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首页> 外文期刊>Food Technology and Biotechnology >Development of a New Model for Mass Transfer Kinetics of Petals of Echium amoenum Fisch. & C.A. Mey. under Fluidized Bed Conditions
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Development of a New Model for Mass Transfer Kinetics of Petals of Echium amoenum Fisch. & C.A. Mey. under Fluidized Bed Conditions

机译:开发一种新的模型,该模型具有较高的质量。 &C.A.梅伊。在流化床条件下

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摘要

A new semi-theoretical thin-layer model of the fluidized bed drying of Echium amoenum Fisch. & C.A. Mey. petals has been developed. Experiments were conducted under different conditions: temperatures of 40, 50 and 60 °C, and air velocities of 0.5, 0.75 and 1.0 m/s, until the moisture content decreased to 0.04.–0.06 kg of water per kg of dry matter. Drying processes in the fluidized bed were completed in between 55 and 465 min, with minimum drying time required at the maximum temperature of 60 °C and air velocity of 1 m/s. The comparison of the new model developed here with sixteen previously published theoretical, semi-empirical or empirical thin-layer drying equations shows that using the new model the highest coefficient of correlation, the lowest reduced chi-square and root mean square error were obtained. The highest retention of total phenolic compounds in E. amoenum petals was achieved when drying at 60 °C and 1.0 m/s.
机译:Echium amoenum Fisch流化床干燥的新的半理论薄层模型。 &C.A.梅伊。花瓣已经发育。实验是在不同的条件下进行的:温度为40、50和60°C,风速为0.5、0.75和1.0 m / s,直到水分含量降至每千克干物质0.04-0.06千克水为止。流化床中的干燥过程在55到465分钟之间完成,在60°C的最高温度和1 m / s的风速下需要最少的干燥时间。将此处开发的新模型与十六个先前发布的理论,半经验或经验薄层干燥方程进行比较,结果表明,使用新模型可获得最高的相关系数,最低的降低的卡方误差和均方根误差。当在60°C和1.0 m / s下干燥时,总酚类化合物在紫茎泽兰花瓣中的保留率最高。

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