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Multiresponse optimization of an extraction procedure of carnosol and rosmarinic and carnosic acids from rosemary

机译:迷迭香中香茅酚,迷迭香酸和肌酸提取工艺的多响应优化

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摘要

A green solvent-based optimization for rosmarinic acid (RA), carnosol (COH), and carnosic acid (CA) extraction, the three main antioxidants from rosemary, was performed. The conventional solid-liquid extraction was optimized using a central composite design (CCD) followed by the desirability approach. In the CCD analysis the quantitative effects of extraction time (4.8-55.2 min), liquid-to-solid ratio (4.6-21.4 mL g(-1)), and ethanol content (44.8-95.2% v/v) were determined for the extracted amount of antioxidants, their concentrations in the extract, and the extraction yield. Samples were analyzed by HPLC and the antioxidants were identified by comparison with pure standard retention times and UV spectra. The desirability function that simultaneously maximizes the antioxidants extraction and their concentrations in the final product was validated. The extraction using a hydroalcoholic solution 70% v/v, at low liquid-to-solid ratio (5 mL g(-1)), and after 55-min yielded an antioxidant recovery rate of 89.8%, and a final product 4.75 times richer in the main antioxidants than the raw material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对迷迭香中的三种主要抗氧化剂迷迭香酸(RA),鼠尾草酚(COH)和鼠尾草酸(CA)提取进行了基于绿色溶剂的优化。使用中央复合设计(CCD)和所需方法对常规固液萃取进行了优化。在CCD分析中,确定了萃取时间(4.8-55.2分钟),液固比(4.6-21.4 mL g(-1))和乙醇含量(44.8-95.2%v / v)的定量影响抗氧化剂的提取量,其在提取物中的浓度以及提取率。通过HPLC分析样品,并通过与纯标准保留时间和UV光谱比较来鉴定抗氧化剂。同时使抗氧化剂提取及其最终产品中的浓度最大化的合意性功能得到了验证。使用70%v / v的水醇溶液以低的液固比(5 mL g(-1))并在55分钟后进行萃取,其抗氧化剂的回收率为89.8%,最终产物为4.75倍主要抗氧化剂比原料丰富。 (C)2016 Elsevier Ltd.保留所有权利。

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