首页> 外文期刊>Revista ciencia agronomica >Modelagem matemática das curvas de secagem e coeficiente de difus?o de gr?os de feij?o-caupi (Vigna unguiculata (L.) Walp.)
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Modelagem matemática das curvas de secagem e coeficiente de difus?o de gr?os de feij?o-caupi (Vigna unguiculata (L.) Walp.)

机译:cow豆干燥曲线和扩散系数的数学模型(Vigna unguiculata(L.)Walp。)

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摘要

This work aimed to study the drying kinetics of the cowpea (Vigna unguiculata (L.) Walp.), adjust different mathematical models to the experimental values as a function of water content, and determine the diffusion coefficient and the activation energy of the grains during drying. The cowpea grains were dried at temperatures of 25; 35; 45 and 55 ± 1 oC in an experimental dryer to a water content of approximately 13% db. A nonlinear regression analysis was carried out to adjust 12 mathematical models to the experimental drying-data. The effective diffusion coefficient was obtained by adjusting the mathematical model of liquid diffusion. The variance of the diffusion coefficient according to the drying temperature was analysed by the Arrhenius equation, which allowed determination of the activation energy. The Henderson and Modified Pabis model best represented the drying process of the cowpea. The diffusion coefficient presented values of between 8.84 x 10-8 and 20.17 x 10-8 m2 s-1. The ratio of the diffusion coefficient to the drying temperature can be described by the Arrhenius equation, having an activation energy of 27.16 kJ mol-1.
机译:这项工作旨在研究the豆(Vigna unguiculata(L.)Walp。)的干燥动力学,根据水含量调整不同的数学模型以达到实验值,并确定谷物的扩散系数和活化能。烘干。 25豆谷物在25°C的温度下干燥。 35; 45和55±1 oC在实验干燥机中,含水量约为13%db。进行了非线性回归分析,以将12个数学模型调整为实验干燥数据。有效扩散系数是通过调整液体扩散的数学模型获得的。通过Arrhenius方程分析了扩散系数随干燥温度的变化,从而确定了活化能。亨德森和改良的Pabis模型最能代表represented豆的干燥过程。扩散系数的值介于8.84 x 10-8和20.17 x 10-8 m2 s-1之间。扩散系数与干燥温度的比率可以通过具有27.16kJ mol-1的活化能的Arrhenius方程来描述。

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