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Experimental and numerical investigations on freeze-drying of porous media with prebuilt porosity

机译:用预设孔隙率的多孔介质冷冻干燥的实验性和数值研究

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Freeze-drying of initially porous frozen material was investigated aimed at improving the process economics by reducing drying time and raising productivity. Experimental results showed that freeze-drying can be significantly enhanced by the frozen material with prebuilt porosity, and about 31% of drying time can be saved compared with the conventionally solid frozen material under the tested operating conditions. A multiphase transport model was formulated based on the local mass non-equilibrium assumption. Numerical results showed excellent agreements between measured and predicted drying curves. Analyses of saturation and temperature profiles displayed that volumetric sublimation-desorption can occur for the initially porous frozen material. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究最初多孔冷冻材料的冷冻干燥,旨在通过减少干燥时间并提高生产率来改善过程经济学。 实验结果表明,通过在测试的操作条件下与常规固体冷冻材料相比,通过预设孔隙率的冷冻材料可以显着增强冷冻干燥,并且可以节省约31%的干燥时间。 基于局部大规模非平衡假设配制多相传输模型。 数值结果表明,测量和预测干燥曲线之间的良好协议。 饱和度和温度曲线的分析显示出初始多孔冷冻材料可能发生体积升华 - 解吸。 (c)2018 Elsevier B.v.保留所有权利。

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