研究报告

过热蒸气处理对苦荞粉理化性质的影响

  • 吴晓江 ,
  • 范浩伟 ,
  • 付桂明 ,
  • 万茵 ,
  • 刘成梅
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  • 1(南昌大学 食品学院,中德食品工程中心,江西 南昌,330006)
    2(南昌大学 食品学院,食品科学与技术国家重点实验室,江西 南昌,330006)
博士研究生(付桂明教授和刘成梅教授为共同通讯作者,E-mail:fuguiming@ncu.edu.cn;liuchengmei@aliyun.com)

收稿日期: 2020-09-24

  修回日期: 2020-11-15

  网络出版日期: 2021-07-16

基金资助

国家自然科学基金项目(3177101304)

Effect of superheated steam treatment on the physicochemical properties of tartary buckwheat flours

  • WU Xiaojiang ,
  • FAN Haowei ,
  • FU Guiming ,
  • WAN Yin ,
  • LIU Chengmei
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  • 1(Sino-German Food Engineering Center,College of Food Science and Technology,Nanchang University,Nanchang 330006,China)
    2(State Key Laboratory of Food Science and Technology,College of Food Science and Technology,Nanchang University,Nanchang 330006,China)

Received date: 2020-09-24

  Revised date: 2020-11-15

  Online published: 2021-07-16

摘要

采用不同温度的过热蒸气对苦荞全粉(苦全)和苦荞芯粉(苦芯)进行改性,考察其对苦荞粉的糊化性质、热力学性质、体外消化能力和苦荞粉多酚含量及抗氧化能力的影响。结果表明,过热蒸气能够显著增加苦荞粉的峰值黏度和谷值黏度并降低其回生值,显著提高苦荞粉的糊化温度和糊化焓值,且其糊化焓值随着处理温度的增加而增加(P<0.05)。过热蒸气处理之后苦荞粉中快速消化淀粉和慢性消化淀粉的含量显著降低(P<0.05),相反抗性淀粉的含量显著增加(P<0.05),但不同温度处理组之间无显著性差异(P>0.05)。另一方面,过热蒸气处理显著增加了苦荞粉中可溶性共轭多酚和结合多酚的含量(P<0.05),显著降低游离多酚和总酚含量(P<0.05)。抗氧化能力变化趋势同多酚含量变化趋势一致。该研究过热蒸气能够明显改变苦荞粉的理化性质,显著降低苦荞粉的体外消化能力,提高其营养价值,为其在健康功能食品的应用提供新的可能。

本文引用格式

吴晓江 , 范浩伟 , 付桂明 , 万茵 , 刘成梅 . 过热蒸气处理对苦荞粉理化性质的影响[J]. 食品与发酵工业, 2021 , 47(11) : 89 -97 . DOI: 10.13995/j.cnki.11-1802/ts.025748

Abstract

In this study, superheated steam (SS) at different temperatures (110, 130, 150℃) was used to modified the tartary buckwheat whole flour (TBWF) and core flour (TBCF). And the pasting properties, thermal properties, in vitro digestion, phenolics content, and antioxidant abilities of tartary buckwheat flours (TBFs) after SS treatment were investigated. The result showed that SS could significantly increase the peak viscosity, trough viscosity of TBFs and decrease the setback of TBFs (P<0.05). Moreover, transition temperatures and gelatinization enthalpy (ΔH) of TBFs were significantly increased by SS treatment (P<0.05), and ΔH increased with the increase of treatment temperature. Contents of rapidly digestible starch and slowly digestible starch in TBFs were significantly decreased by SS (P<0.05). By contrast, the content of resistant starch in TBFs was significantly increased by SS (P<0.05). However, there were no significant differences among all TBFs treated by SS at different treatment temperatures (P>0.05). In addition, contents of soluble-conjugated phenolics and bound phenolics in TBFs were significantly increased by SS (P<0.05), contents of free phenolics, and total phenolics in TBFs were significantly reduced by SS (P<0.05). The trend of antioxidant abilities of TBFs was consistent with that of phenolics in TBFs. This study demonstrated that SS can significantly change the physicochemical properties of TBFs, reduce the in vitro digestibility of TBFs and improve its nutritional value. These results will provide new possibilities for its application in healthy functional foods.

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