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Supercritical carbon dioxide extraction of essential oils from leaves of Eucalyptus globulus L., their analysis and application

机译:超临界二氧化碳提取桉树叶的精油及其分析与应用

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A comparative study on the extraction of essential oil from the leaves of Eucalyptus globulus was conducted using traditional methods such as hydrodistillation (HD), solvent extraction (SE), ultrasonic-assisted extraction (UAE) and an innovative supercritical carbon dioxide (SC-CO2) extraction technique. Each oil was evaluated by HPTLC (high performance thin layer liquid chromatography) and FTIR (Fourier transform infrared spectroscopy) fingerprinting with qualitative and semi-quantitative composition of the isolated essential oil determined by gas chromatography-mass spectrometry (GC-MS). The yield of essential oil was found to be 2.0%, 2.2%, 2.6% and 3.6% v/w, via HD, SE, UAE and SC-CO2, respectively. A total of 53 compounds were identified by GC-MS. Comparative studies have shown that the SC-CO2 technique is favourable for the extraction of monoterpene, sesquiterpene and oxygenated sesquiterpene hydrocarbons. HD, SE and US techniques are also important in the extraction of aliphatic saturated hydrocarbons, organic acids and esters. The maximum separation of compounds was observed at 254 nm by HPTLC fingerprinting. The present research paper covers different extraction methods, which may lead to different yields of essential oils; this further shows that the choice of the appropriate extraction method is very important to obtain the desired components in high yields with improved physiological activities. IC50 (Inhibition Concentration) values of E. globulus oil sample were found to be 47.61 and 26.05 ??g mLa?’1via DPPH and superoxide scavenging methods, respectively.
机译:使用加氢蒸馏(HD),溶剂萃取(SE),超声辅助萃取(UAE)和创新的超临界二氧化碳(SC-CO2)等传统方法对从桉树叶片中提取精油进行了比较研究。 )提取技术。每种油均通过HPTLC(高效薄层液相色谱)和FTIR(傅立叶变换红外光谱)指纹图谱进行评估,并通过气相色谱-质谱(GC-MS)测定分离出的精油的定性和半定量组成。通过HD,SE,UAE和SC-CO2,发现精油的产率分别为2.0%,2.2%,2.6%和3.6%v / w。通过GC-MS鉴定出总共53种化合物。比较研究表明,SC-CO2技术有利于单萜,倍半萜烯和氧化倍半萜烯烃的萃取。 HD,SE和US技术在脂族饱和烃,有机酸和酯的萃取中也很重要。通过HPTLC指纹图谱可在254 nm处观察到化合物的最大分离度。本研究报告涵盖了不同的提取方法,可能会导致精油产量的不同。这进一步表明,选择合适的提取方法对于以高收率获得具有改善的生理活性的所需成分非常重要。通过DPPH法和超氧化物清除法,发现大肠埃希菌油样品的IC50(抑制浓度)值分别为47.61和26.05?g mLa?-1。

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