared power levels on drying kinetics of black carrot pomace was investigated in this study. The black carrot pomace dried at 104, 146, 188 and 230 W infrared powers. An increase in the infrared power resulted in a significant reduction in the drying time. Five mathematical models were used to represent experimental data. The Midilli et al. model is satisfactorily described drying kinetics. The values of effective diffusivity were calculated in a range of 0.58 to 2.94  10-9 m2/s and increased with the infrared power increase. The activation energy was estimated by a modified Arrhenius type equation and calculated to be 3.65 kW/kg. The highest energy efficiency was recorded for the samples dried at 230 W.

Keywords: Activation energy; black carrot pomace; effective diffusivity; energy efficiency; infrared drying; mathematical modeling.

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DOYMAZ, İ. Drying of Black Carrot Pomace in an Infrared Dryer Kinetics Modelling and Energy Efficiency. Sigma Journal of Engineering and Natural Sciences 2019, Vol. 37, pp. 71-84. https://doi.org/10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-black-carrot-pomace-in-an-infrared-dryer-kinetics-modelling-and-energy

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Publication History
Published1 January 2019
Versionv1
AccessOpen Access
10.62051/ytu.sigma-journal-of-engineering-and-natural-sciences-drying-of-black-carrot-pomace-in-an-infrared-dryer-kinetics-modelling-and-energy
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