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A novel atmospheric freeze-drying system using a vortex tube and multimode heat supply

机译:使用涡流管和多模式供热的新型常压冷冻干燥系统

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This article presents results of an experimental study of (AFD); atmospheric freeze-drying which uses a vortex tube to produce low temperature air, as an alternative to vacuum freeze-drying (VFD). An experimental setup was designed and built to permitsimultaneous application of convection, conduction and radiation heat input to the drying material without heating it above the freezing point of water contained in it. Potato slices were used as a model heat sensitive product for testing. Four heat input schemes were compared experimentally: Case 1 - pure convection, Case 2 - two-stage convection, Case 3 - radiation-coupled convection and Case 4-radiation -conduction-coupled with convection. Drying kinetics, quality parameters and physical propertiesof the model product (colour, rehydration properties, scanning electron micrographs) were analysed. Experiments were also conducted in a well-instrumented heat pump dryer and a vacuum freeze dryer for direct comparison with the AFD results. The proposedAFD system is shown to be a viable alternative to vacuum freeze-drying.
机译:本文介绍(AFD)的实验研究结果;常压冷冻干燥,它使用涡流管产生低温空气,以代替真空冷冻干燥(VFD)。设计并建立了一个实验装置,以允许将对流,传导和辐射热同时输入到干燥材料中,而无需将其加热到其中所含水的冰点以上。马铃薯切片用作模型热敏产品进行测试。通过实验比较了四种热输入方案:案例1-纯对流,案例2-两级对流,案例3-辐射耦合对流和案例4辐射-传导耦合对流。分析了模型产品的干燥动力学,质量参数和物理性质(颜色,补水性质,扫描电子显微照片)。还可以在配备完善的热泵干燥机和真空冷冻干燥机中进行实验,以直接与AFD结果进行比较。所提出的AFD系统显示出是真空冷冻干燥的可行替代方案。

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