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首页> 外文期刊>Separation and Purification Technology >A process to acquire essential oil by distillation concatenated liquid-liquid extraction and flavonoids by solid-liquid extraction simultaneously from Helichrysum arenarium (L.) Moench inflorescences under ionic liquid-microwave mediated
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A process to acquire essential oil by distillation concatenated liquid-liquid extraction and flavonoids by solid-liquid extraction simultaneously from Helichrysum arenarium (L.) Moench inflorescences under ionic liquid-microwave mediated

机译:通过离子液体 - 微波介导的Helichrysum arenarium(L.)乳清室同时通过蒸馏通过固体萃取来获取精油的方法

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摘要

An efficient ionic liquid-mediated microwave-assisted hydrodistillation concatenated liquid-liquid extraction (ILMHDE) technique was developed for distillation of essential oil and extraction of non-volatile flavonoids (astragalin, quercetin, luteolin, kaempferol and apigenin) from the inflorescences of Helichryswn arenarium (L.) Moench. In addition to collecting essential oil on the top of hydrosol in the conventional oil-water separation process, another extraction process was realized for extracting some essential oil components from the hydrosol using a small amount of organic solvents, which can effectively reduce the organic content in wastewater and its further disposal burden. Through comparison, 1.0 M [C(a)mim]Br was selected for the extraction and distillation in a sample reaction flask, and ethyl ether was chosen as the extraction solvent in the second separation column. Based on the yields of total essential oil and total flavonoids, the ILMHDE process parameters (liquid-solid ratio, microwave irradiation time, microwave irradiation power) were optimized via the Box-Behnken design. Due to the combined effects of the microwave irradiation, the addition of ionic liquid and the modified hydrodistillation concatenated liquid-liquid extraction apparatus, greater advantages were found in the ILMHDE process compared with other traditional methods, as evidenced by the extraction kinetics. After the GC-MS analysis, a higher content of oxy-components was detected in the essential oil that was separated in the second separation column than that in the first one, and a more valuable essential oil was achieved. Therefore, the ILMHDE technique is a good alternative for simultaneous distillation of essential oil and extraction of non-volatile components from medicinal plants.
机译:开发了一种有效的离子液体介导的微波辅助氢化液相传液 - 液萃取(ILMHDE)技术,用于从Helichryswn羊肉花序中蒸馏出精油和萃取非挥发性黄酮(黄芪,槲皮素,葡萄呤,Kaempferol和Apigenin)的蒸馏(L.)Moench。除了在常规油水分离过程中收集水溶胶顶部的精油外,还实现了另一种提取过程,用于使用少量有机溶剂从水溶醇提取一些精油组分,这可以有效降低有机含量废水及其进一步处置负担。通过比较,选择1.0M [C(a)mim] Br用于样品反应烧瓶中的提取和蒸馏,并选择乙醚作为第二分离塔中的萃取溶剂。基于总精油的产量和总黄酮,通过Box-Behnken设计优化了ILMHDE工艺参数(液态比例,微波辐射时间,微波辐射功率)。由于微波辐射的综合效果,与其他传统方法相比,在ILMHDE过程中,在ILMHDE过程中发现了离子液体和改性氢化物级级替代液 - 液萃取装置的添加更大的优点,如萃取动力学所证明。在GC-MS分析之后,在将在第二分离塔中分离的精油中检测到较高的氧组分含量比第一柱中分离,并且实现了更有价值的精油。因此,ILMHDE技术是同时蒸馏精油和来自药用植物的非挥发性组分的替代方案。

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