硅胶—硝酸银硅胶柱层析分离纯化β-倍半水芹烯
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(1. 山东职业学院生物工程系,山东 济南 250104;2. 枣庄市台儿庄区林业局,山东 枣庄 277400;3. 山东大学化学与化工学院,山东 济南 250061)

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王艳,女,山东职业学院助教,硕士。

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科技部农业科技成果转化项目(编号:2008GB2C600178)


Separation of β-sesquiphellandrene by silica gel and argentation column chromatography
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(1. Department of Bioengineering, Shandong Polytechnic, Jinan, Shandong 250104, China; 2. Taier zhuang forestry bureau of Zaozhuang municipal, Zaozhuang, Shandong 277400,China; 3. Institute of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong 250061, China)

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    摘要:

    利用普通硅胶柱,选用乙醚—正己烷作流动相对姜油树脂进行初步分离,采用GC—MS法进行跟踪检测。对比不同展开剂下β-倍半水芹烯和姜烯混合液在硝酸银硅胶板上的层析情况,选用体积比为991的正己烷—乙酸乙酯流动相体系分离其中的β-倍半水芹烯。结果表明:β-倍半水芹烯的GC—MS峰面积百分数达95.79%,收率为89.73%。通过对β-倍半水芹烯峰值样进行HPLC检测,证明β-倍半水芹烯的紫外特征吸收波长为232 nm,在姜烯的特征吸收峰262 nm下基本无吸收。

    Abstract:

    A aether and n-hexane solution was used as mobile phase to preliminary extract β-sesquiphellandrene from ginger oleoresin by common silica gel column chromatography, and GC—MS was used for detecting β-sesquiphellandrene tracing. Comparison of different developing solvents of β-sesquiphellandrene and zingiberene on argentated silica gel G pre-coated plate, hexane-ethyl acetate (991)was used as the mobile phase to sepatate β-sesquiphellandrene, the results indicated that the GC—MS area percentage of the silica gel and argentation column chromatography product was 95.79% with 89.73% recovery. Through the HPLC detection of β-sesquiphellandrene peak sample, β-sesquiphellandrene was found its existence of UV absorption at 232 nm, and generally had no absorption at 262 nm the characteristic absorption of zingiberene.

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王艳,周长远,杜爱玲.硅胶—硝酸银硅胶柱层析分离纯化β-倍半水芹烯[J].食品与机械,2016,32(5):165-167,228.
WANGYan, ZHOUChangyuan, DUAiling. Separation of β-sesquiphellandrene by silica gel and argentation column chromatography[J]. Food & Machinery,2016,32(5):165-167,228.

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  • 在线发布日期: 2023-03-09
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