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首页> 外文期刊>Drying technology: An International Journal >Drying Kinetics of Oil Palm Frond Particles in an Agitated Fluidized Bed Dryer
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Drying Kinetics of Oil Palm Frond Particles in an Agitated Fluidized Bed Dryer

机译:搅拌流化床干燥机中油棕叶状颗粒的干燥动力学

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The drying kinetics of oil palm frond particles in a laboratory-scale agitated fluidized bed dryer were investigated under various operating conditions: inlet air temperature (50-80° C), superficial air velocity (0.6-1.0 m/s), bed load (200-300 g), and agitation speed (300-500 rpm). To study the effects of these variables on the drying time and drying rate, an experimental design using Taguchi orthogonal array was employed. Based on analysis of variance (ANOVA), the results indicated that inlet air temperature greatly affected the drying rate, followed by superficial air velocity and bed load. The effect of agitation speed on the drying rate was found to be small. The experimental drying kinetics data were compared with the values obtained from three different models, namely, the Page model, modified quasi-stationary method (MQSM), and a new composite model. It was found that the proposed new model could satisfactorily predict the complete drying rate curve for the drying of oil palm fronds.
机译:在以下操作条件下研究了实验室规模的搅拌流化床干燥器中油棕叶状颗粒的干燥动力学:进气温度(50-80°C),表观空气速度(0.6-1.0 m / s),床负荷( 200-300 g)和搅拌速度(300-500 rpm)。为了研究这些变量对干燥时间和干燥速率的影响,采用了田口正交阵列进行的实验设计。根据方差分析(ANOVA),结果表明进风温度对干燥速率有很大影响,其次是表观风速和床载量。发现搅拌速度对干燥速率的影响很小。将实验干燥动力学数据与从三种不同模型(即Page模型,改进的准平稳方法(MQSM)和新的复合模型)获得的值进行比较。发现所提出的新模型可以令人满意地预测油棕叶的干燥的完整干燥速率曲线。

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