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Drying of Pomegranate Arils and Selection of a Suitable Drying Model

机译:石榴钉的干燥及合适的干燥模型的选择

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The drying characteristics of pomegranate arils were investigated in temperature range of 50-70 °C. The increase in drying air temperature resulted in a decrease in drying time. The drying rate was found to increase with temperature, thereby reducing the total drying time. Thirteen drying models were evaluated in the kinetics research. The goodness of fit of the proposed models was evaluated by using the determination of coefficient (R2), mean relative percent error (P), reduced chi-square (x2), and root means square error (RMSE). The Midilli et al. model showed a better fit to experimental drying data as compared to other models. Effective moisture diffusivity (Z)eff) ranged from 9.447* 10~n to 3.481 * 10HO m2/s as calculated by the Fick's second law of diffusion. The temperature dependence of the value of effective moisture diffusivity followed an Arrhenius-type relationship. The activation energy for the moisture diffusion was determined to be 60.34 kJ/mol.
机译:在50-70°C的温度范围内研究了石榴假种皮的干燥特性。干燥空气温度的升高导致干燥时间的减少。发现干燥速率随温度增加,从而减少了总干燥时间。在动力学研究中评估了13种干燥模型。通过使用系数(R2),平均相对百分比误差(P),减少的卡方(x2)和均方根误差(RMSE)的确定来评估所提出模型的拟合优度。 Midilli等。与其他模型相比,该模型显示出更适合实验干燥数据。根据菲克第二扩散定律计算,有效湿气扩散率(Z)eff)为9.447 * 10〜n至3.481 * 10HO m2 / s。有效湿气扩散率值的温度依赖性遵循阿伦尼乌斯型关系。测定水分扩散的活化能为60.34kJ / mol。

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