陆英挥发油超临界CO2萃取工艺优化及其成分分析
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(湖南科技学院湖南省银杏工程技术研究中心,湖南 永州 425199)

作者简介:

姜红宇,男,湖南科技学院讲师,博士。

通讯作者:

王宗成(1983—),男,湖南科技学院讲师,硕士。E-mail:wangzongche@163.com

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湖南省高校科技创新团队支持计划资助(编号:2012-318);湖南科技学院湘南优势植物资源综合利用湖南省重点实验室开放基金资助(编号:XNZW16C03);永州市科技计划资助项目\[编号:永科发(2016)27号-11\];湖南科技学院生物工程重点学科资助


Extraction optimization of volatile oil from chinese elder herb by supercritical CO2 and its composition analysis
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(Hunan Provincial Engineering Research Center for Ginkgo Biloba, Hunan University of Science and Engineering, Yongzhou, Hunan 425199, China)

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    摘要:

    以陆英为原料,采用单因素和响应面试验优化其挥发油的超临界CO2萃取工艺,重点探讨CO2流量、萃取压力、萃取时间、萃取温度对陆英挥发油得率的影响,并通过气相色谱-质谱(GC-MS)对陆英挥发油成分进行定性定量分析。结果表明,优化的陆英挥发油提取工艺条件为:CO2流量25 L/h、萃取压力30.5 MPa、萃取温度45.0 ℃、萃取时间2.8 h,该条件下陆英挥发油得率为0.86%。从陆英挥发油中鉴定出了16个成分,占挥发油含量约93.87%,其中含量较多的有3-甲基戊酸(29.37%)、3-甲基丁酸(13.83%)、E-4-己烯-1-醇(8.27%)等,另外3-乙硫基丁醛(6.46%)含量也较多。

    Abstract:

    The extraction conditions of volatile oil from Chinese elder herb by supercritical CO2 were optimized by single factor experiment and response surface methodology. Flow rate of CO2, the pressure, temperature and time of extraction were employed to examine the influences of the yield of volatile oil. The chemical constituents were separated and identified by Gas chromatography-mass spectrometry (GC-MS). The optimal extracting conditions were flow rate of CO2 25 L/h, extraction pressure 30.5 MPa, at 45.0 ℃ for 2.8 h. The extraction rate of volatile oil from Chinese elder herb was 0.86%. 16 kinds of volatile compounds were separated from Chinese elder herb and accounted for 93.87% of the total extractions. The contents of the more compounds were 3-methylpentanoic acid (29.37%), 3-methylbutanoic acid (13.83%), 4-hexene-1-ol (8.27%), and 3-(ethylthio) butanoic acid (6.46%), respectively.

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姜红宇,刘郁峰,谢国飞,等.陆英挥发油超临界CO2萃取工艺优化及其成分分析[J].食品与机械,2017,33(10):154-157.
JIANGHongyu, LIUYufeng, XIEGuofei, et al. Extraction optimization of volatile oil from chinese elder herb by supercritical CO2 and its composition analysis[J]. Food & Machinery,2017,33(10):154-157.

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  • 在线发布日期: 2023-03-10
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