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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Electrical, mechanical, and chemical effects of high-voltage electrical discharges on the polyphenol extraction from vine shoots
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Electrical, mechanical, and chemical effects of high-voltage electrical discharges on the polyphenol extraction from vine shoots

机译:高压放电对葡萄枝中多酚提取物的电,机械和化学作用

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摘要

The aim of this work was to study the mechanical, electrical and chemical effects of high-voltage electrical discharges (HVED) and their role in polyphenol extraction from vine shoots. Cutting and grinding pretreatments were conducted prior to HVED treatment. Thus, different initial specific surface areas (a(0) = 6, 8.5, 11,84 and 1885.19 cm(-1)) of vine shoots were tested. When the initial specific surface areas were low (a(0) = 6, 8.5, 11 cm(-1)), the HVED induced damage degrees (D) were the highest, leading to abetter enhancement of polyphenol extraction. However, no product fragmentation was found for the lowest particle size (a(0) = 1885.19 cm(-1)) before and after the HVED treatment, and despite it, an amelioration of polyphenol content in extract of 20 mg/L was observed. The electrical arc generated H2O2 but did not lead to polyphenol degradation. Industrial relevance: This study gives significant information about the action mechanisms of high voltage electrical discharge treatment presenting relevant data for the design of the process. It shows the effectiveness of electrical discharges for the intensification of the extraction of bioactive molecules (polyphenols) from a specific byproduct (vine shoots). The paper also presents an energy-saving extraction process, relevant for industrial application, since no organic solvents were used. Process duration and temperature were also reduced. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究高压放电(HVED)的机械,电气和化学作用,以及它们在从葡萄枝中提取多酚的作用。在HVED处理之前进行切割和磨削预处理。因此,测试了藤芽的不同初始比表面积(a(0)= 6、8.5、11,84和1885.19 cm(-1))。当初始比表面积较低(a(0)= 6、8.5、11 cm(-1))时,HVED诱导的破坏度(D)最高,从而导致多酚提取的更好地增强。但是,在HVED处理之前和之后,最低粒径(a(0)= 1885.19 cm(-1))均未发现产品碎裂,尽管如此,但观察到提取物中多酚含量降低了20 mg / L 。电弧产生H2O2,但未导致多酚降解。行业相关性:这项研究提供了有关高压放电处理的作用机理的重要信息,为工艺设计提供了相关数据。它显示了放电对增强从特定副产物(葡萄枝)中提取生物活性分子(多酚)的有效性。由于没有使用有机溶剂,因此本文还提出了一种与工业应用相关的节能萃取方法。工艺持续时间和温度也降低了。 (C)2015 Elsevier Ltd.保留所有权利。

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