两种桉树品种叶片苯/乙醇提取物中生物活性成分的GC/MS测定

Qi-mei Liu, Yin Luo, Hong Wang, W. Peng, Yi-qiang Wu, Shui-ping Yin, D. Zhang, Qing-zhi Ma
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引用次数: 1

摘要

为了更好地利用和回收桉树油生产废水,减少其对水环境的污染,我们采用GC/MS分析了两种桉树品种(camaldulensis和E. citriodora)叶片苯/乙醇提取物中可能的最高附加值成分。采用面积归一化法测定各组分的相对含量。共鉴定出22个化合物,占香茅叶苯/乙醇提取物的92.12%,主要成分为5-(乙酰氨基甲基)-4-氨基-2-甲基-(15.40%)、十六烷酸(10.25%)、苯甲醛、4-羟基-(8.64%)、木糖醇(7.57%)、环戊醇(7.10%)、2-丙烯酸、3-(4-羟基苯基)-(4.41%)、桉树油(1.38%)等。香茅叶苯/乙醇提取物的28个化合物占98.41%。主要成分为乙醇、2-丁氧基(21.70%)、苯、甲基乙基(15.61%)、17-十八烯醛(15.25%)、1-己糖醛(9.45%)、1-二十糖醇(6.92%)、环四糖烷(6.67%)、α。-茶香烯(3.75%)等;功能分析结果表明,黄樟叶和黄樟叶的苯/乙醇提取物均含有丰富的高档天然药物成分,并含有可开发为化妆品、生物燃料和工业溶剂等高附加值材料的成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GC/MS Determination of Bioactive Constituents of Benzene/Ethanol Extractive of Leaves of Two Eucalyptus Cultivars
In order to better utilize and recover the productive wastewater from the Eucalyptus oil and hence decrease its pollution to water environment, we used GC/MS to analyze the possible top value-added components of benzene/ethanol extractives of leaves of two Eucalyptus cultivars, i.e. E. camaldulensis and E. citriodora . Relative content of each component was determined by area normalization. 22 compounds representing 92.12% of the benzene/ethanol extractive of E. camaldulensis leaves were identified, and the main constituents were 5-(acetylaminomethyl)-4-amino-2-methyl- (15.40%), hexadecanoic acid (10.25%), benzaldehyde,4-hydroxy- (8.64%), xylitol (7.57%), cyclopentanol (7.10%), 2-propenoic acid,3-(4-hydroxyphenyl)- (4.41%), eucalyptol (1.38%), etc. 28 compounds representing 98.41% of the benzene/ethanol extractive of E. citriodora leaves were also identified, and the main constituents were ethanol,2-butoxy- (21.70%), benzene,methyl(l-methylethyl)- (15.61%), 17-octadecenal (15.25%), 1-hexacosanal (9.45%), 1-eicosanol (6.92%), cyclotetracosane (6.67%), .alpha.-phellandrene (3.75%), etc. The results of function analyses showed that the benzene/ethanol extractives of leaves of both E. camaldulensis and E. citriodora are abundant in materials of noble natural medicines, and also contains constituents which can be developed into top value-added materials of cosmetic, biofuel and industrial solvent.
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