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Freeze Drying with Dielectric-Material-Assisted Microwave Heating

机译:电介质辅助微波加热冷冻干燥

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摘要

Experimental and theoretical investigations were conducted with regard to the effects of a dielectric material on freeze drying with microwave heating.The experimental results show that the dielectric material can effectively enhance the microwave freeze drying process,and substantial drying time can be saved compared with conventional freeze drying under the operating conditions tested.Theoretical study was performed by numerically solving a heat and mass transfer model of freeze drying with hygroscopic effect using the finite difference method with a moving boundary.The simulation results demonstrate the effectiveness of using the dielectric material in microwave freeze drying,especially when the solid content of the solution to be freeze dried is very low or the solid product has a very small loss factor.Comparisons of the drying curves display good agreements between experimental measurements and model predictions.Based on the profiles of the ice saturation and temperature,mechanisms of heat and mass transfer inside the material were analyzed,and the drying rate-controlling factor was discussed.
机译:对介电材料对微波加热冷冻干燥的影响进行了实验和理论研究。实验结果表明,介电材料可以有效地增强微波冷冻干燥工艺,与传统的冷冻相比可以节省大量的干燥时间通过在运动边界条件下的有限差分法对具有吸湿作用的冷冻干燥的传热传质模型进行数值求解,进行了理论研究,仿真结果证明了将介电材料用于微波冷冻的有效性干燥,特别是当要冷冻干燥的溶液的固体含量非常低或固体产物的损耗因子非常小时。干燥曲线的比较显示出实验测量结果与模型预测之间的良好一致性。基于冰的轮廓饱和度和温度,机械分析了物料内部传热和传质的毫秒数,并讨论了干燥速率控制因素。

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