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Vacuum and Infrared-Assisted Hot Air Impingement Drying for Improving the Processing Performance and Quality of Poria cocos (Schw.) Wolf Cubes

机译:真空和红外线辅助热空气冲洗,用于提高Poria Cocos的加工性能和质量(Schw。)狼多维数据集

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摘要

The objective of this study was to develop an efficient drying technology for poria cubes in order to improve product quality. Poria cubes were dried using different methods, including air impingement drying, infrared-assisted air impingement drying, vacuum drying, two-stage vacuum drying, and infrared-assisted air impingement drying. The results were compared with those from hot air drying. For the two-stage drying, the tested conditions were the first stage of vacuum drying with temperatures between 65–85 °C and a switching moisture ratio of 70–90%. The second stage infrared-assisted air impingement drying also had temperatures 65–85 °C. The drying kinetics (effective moisture diffusivity (Deff), Biot number (Bi), and mass transfer coefficient (k) were studied via the product qualities (broken ratio, firmness, microstructure, and water-soluble polysaccharide content) and specific energy consumption (SEC) of the drying processes. The results showed that two-stage drying led to the lowest drying time and energy consumption, and also obtained the best qualities. Box–Behnken experimental design with response surface methodology (RSM) was used to optimize the two-stage operating conditions as 82 °C under vacuum drying until a moisture content of 81% and a temperature of 69 °C with infrared-assisted air impingement drying was achieved. These findings suggested that two-stage vacuum and infrared-assisted air impingement drying is a promising method for producing high quality and energy efficient dried poria cubes.
机译:本研究的目的是为Poria Cubes开发一种有效的干燥技术,以提高产品质量。使用不同的方法干燥茯苓立方体,包括空气冲击干燥,红外辅助空气冲击干燥,真空干燥,两级真空干燥和红外辅助空气冲击干燥。将结果与来自热风干燥的结果进行比较。对于两级干燥,测试条件是真空干燥的第一阶段,温度在65-85°C和切换水分比为70-90%。第二阶段红外辅助空气冲击干燥也具有65-85°C的温度。通过产品质量(断裂比率,固体,微观结构和水溶性多糖含量)和特定能耗研究了干燥动力学(有效水分扩散率(DEFF),BIOS数(BI)和传质系数(K)(干燥过程的秒。结果表明,两级干燥导致了最低的干燥时间和能量消耗,也得到了最佳品质。Box-Behnken实验设计与响应表面方法(RSM)用于优化这两个 - 在真空干燥中为82°C的操作条件达到81%的水分含量为81%和69℃的温度,具有红外辅助空气冲击干燥。这些研究结果表明,两级真空和红外辅助空气冲击干燥是生产高质量和节能干茯苓立方体的有希望的方法。

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