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Cloud point extraction of chlorophylls from spinach leaves using aqueous solutions of non-ionic surfactants

机译:使用非离子表面活性剂水溶液从菠菜叶中提取叶绿素的浊点

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摘要

Chlorophylls and their derivatives are currently used in a wide range of applications. To replace the volatile organic solvents commonly applied for their extraction from biomass, aqueous solutions of non-ionic surfactants are studied herein in the extraction of chlorophylls from spinach leaves. Aqueous solutions of several surfactants were screened, demonstrating that their hydrophilic-lipophilic balance (HLB) plays the pivotal role on the extraction performance, with the best results obtained for surfactants with a HLB ranging between 10 and 13. A response surface methodology (RSM) was then used to optimize operational conditions (surfactant concentration, solid-liquid ratio and temperature), leading to a maximum extraction yield of chlorophylls of 0.94 mg/g. After the extraction step, the chlorophylls-rich extract was concentrated by heating above the surfactant-water cloud point, leading to the separation into two-phases, and to a concentration factor of 9 and a recovery of 97% of chlorophylls in the surfactant-rich phase. The antioxidant activity of the extracts was finally appraised, showing that the antioxidant activity of the aqueous chlorophylls-rich extracts is higher than that obtained with volatile organic solvents. The obtained results show the potential of aqueous solutions of non-ionic surfactants to extract highly hydrophobic compounds from biomass and their possible direct use in cosmetic and nutraceutical applications, without requiring an additional recovery or purification step.
机译:叶绿素及其衍生物目前被广泛应用。为了代替通常用于从生物质中提取挥发性有机溶剂,本文在从菠菜叶中提取叶绿素的过程中研究了非离子表面活性剂的水溶液。筛选了几种表面活性剂的水溶液,表明它们的亲水亲脂平衡(HLB)在萃取性能中起着关键作用,HLB范围在10到13之间的表面活性剂获得了最佳结果。响应面方法(RSM)然后将其用于优化操作条件(表面活性剂浓度,固液比和温度),从而使叶绿素的最大提取产量为0.94 mg / g。提取步骤后,通过加热至表面活性剂-水浊点以上来浓缩富含叶绿素的提取物,导致分离为两相,浓缩系数为9,并回收了表面活性剂中97%的叶绿素。丰富阶段。最终评估了提取物的抗氧化活性,表明富含叶绿素的水性提取物的抗氧化活性高于挥发性有机溶剂。获得的结果表明非离子表面活性剂水溶液从生物质中提取高度疏水性化合物的潜力,以及它们可能直接用于化妆品和营养食品应用中,而无需额外的回收或纯化步骤。

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