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Modeling moisture diffusivity activation energy and specific energy consumption of squash seeds in a semi fluidized and fluidized bed drying

机译:在半流化床和流化床干燥中模拟南瓜种子的水分扩散率活化能和比能耗

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摘要

This study investigated thin layer drying of squash seeds under semi fluidized and fluidized bed conditions with initial moisture content about 83.99% (d.b.). An experimental fluidized bed dryer was also used in this study. Air temperature levels of 50, 60, 70 and 80 °C were applied in drying samples. To estimate the drying kinetic of squash seed, seven mathematical models were used to fit the experimental data of thin layer drying. Among the applied models, Two-term model has the best performance to estimate the thin layer drying behavior of the squash seeds. Fick’s second law in diffusion was used to determine the effective moisture diffusivity of squash seeds. The range of calculated values of effective moisture diffusivity for drying experiments were between 0.160 × 10−9 and 0.551 × 10−10 m2/s. Moisture diffusivity values decreased as the input air temperature decreased. Activation energy values were found to be between 31.94 and 34.49 kJ/mol for 50 °C to 80 °C, respectively. The specific energy consumption for squash seeds was calculated at the boundary of 0.783 × 106 and 2.303 × 106 kJ/kg. Increasing in drying air temperature in different bed conditions led to decrease in specific energy value. Results showed that applying the semi fluidized bed condition is more effective for convective drying of squash seeds. The aforesaid drying characteristics are useful to select the best operational point of fluidized bed dryer and to precise design of system.
机译:这项研究调查了在半流化床和流化床条件下南瓜种子的薄层干燥,初始含水量约为83.99%(d.b.)。实验流化床干燥器也用于这项研究。在干燥样品中采用50、60、70和80°C的空气温度水平。为了评估南瓜种子的干燥动力学,使用了七个数学模型来拟合薄层干燥的实验数据。在所应用的模型中,两阶段模型具有最佳的性能来估计南瓜种子的薄层干燥行为。 Fick的扩散第二定律用于确定南瓜种子的有效水分扩散率。干燥实验的有效水分扩散率的计算值范围在0.160×10 −9 和0.551×10 −10 m 2 / s之间。水分扩散率值随输入空气温度的降低而降低。发现50°C至80°C的活化能值分别在31.94和34.49 kJ / mol之间。南瓜种子的单位能耗在0.783×10 6 和2.303×10 6 kJ / kg的边界处计算。在不同床条件下干燥空气温度的升高导致比能量值的降低。结果表明,应用半流化床条件对南瓜种子的对流干燥更为有效。上述干燥特性对于选择流化床干燥机的最佳操作点和系统的精确设计很有用。

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