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Extraction of essential oils from jasmine flower using supercritical co2 co-solvent extraction

机译:超临界CO2共溶剂萃取从茉莉花中提取香精油

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摘要

Pure essential oils are derived from various part of the plant. These essential oils have a very high commercial value due to its properties. They are widely used in the various fields of industries, such as perfumery industries and pharmaceuticals. Conventional technique to extracts this oil such as steam distillation is unsuitable since it induce thermal degradation of compounds in the oils. It is for this reason that the extraction of essential oils using supercritical fluid extraction method is said to be the most effective method. It also can avoid contamination of the oil. This extraction technique employed carbon dioxide (CO2) as solvent due to CO2 is stateless, odorless, non-toxic and chemical inertness and would not contaminate the environment and products. Thus, the material residues can be used without pretreatment. Beside that, the low critical properties make CO2 the most preferable solvent in this technique. The used of co-solvent also affect the extraction of these essential oils because it could modify the CO2 selectivity towards the fragrances compound. This can in turn produce higher quantity of products. For this purpose, two co-solvent had been employed, viz. ethanol and methanol.
机译:纯精油来自植物的各个部位。这些香精油由于其性能而具有很高的商业价值。它们被广泛用于各种行业领域,例如香料业和制药业。诸如蒸汽蒸馏之类的提取这种油的常规技术是不合适的,因为它会引起油中化合物的热降解。因此,使用超临界流体萃取法萃取精油被认为是最有效的方法。它还可以避免油的污染。这种提取技术采用二氧化碳(CO2)作为溶剂,因为CO2无状态,无味,无毒和化学惰性,不会污染环境和产品。因此,可以不经预处理就使用材料残留物。除此之外,低临界特性使CO2成为该技术中最优选的溶剂。助溶剂的使用还会影响这些精油的提取,因为它可以改变对香料化合物的CO2选择性。反过来,这可以生产更高数量的产品。为此目的,已经使用了两种助溶剂。乙醇和甲醇。

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    Norulshahida Che Din;

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  • 年度 2006
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