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Optimization Of Ionic Liquid-Based Microwave Extraction Of Flavonoid and Phenolic Acid From Labisia Pumila

机译:Labisia Pumila的离子液体微波萃取物的离子液体微波萃取

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Ionic liquids have attracted many researches in bioactive compound separation as well as carbon capture. This is due to the ability of ionic liquid to be designed based on specific needs and produced higher quantity and quality of extract product. A study showed that ionic liquid can extract a higher number of phytochemicals compared to conventional solvents and produce better yield with microwave-assisted extraction. Due to vast possible structures of ionic liquid and wide range of phytochemicals existed, a systematic approach was developed to screen ionic liquid solvents for phytochemical extraction. This study is a part of experimental validation included in the systematic approach. The main focus of this study is to optimize the process of ionic liquid-based microwave-assisted extraction of flavonoid and phenolic acid from Labisia pumila. A two-level, four-factor of central composite design (CCD) was employed to determine the effect of the process factors towards yield of flavonoid and phenolic acid extracted from the herb. The process factors are the temperature (Celsius), extraction time (min), power (W) and type of ionic liquid (based on their dielectric point). In this study, ionic liquid was back-extracted using organic solvents for regeneration and recycle of extraction solvent, based on Bogdanov (2015). The extracted samples were analyzed by determining the yield of flavonoid and phenolic acid through linear equation of quercetin and gallic acid. In this study, it can be observed that the recovery of flavonoid and phenolic acid from L. pumila using ionic liquid-based microwave-assisted extraction was about 30 - 50 percent higher compared to conventional solvent. Therefore, the study indicated that ionic liquid-based microwave-assisted extraction was an efficient and rapid method for L. pumila phytochemical extraction.
机译:离子液体已引起在生物活性化合物的分离许多研究以及碳捕获。这是由于离子液体根据具体需要和产生更大数量和提取产物的质量来设计的能力。一项研究表明,离子液体可以提取更高数目相比于常规溶剂植物化学物质和产生具有微波辅助提取更好的产率。由于离子液体与宽范围的植物化学物质的存在的广阔的可能结构,一个系统的方法被开发来用于植物化学物质的提取画面的离子液体溶剂。这项研究是包含在系统的方法实验验证的一部分。本研究的主要焦点是优化从Labisia荔类黄酮和酚酸的基于离子液体的微波辅助提取的过程。中心复合设计(CCD)的两电平,四因子用于确定该工艺因素的朝向从药草中提取黄酮类化合物和酚酸的产率的影响。该过程的因素是温度(℃),提取时间(分),功率(W)和离子液体的类型(基于它们的介电点)。在这项研究中,离子液体是使用用于再生和萃取溶剂再循环的有机溶剂,基于波格丹诺夫(2015)反萃取。所提取的样品通过槲皮素和没食子酸的线性方程来确定类黄酮和酚酸的收率进行分析。在这项研究中,可以观察到,类黄酮和酚酸从L.荔使用基于离子液体的微波辅助提取的回收率是约30 - 高50%,比常规溶剂。因此,研究表明,离子液体基微波辅助提取是为L.荔提取植物化学物质的有效和快速的方法。

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