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首页> 外文期刊>Journal of food engineering >Effect of simultaneous ultrasonic and microwave assisted hydrodistillation on the yield, composition, antibacterial and antibiofilm activity of essential oils from Citrus medica L. var. sarcodactylis
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Effect of simultaneous ultrasonic and microwave assisted hydrodistillation on the yield, composition, antibacterial and antibiofilm activity of essential oils from Citrus medica L. var. sarcodactylis

机译:超声和微波辅助加氢精馏对柑桔精油产量,组成,抗菌和抗生物膜活性的影响。肉d

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摘要

Simultaneous ultrasonic/microwave assisted hydrodistillation extraction (UMHE) was first employed to extract essential oil. Meanwhile, the effects of UMHE, hydrodistillation extraction (HE), microwave assisted hydro distillation extraction (MHE) and solvent extraction (SE) on the yield, chemical composition, antibacterial and antibiofilm activity of essential oil were evaluated. The optimized conditions determined by response surface methodology were as follows: solvent to solid ratio was 5.2:1 (ml/g), extraction time was 15.5 min, and microwave power was 816 W. Moreover, 15 min was sufficient for UMHE to obtain higher yield than that by HE for 1.5 h, indicating a significant reduction of extraction time and an improvement of efficiency. Forty five compounds were identified in the essential oil through GC-MS analysis. The composition of essential oils obtained by UMHE, MHE and HE was similar, and the major compounds were D-Limonene, gamma-Terpinene and alpha-Pinene. Moreover, the results indicated that the antibacterial activity of the essential oils was similar. All the essential oils exhibited inhibitive effect on biofilm formation. The inhibitive effect of essential oils of HE and UMHE was significantly higher than that of the essential oil obtained by SE. This study suggests that UMHE is a rapid and efficient alternative for the extraction of essential oils, with a nice potential for application. Also, UMHE provides a possible approach to improve the antibacterial and antibiofilm activity of essential oils.
机译:首先采用超声/微波同时加氢精馏(UMHE)萃取精油。同时,评估了UMHE,加氢蒸馏萃取(HE),微波辅助加氢蒸馏萃取(MHE)和溶剂萃取(SE)对精油收率,化学组成,抗菌和生物膜活性的影响。通过响应表面法确定的优化条件如下:溶剂与固体的比例为5.2:1(ml / g),萃取时间为15.5分钟,微波功率为816W。此外,15分钟足以使UMHE获得更高的比HE持续1.5 h的收率高,表明提取时间显着减少,效率提高。通过GC-MS分析在香精油中鉴定出45种化合物。由UMHE,MHE和HE获得的精油组成相似,主要化合物为D-柠檬烯,γ-松油烯和α-P烯。而且,结果表明精油的抗菌活性是相似的。所有的香精油均对生物膜的形成具有抑制作用。 HE和UMHE精油的抑制作用明显高于SE所获得的精油。这项研究表明,UMHE是提取精油的一种快速有效的替代方法,具有很好的应用潜力。同样,UMHE提供了一种改善精油的抗菌和生物膜活性的可能方法。

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