首页> 外文期刊>Journal of Essential Oil-Bearing Plants >Comparison of Chemical Constituents of Essential Oil from Aerial Constituent ofMentha longifoliaandSalvia multicaulisObtained by Hydro distillation and Headspace Analysis
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Comparison of Chemical Constituents of Essential Oil from Aerial Constituent ofMentha longifoliaandSalvia multicaulisObtained by Hydro distillation and Headspace Analysis

机译:水电蒸馏和顶空分析中的空中组分从空中成分的化学成分比较

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As an important phytochemical class, essential oils of aromatic plants are determined as a perfect resource of food additives and medicinal agents. The chemical composition of the essential oils is affected by many factors such as extraction techniques. The present study focused on a comparative study of the chemical constituent of essential oil acquired by hydrodistillation and that by headspace analysis.Salvia multicaulis: There was a major constituent in the essential oils which were obtained through the extraction by the HD approach. These compounds included alpha-pinene (15.4 %), 1,8-cineole (10.2 %), camphene (8.1 %), beta- pinene (3.9 %), camphor (6.6 %), borneol (8.8 %), bornyl acetate (10.3% ) and (E) -caryophyllene (9.9 %). The HS managed to yield alpha-pinene (41.2 %), camphene (19.3% ), 1,8-cineole (11.1% ), beta-pinene (5.0 %), myrcene (2.3 %), limonene (4.1 %) and camphor (3.6 %).Mentha longifolia: Outcomes of GC/MS analysis have identified 28 and 29 constituents in samples removed by HS and HD approaches; representing 99.7 % and 99.5 % of the oils. pulegone (64.0 ), 1,8-cineole (11.7 %), piperitenone (4.5 %), p-menth-3-en-8-ol (2.7% ), borneol (2.7 %), beta-pinene (2.1 %),cis-isopulegone (2.0 %), alpha-pinene (1.5% ) and sabinene (1.5 %) were considered as huge parts of essential oil removed by HD and significant constituent of headspace constituent by HS procedures were pulegone (41.4 %), beta-pinene (6.1 %), 1,8-cineole (21.7 %), alpha-pinene (5.7 %), p-menth-3-en-8-ol (5.0 %), sabinene (4.4 %), myrcene (3.8 %), limonene (2.2 %). In conclusion, it has been suggested that the headspace approach be used for essential oil extraction since it is simple, time-saving, and eco-friendly.
机译:芳香植物精油是一类重要的植物化学物质,被认为是食品添加剂和药物的理想来源。精油的化学成分受到许多因素的影响,比如提取技术。本研究着重于通过水蒸馏和顶空分析获得的精油化学成分的比较研究。多枝鼠尾草:通过HD方法提取的精油中有一种主要成分。这些化合物包括α-蒎烯(15.4%)、1,8-桉叶醇(10.2%)、樟脑(8.1%)、β-蒎烯(3.9%)、樟脑(6.6%)、冰片(8.8%)、乙酸龙脑酯(10.3%)和(E)-石竹烯(9.9%)。HS成功地产生了α-蒎烯(41.2%)、樟脑烯(19.3%)、1,8-桉叶烯(11.1%)、β-蒎烯(5.0%)、月桂烯(2.3%)、柠檬烯(4.1%)和樟脑(3.6%)。长叶薄荷:GC/MS分析结果表明,通过HS和HD方法去除的样品中有28和29种成分;分别占油类的99.7%和99.5%。pulegone(64.0)、1,8-桉叶烯(11.7%)、胡椒酮(4.5%)、对薄荷-3-烯-8-醇(2.7%)、冰片(2.7%)、β-蒎烯(2.1%)、顺式异戊烯(2.0%)、α-蒎烯(1.5%)和沙宾烯(1.5%)被认为是HD去除的精油的主要成分,而HS程序去除的顶空成分中的重要成分为pulegone(41.4%)、β-蒎烯(6.1%)、1,8-桉叶烯(21.7%),α-蒎烯(5.7%)、对薄荷-3-烯-8-醇(5.0%)、沙宾烯(4.4%)、月桂烯(3.8%)、柠檬烯(2.2%)。因此,建议在顶空提取精油时采用环保的方法。

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