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薄荷精油和亲脂性化合物的提取:采用多种技术评估过程动力学和环境影响

Extraction of Peppermint Essential Oils and Lipophilic Compounds: Assessment of Process Kinetics and Environmental Impacts with Multiple Techniques.

作者信息

Radivojac Aleksandar, Bera Oskar, Zeković Zoran, Teslić Nemanja, Mrkonjić Živan, Bursać Kovačević Danijela, Putnik Predrag, Pavlić Branimir

机构信息

Faculty of Technology, University of Novi Sad, Blvd. Cara Lazara 1, 21000 Novi Sad, Serbia.

Emergent BioSolutions, 5901 East Lombard St, Baltimore, MD 21224, USA.

出版信息

Molecules. 2021 May 13;26(10):2879. doi: 10.3390/molecules26102879.

Abstract

Consumers are becoming more mindful of their well-being. Increasing awareness of the many beneficial properties of peppermint essential oil (EO) has significantly increased product sales in recent years. Hydrodistillation (HD), a proven conventional method, and a possible alternative in the form of microwave-assisted hydrodistillation (MWHD) have been used to isolate peppermint EO. Standard Soxhlet and alternatively supercritical fluid (SFE), microwave-assisted, and ultrasound-assisted extraction separated the lipid extracts. The distillations employed various power settings, and the EO yield varied from 0.15 to 0.80%. The estimated environmental impact in terms of electricity consumption and CO emissions suggested that MWHD is an energy efficient way to reduce CO emissions. Different extraction methods and solvent properties affected the lipid extract yield, which ranged from 2.55 to 5.36%. According to the corresponding values of statistical parameters, empiric mathematical models were successfully applied to model the kinetics of MWHD and SFE processes.

摘要

消费者越来越关注自身健康。近年来,人们对薄荷精油(EO)诸多有益特性的认识不断提高,这显著增加了该产品的销量。水蒸馏法(HD)是一种经过验证的传统方法,而微波辅助水蒸馏法(MWHD)作为一种可能的替代方法,已被用于提取薄荷EO。标准索氏提取法以及超临界流体萃取法(SFE)、微波辅助萃取法和超声辅助萃取法被用于分离脂质提取物。蒸馏过程采用了不同的功率设置,EO产率在0.15%至0.80%之间。从电力消耗和二氧化碳排放方面估算的环境影响表明,MWHD是一种减少二氧化碳排放的节能方法。不同的提取方法和溶剂性质影响了脂质提取物的产率,产率范围为2.55%至5.36%。根据统计参数的相应值,经验数学模型成功应用于MWHD和SFE过程动力学的建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/061e/8152490/136ce86889a4/molecules-26-02879-g001.jpg

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