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采用间歇式无溶剂微波技术可持续绿色提取柑橘皮精油

Sustainable and green extraction of citrus peel essential oil using intermittent solvent-free microwave technology.

作者信息

Xie Yuhao, Zhang Longdi, Wu Wenting, Xie Jiahao, Gao Boliang, Xiao Yiwen, Zhu Du

机构信息

Jiangxi Province Key Laboratory of Natural Microbial Medicine Research, Key Laboratory of Microbial Resources and Metabolism of Nanchang City, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang, Jiangxi, 330013, People's Republic of China.

Jiangxi Center of Medical Device Testing, Nanchang, Jiangxi, 330029, People's Republic of China.

出版信息

Bioresour Bioprocess. 2025 May 29;12(1):48. doi: 10.1186/s40643-025-00885-6.

Abstract

In the present study, a novel technology called intermittent solvent-free microwave extraction (ISFME), which integrates intermittent microwave treatment with solvent-free extraction, was proposed. Taking Nanfeng citrus peel as the research object, the extraction efficiency and composition of its essential oil were evaluated and compared with conventional hydrodistillation (HD) and solvent-free microwave extraction (SFME). Results from single-factor experiments and response surface method optimization indicate that the optimal parameters for SFME are a power of 660 W, a duration of 20 min, and a water content of 60%, yielding an essential oil output of 3.47%. In contrast, the optimal parameters for ISFME, determined through single-factor experiments, are a moisture content of 50%, a power setting of 380 W, a reaction time of 6 min, a 15 min interval, and 4 reaction cycles, resulting in an essential oil yield of 3.51%. Notably, the extraction efficiencies of ISFME and SFME are significantly superior to that of HD, which requires 240 min and yields only 3.28% essential oil. Furthermore, ISFME demonstrates comparable performance to SFME in terms of reaction time, extraction rate, and oil quality, while operating at a substantially lower power requirement of 380 W compared to the 660 W needed for SFME. Additionally, the carbon dioxide emissions and energy consumption associated with ISFME are markedly lower than those of traditional methods, amounting to only one-third of the energy consumption of SFME. These findings underscore that ISFME not only enhances the efficiency and quality of essential oil extraction but also minimizes environmental impact, thereby highlighting its significant advantages in terms of sustainability and ecological responsibility.

摘要

在本研究中,提出了一种名为间歇式无溶剂微波萃取(ISFME)的新技术,该技术将间歇式微波处理与无溶剂萃取相结合。以南丰柑橘皮为研究对象,对其精油的提取效率和成分进行了评估,并与传统水蒸馏法(HD)和无溶剂微波萃取法(SFME)进行了比较。单因素实验和响应面法优化结果表明,SFME的最佳参数为功率660W、持续时间20min、含水量60%,精油产量为3.47%。相比之下,通过单因素实验确定的ISFME的最佳参数为含水量50%、功率设置380W、反应时间6min、间隔15min、4个反应循环,精油产率为3.51%。值得注意的是,ISFME和SFME的提取效率明显优于HD,HD需要240min,精油产量仅为3.28%。此外,ISFME在反应时间、提取率和油质方面表现与SFME相当,同时运行功率要求大幅低于SFME所需的660W,仅为380W。此外,与ISFME相关的二氧化碳排放量和能源消耗明显低于传统方法,仅为SFME能源消耗的三分之一。这些发现强调,ISFME不仅提高了精油提取的效率和质量,还最大限度地减少了环境影响,从而突出了其在可持续性和生态责任方面的显著优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc17/12122996/df367a8dc739/40643_2025_885_Fig1_HTML.jpg

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