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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Evaluation of thin layer drying kinetics of taro root (Colocasia esculenta L.)
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Evaluation of thin layer drying kinetics of taro root (Colocasia esculenta L.)

机译:芋头根薄层干燥动力学评价(Colocasia Esculuya L.)

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摘要

Appropriate drying model is an important attribute for describing the drying kinetics of food products. Thin layer drying of taro roots were performed in a laboratory scale hot air dryer operated at 50 o C, 60 o C and 70 o C temperature with air velocity of 0.5 ms -1 . Analysis of the result exhibits that drying of taro roots took place in falling rate period. Thin layer model such as Henderson-Pabis, Page and Lewis equation were studied to fit with the experimental data using nonlinear regression analysis. The suitable drying model was selected based on chi square (χ 2 ), root mean square error and relative percent error. Study of goodness of fit indicated that among the proposed model, Page equation gave better fit than all drying conditions used. Effective moisture diffusivity was determined through simplified Fick’s second law of diffusion. Activation energy for moisture removal was described by Arrhenius equation and found 18.01kjmol -1 for present study.
机译:适当的干燥模型是描述食品的干燥动力学的重要属性。 在在50℃,60℃和70℃温度下操作的实验室测距热风干燥器中进行薄层干燥,在50℃,60℃和70℃温度下,空气速度为0.5ms -1。 结果分析表现出芋头根的干燥在下降率期间。 研究了诸如Henderson-Pabis,PAGE和Lewis方程的薄层模型,以使用非线性回归分析与实验数据配合。 基于Chi Square(χ2),根均方误差和相对百分比误差选择合适的干燥模型。 拟合良好研究表明,在所提出的模型中,Page公式比使用的所有干燥条件更好地贴合。 通过简化的Fick的第二次扩散定律确定了有效的湿度扩散性。 Arhenius方程描述了用于水分去除的活化能,并发现本研究18.01kJmol -1。

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