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直触式超声真空干燥对蒲公英干燥特性和品质的影响

蔡园园 董红敬 邵人才 刘峰

山东科学2026,Vol.39Issue(1):1-10,10.
山东科学2026,Vol.39Issue(1):1-10,10.DOI:10.3976/j.issn.1002-4026.2025032

直触式超声真空干燥对蒲公英干燥特性和品质的影响

Effects of direct-contact ultrasonic vacuum drying on the drying characteristics and quality of dandelion

蔡园园 1董红敬 1邵人才 2刘峰1

作者信息

  • 1. 山东中医药大学药学院山东济南 250355||齐鲁工业大学(山东省科学院)山东省分析测试中心天然产物分离提取共性技术创新与应用山东省工程研究中心,山东济南 250014
  • 2. 宁波新芝生物科技股份有限公司,浙江宁波 315000
  • 折叠

摘要

Abstract

This study investigated the effects of direct-contact ultrasonic vacuum drying on the drying characteristics and quality of dandelion.Dandelion samples were dried under different ultrasonic power levels and compared with samples processed via vacuum freeze-drying,shade drying,and hot-air drying in terms of color,flavonoid content,and cichoric acid content.Results showed that the drying rate increased with increasing ultrasonic power and drying temperature.The Page and Two-term models provided the best fit for the drying kinetics.The color of samples dried via direct-contact ultrasonic vacuum drying at 192 W was closest to that of fresh samples among all considered methods.At 192 W,the flavonoid content in the solution after rehydration was significantly higher than that obtained using other drying methods(p<0.05).In addition,total flavonoid and cichoric acid contents at 192 W were 57.09 and 12.35 mg/g,respectively.Furthermore,comprehensive evaluation using the entropy weight-grey relational analysis method showed that the samples dried at 192 W exhibited the highest correlation degree and ranked first overall among all drying methods.This study confirms that direct-contact ultrasonic vacuum drying can effectively improve the drying characteristics and quality of dandelion,providing references for applications in food and traditional Chinese medicine.

关键词

蒲公英/直触式超声真空干燥/干燥特性/品质

Key words

dandelion/direct-contact ultrasonic vacuum drying/drying characteristics/quality

分类

医药卫生

引用本文复制引用

蔡园园,董红敬,邵人才,刘峰..直触式超声真空干燥对蒲公英干燥特性和品质的影响[J].山东科学,2026,39(1):1-10,10.

基金项目

中国中医科学院科技创新工程项目(CI2021B013),济南市"新高校20条"资助项目(202228020),山东省科技型中小企业创新能力提升项目(2022TSGC1199) (CI2021B013)

山东科学

1002-4026

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