首页> 外文期刊>Industrial Crops and Products >Microwave-assisted method for simultaneous hydrolysis and extraction in obtaining ellagic acid, gallic acid and essential oil from Eucalyptus globulus leaves using Bronsted acidic ionic liquid [HO3S(CH2)(4)mim]HSO4
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Microwave-assisted method for simultaneous hydrolysis and extraction in obtaining ellagic acid, gallic acid and essential oil from Eucalyptus globulus leaves using Bronsted acidic ionic liquid [HO3S(CH2)(4)mim]HSO4

机译:布朗斯泰德酸性离子液体[HO3S(CH2)(4)mim] HSO4的微波辅助水解同时萃取从桉树叶中提取鞣花酸,没食子酸和精油的方法

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摘要

Bronsted acidic ionic liquid and microwave energy are introduced for catalytic hydrolysis of hydrolysable tannins into ellagic acid and gallic acid and simultaneous extraction bioactive substances in the present study. Bronsted acidic ionic liquid-based microwave-assisted simultaneous hydrolysis and extraction (BMSHE) method was employed in obtaining ellagic acid, gallic acid and essential oil from Eucalyptus globulus leaves. [HO3S(CH2)(4)mim]HSO4 was used as a dual hydrolysis catalyst and extraction solvent in the proposal approach. The optimized parameters were obtained as follows: [HO3S(CH2)(4)mim]HSO4 concentration of 1.0 M, liquid-solid ratio of 30 mL/g, microwave irradiation time of 20 min and microwave irradiation power of 385 W. Yields of ellagic acid, gallic acid and essential oil under these conditions are 3.32 +/- 0.08 mg/g, 3.83 +/- 0.11 mg/g and 4.82 +/- 0.18 mg/g, respectively. Compared with the reference solvent, [HO3S(CH2)(4)mim]HSO4 shows excellent solvent effect and catalytic activity. Comparison between BMSHE and hydrodistillation indicated the proposed approach is a high efficient, time-saving, low energy consumption and eco-benign methodology. Method validation studies also evidenced that BMSHE is credible for the preparation of ellagic acid and gallic acid. It is reasonable to assume that this method would become a new potential candidate for the preparation of some other kinds of bioactive substances from plant materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:引入布朗斯台德酸性离子液体和微波能,将可水解单宁催化水解为鞣花酸和没食子酸,同时提取生物活性物质。采用布朗斯台德酸性离子液体微波辅助同时水解和萃取(BMSHE)方法,从桉叶中提取鞣花酸,没食子酸和香精油。在建议的方法中,[HO3S(CH2)(4)mim] HSO4用作双重水解催化剂和萃取溶剂。获得的优化参数如下:[HO3S(CH2)(4)mim] HSO4浓度为1.0 M,液固比为30 mL / g,微波辐射时间为20分钟,微波辐射功率为385W。在这些条件下的鞣花酸,没食子酸和精油分别为3.32 +/- 0.08 mg / g,3.83 +/- 0.11 mg / g和4.82 +/- 0.18 mg / g。与参比溶剂相比,[HO3S(CH2)(4)mim] HSO4具有优异的溶剂作用和催化活性。 BMSHE和加氢蒸馏的比较表明,该方法是一种高效,省时,低能耗和生态友好的方法。方法验证研究还证明,BMSHE可用于制备鞣花酸和没食子酸。可以合理地假设此方法将成为从植物材料中制备其他种类生物活性物质的潜在新方法。 (C)2015 Elsevier B.V.保留所有权利。

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