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高湿预处理对怀山药热风干燥特性及复水性的影响

陆学中 刘亚男 张德榜 郭桂霞 李衡 任广跃

食品与机械2017,Vol.33Issue(11):147-151,183,6.
食品与机械2017,Vol.33Issue(11):147-151,183,6.

高湿预处理对怀山药热风干燥特性及复水性的影响

Effect of high humidity preconditioning on hot air drying and its rehydration of Chinese yam

陆学中 1刘亚男 2张德榜 1郭桂霞 1李衡 1任广跃2

作者信息

  • 1. 郑州万谷机械有限公司,河南郑州450041
  • 2. 河南科技大学食品与生物工程学院,河南洛阳471023
  • 折叠

摘要

Abstract

The effect of the drying properties on hot air drying by relative humidity control of Chinese yam was studied.The test material was treated with high humidity after the hot air drying,and factors on the drying characteristics and rehydration characteristics were investigated,including the treatment time of humidity,slice thickness,dying temperature,and drying air velocity.The L9 (34) orthogonal test was used to get the best drying process parameters on energy consumption.the content of polysaccharide and the color of two kind of yam (prepared by the best drying process parameters on energy consumption and hot air drying without relative humidity) were determined.The results showed that,compared with direct hot air dying,high relative humidity control could not only greatly shorten the drying time,but also improve the rehydration characteristics.Moreover,the energy consumption was the minimum of 19 056 kJ/kg · H2O when material under the conditions of constant temperature and humidity (Slice thickness of 3 mm,temperature of 60 ℃,relative humidity 40%,treat time 30 min),hot air drying treatment (air temperature of 60 ℃,air velocity of 3.5 m/s).Under this condition the △E value of yam chip and polysaccharide content were 8.17% and 5.14%,respectively,while those of directly hot-drying were 12.35% and 4.96%.

关键词

相对湿度/怀山药/热风干燥/干燥特性/复水性/能耗

Key words

relative humidity/Chinese yam/hot air drying/drying characteristics/rehydration/energy consumption

引用本文复制引用

陆学中,刘亚男,张德榜,郭桂霞,李衡,任广跃..高湿预处理对怀山药热风干燥特性及复水性的影响[J].食品与机械,2017,33(11):147-151,183,6.

基金项目

国家自然科学基金面上项目(编号:31671907) (编号:31671907)

河南省高校科技创新团队支持计划资助(编号:16IRTSTHN009) (编号:16IRTSTHN009)

食品与机械

OA北大核心CSCDCSTPCD

1003-5788

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