表面活性离子液体水溶液提取菠菜叶片叶绿素的研究

Ana M. Ferreira, A.L.L.C Leite, João A. P. Coutinho, M. Freire
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引用次数: 3

摘要

叶绿素及其衍生物因其独特的抗诱变和抗癌特性而受到广泛的研究。然而,从天然来源中提取高纯度的叶绿素是相当昂贵的,因为用于提取它们的方法选择性低,收率低。本研究旨在开发一种“更环保”且具有成本效益的技术,利用离子液体(ILs)水溶液从生物质中提取叶绿素。对几种具有亲水性和表面活性的水溶剂进行了评价,结果表明,表面活性水溶剂是提取菠菜叶片叶绿素的强化溶剂。利用响应面法对IL浓度和料液比等操作条件进行优化。在适宜的温度和时间条件下,十六烷基氯化吡啶([C16py]Cl)水溶液对叶绿素a和b的提取率分别为0.104和0.022 wt.%,选择性为4.79。这些提取率与用纯乙醇获得的提取率相似。然而,用IL水溶液获得的叶绿素a/b比(3.92)高于纯乙醇,这加强了IL水溶液作为挥发性有机化合物的可行替代品所提供的更高选择性,并允许获得更纯的化合物。最后,采用乙酸乙酯反萃取法对溶剂的回收和再利用进行了评价。本研究结果为设计利用表面活性il水溶液从生物质中选择性提取叶绿素的新方法提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chlorophylls Extraction from Spinach Leaves Using Aqueous Solutions of Surface-Active Ionic Liquids
Chlorophylls and their derivatives have been extensively studied due to their unique and valuable properties, including their anti-mutagenic and anti-carcinogenic features. Nevertheless, high-purity-level chlorophylls extracted from natural sources are quite expensive because the methods used for their extraction have low selectivity and result in low yields. This study aimed to develop a “greener” and cost-effective technology for the extraction of chlorophylls from biomass using aqueous solutions of ionic liquids (ILs). Several aqueous solutions of ILs, with hydrotropic and surface-active effects were evaluated, demonstrating that aqueous solutions of surface-active ILs are enhanced solvents for the extraction of chlorophylls from spinach leaves. Operating conditions, such as the IL concentration and solid–liquid ratio, were optimized by a response surface methodology. Outstanding extraction yields (0.104 and 0.022 wt.% for chlorophyll a and b, respectively, obtained simultaneously) and selectivity (chlorophyll a/b ratio of 4.79) were obtained with aqueous solutions of hexadecylpyridinium chloride ([C16py]Cl) at moderate conditions of temperature and time. These extraction yields are similar to those obtained with pure ethanol. However, the chlorophyll a/b ratio achieved with the IL aqueous solution is higher than with pure ethanol (3.92), reinforcing the higher selectivity afforded by IL aqueous solutions as viable replacements to volatile organic compounds and allowing the obtainment of more pure compounds. Finally, the recovery and reuse of the solvent were evaluated by using a back-extraction step of chlorophylls using ethyl acetate. The results disclosed here bring new perspectives into the design of new approaches for the selective extraction of chlorophylls from biomass using aqueous solutions of surface-active ILs.
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