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超声对马尾松锯末废渣中酚类化合物固-液萃取的影响。动力学、优化及放大实验。

Impact of ultrasound on solid-liquid extraction of phenolic compounds from maritime pine sawdust waste. Kinetics, optimization and large scale experiments.

机构信息

Université de La Rochelle, LaSIE, UMR-CNRS 7356, Pôles Sciences et Technologie, Avenue Michel Crépeau, 17042 La Rochelle, France; Université d'Avignon et des Pays de Vaucluse, INRA, UMR408, Sécurité et Qualité des Produits d'Origine Végétale, 84000 Avignon, France.

Université d'Avignon et des Pays de Vaucluse, INRA, UMR408, Sécurité et Qualité des Produits d'Origine Végétale, 84000 Avignon, France.

出版信息

Ultrason Sonochem. 2016 Jan;28:230-239. doi: 10.1016/j.ultsonch.2015.07.022. Epub 2015 Jul 26.

Abstract

Maritime pine sawdust, a by-product from industry of wood transformation, has been investigated as a potential source of polyphenols which were extracted by ultrasound-assisted maceration (UAM). UAM was optimized for enhancing extraction efficiency of polyphenols and reducing time-consuming. In a first time, a preliminary study was carried out to optimize the solid/liquid ratio (6g of dry material per mL) and the particle size (0.26 cm(2)) by conventional maceration (CVM). Under these conditions, the optimum conditions for polyphenols extraction by UAM, obtained by response surface methodology, were 0.67 W/cm(2) for the ultrasonic intensity (UI), 40°C for the processing temperature (T) and 43 min for the sonication time (t). UAM was compared with CVM, the results showed that the quantity of polyphenols was improved by 40% (342.4 and 233.5mg of catechin equivalent per 100g of dry basis, respectively for UAM and CVM). A multistage cross-current extraction procedure allowed evaluating the real impact of UAM on the solid-liquid extraction enhancement. The potential industrialization of this procedure was implemented through a transition from a lab sonicated reactor (3 L) to a large scale one with 30 L volume.

摘要

马尾松锯末是木材转化工业的一种副产品,已被研究作为多酚的潜在来源,多酚是通过超声辅助浸提(UAM)提取的。UAM 经过优化,以提高多酚的提取效率并减少耗时。首先,通过常规浸提(CVM)进行了初步研究,以优化固液比(每毫升干物质 6 克)和粒径(0.26cm(2))。在这些条件下,通过响应面法获得的 UAM 提取多酚的最佳条件为:超声强度(UI)为 0.67 W/cm(2)、处理温度(T)为 40°C 和超声时间(t)为 43 分钟。UAM 与 CVM 进行了比较,结果表明,多酚的提取量提高了 40%(UAM 和 CVM 分别为每 100g 干基 342.4 和 233.5mg 儿茶素当量)。多级逆流萃取程序允许评估 UAM 对固液萃取增强的实际影响。通过从实验室超声反应器(3L)过渡到 30L 体积的大型反应器,实现了该程序的潜在工业化。

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