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首页> 外文期刊>Journal of food engineering >Drying kinetics of prickly pear fruit (Opuntia ficus indicd)
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Drying kinetics of prickly pear fruit (Opuntia ficus indicd)

机译:刺梨果实(Opuntia ficus indica)的干燥动力学

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摘要

The present work examines the effect of drying air conditions on drying kinetics of the prickly pear fruit in a convective solar drier operating with an auxiliary heating system under air controlled conditions. Moreover, the prickly pear fruits are sufficiently dried in the ranges between 32 and 36℃ of ambient air temperature, 50-60℃ of drying air temperature, 23-34% of relative humidity, 0.0277-0.0833 m~3/s of drying air flow rate and 200-950 W/m~2 of solar radiation. The results verified with good repro-ducibility that drying air temperature is the main factor in controlling the drying rate and the experimental drying curves show only a falling rate period. The expression of the drying rate equation is determined empirically from the characteristic drying curve. Eight different thin layer drying models were compared according to their coefficients of determination to estimate solar drying curves. The two-term model was found to satisfactorily describe the solar drying curves of prickly pear fruit with a correlation coefficient (r) of 0.9999. The constants and coefficients of this model could be explained by the effect of drying air temperature with a correlation coefficient (r) of 1.0000.
机译:本工作研究了在空气控制条件下,带有辅助加热系统的对流太阳能干燥器中,干燥空气条件对花椒果实干燥动力学的影响。此外,花椒果实应在环境空气温度32-36℃,干燥空气温度50-60℃,相对湿度23-34%,干燥空气0.0277-0.0833 m〜3 / s的范围内充分干燥。流量和200-950 W / m〜2的太阳辐射。结果具有良好的可重复性,证明干燥空气温度是控制干燥速率的主要因素,而实验干燥曲线仅显示下降速率周期。干燥速率方程的表达式由特征干燥曲线凭经验确定。根据确定系数比较了八个不同的薄层干燥模型,以估算太阳干燥曲线。发现两个模型可以令人满意地描述刺梨果实的日晒干燥曲线,相关系数(r)为0.9999。该模型的常数和系数可以通过相关系数(r)为1.0000的干燥空气温度的影响来解释。

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