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谷物麸皮中酚类物质的超声辅助提取的动力学建模。

Kinetic modelling of ultrasound-assisted extraction of phenolics from cereal brans.

机构信息

University of Novi Sad, Institute of Food Technology in Novi Sad, Bulevar cara Lazara 1, Novi Sad, Serbia.

University of Novi Sad, Faculty of Technology, Bulevar cara Lazara 1, Novi Sad, Serbia.

出版信息

Ultrason Sonochem. 2021 Nov;79:105761. doi: 10.1016/j.ultsonch.2021.105761. Epub 2021 Sep 28.

Abstract

Cereal brans are by-products of the milling of cereal grains, which are mainly used as low value ingredients in animal feed. Wheat and oat bran is a rich source of bioactives and phytochemicals, especially phenolic compounds. Within this study, the application of ultrasound (US) technology to assist the extraction of phenolics from oat and wheat bran was investigated (20-45 kHz). Peleg's mathematical model was used to study the kinetics of ultrasound-assisted extraction (UAE) and subsequent stirring of total phenolic compounds (TPC). The surface morphology of cereal brans after extraction was studied using SEM analysis. The excellent agreement was determined between the values of TPC calculated from Peleg's mathematical model and actual experimental results. The constant that represents a time required for the initial phenolic concentration to be extracted to one-half of its initial value has been introduced (K). It was shown that the TPC extraction kinetics was dependent only on K enabling fast kinetics fitting and comparison between extraction rates. Moreover, different values of K constant could indicate the differences in brans composition and consequently different influence of US pretreatment on these samples.

摘要

谷物糠皮是谷物碾磨的副产品,主要用作动物饲料的低价值成分。小麦和燕麦糠皮是生物活性物质和植物化学物质的丰富来源,特别是酚类化合物。在本研究中,研究了超声(US)技术在辅助从燕麦和小麦糠皮中提取酚类物质方面的应用(20-45 kHz)。使用 Peleg 的数学模型研究了超声辅助提取(UAE)和随后搅拌总酚化合物(TPC)的动力学。使用 SEM 分析研究了提取后谷物糠皮的表面形态。从 Peleg 数学模型计算的 TPC 值与实际实验结果之间确定了极好的一致性。引入了一个常数(K),该常数表示初始酚浓度提取到其初始值的一半所需的时间。结果表明,TPC 提取动力学仅取决于 K,从而能够进行快速动力学拟合和比较提取速率。此外,K 常数的不同值可以表明糠皮成分的差异,从而表明 US 预处理对这些样品的不同影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ecf/8531846/d7dc21526a78/gr1.jpg

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