光谱学与光谱分析
|
微波辅助萃取-分光光度法测定卫矛中总黄酮
张帆1 ,周峰1 ,王桂花1 ,杨屹1* ,郭振库2
1. 北京化工大学理学院,北京 100029 2. 北京瑞利分析仪器公司,北京 100016
Determination of Total Flavones from Euonymus Alatus Sieb by Microwave-Assisted Extraction and Absorption Spectroscopy
ZHANG Fan1 ,ZHOU Feng1 ,WANG Gui-hua1 ,YANG Yi1* ,GUO Zhen-ku2
1. College of Science, Beijing University of Chemical Technology, Beijing 100029, China 2. Beijing Rayleigh Analytical Instrument Corporation, Beijing 100016, China
摘要 : 采用微波辅助萃取法提取,以分光光度法测定卫矛样品中的总黄酮含量。并且通过单因素实验和正交实验设计优化了溶剂浓度、溶剂用量、微波功率和微波辐射时间等微波提取条件,确定了微波辅助萃取法提取卫矛中黄酮类化合物的最佳条件为:使用60%乙醇,在液固比40:1条件下,以255 W的微波功率,微波辐射5 min。在上述最优条件下进行了精密度和回收率实验,所得结果的相对标准偏差为1.71% (n =5),回收率在97%~101%之间。与传统的索氏提取法和超声波提取法比较,微波辅助萃取法具有操作简便,经济可靠,重现性好等特点。该实验采用的微波辅助萃取-分光光度法测定法简便高效,可推广应用于各类中草药中总黄酮的含量测定。
关键词 :微波辅助萃取;分光光度法;卫矛;黄酮
Abstract :Determination of total flavones from euonymus alatus sieb by microwave-assisted extraction and absorption spectroscopy was reported. The effects of solvent concentration, ratio of solution to solid, microwave power and radiation time were evaluated by single factor and orthogonal experiments. The extraction conditions of flavones from euonymus alatus sieb by microwave-assisted method were optimized as 40:1 of the weight ratio of 60% (V/V) ethanol to twigs and microwave power of 255 W for 5 min. Under the optimized conditions the relative standard deviation is 1.71% (n =5) and the recovery is 97%-101%. Compared with Soxhlet extraction and ultrasound-assisted extraction, microwave-assisted extraction was simple and accurate with good reproducibility. It is suitable for the determination of flavone in many kinds of traditional Chinese medicines.
Key words :Microwave-assisted extraction (MAE);Absorption spectroscopy;Euonymus alatus sieb;Flavones
收稿日期: 2007-03-06
修订日期: 2007-06-16
通讯作者:
杨屹
E-mail: yangyi@mail.buct.edu. cn
引用本文:
张帆1 ,周峰1 ,王桂花1 ,杨屹1* ,郭振库2 . 微波辅助萃取-分光光度法测定卫矛中总黄酮[J]. 光谱学与光谱分析, 2008, 28(07): 1633-1636.
ZHANG Fan1 ,ZHOU Feng1 ,WANG Gui-hua1 ,YANG Yi1* ,GUO Zhen-ku2 . Determination of Total Flavones from Euonymus Alatus Sieb by Microwave-Assisted Extraction and Absorption Spectroscopy. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2008, 28(07): 1633-1636.
链接本文:
https://www.gpxygpfx.com/CN/10.3964/j.issn.1000-0593.2008.07.006
或
https://www.gpxygpfx.com/CN/Y2008/V28/I07/1633
[1] TANG Rui, HOU Xiang-yan, SUN Chen,et al(唐 睿, 侯翔燕, 孙 晨,等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2006, 26(8):1543. [2] Zhu J B, Wang M G, Wu W J,et al. Phytochemistry, 2002, 61(6):699. [3] CHEN Ke(陈 科). Chinese Traditional & Herbel Drugs(中草药), 1986, 17(3):1. [4] GUO Yu-hua, CHEN Xiao-lan, ZHANG Ting,et al(郭玉华, 陈晓岚, 张 婷,等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2006, 26(3):475. [5] HU Jian-qiu, ZHEN Yan(胡剑秋, 甄 艳). Chinese Journal of Ethnomedicine and Ethnopharmacy(中国民族民间医药杂志), 2000, (4):209. [6] DONG Lu-lu, SHEN Feng-yu(董陆陆, 申凤玉). Information on Traditional Chinese Medicine(中医药信息), 2000, 17(2):16. [7] CHEN Meng, YUAN Dong-xing(陈 猛, 袁东星). Journal of Instrumental Analysis(分析测试学报), 1999, 18(2):82. [8] MAO Shi-long, SANG Sheng-long(毛士龙, 桑圣龙). Nature Product Research Development(天然产物研究与开发), 2000, 12(5):14. [9] CHEN Lei, YANG Yi, ZHANG Xin-xiang,et al(陈 雷,杨 屹,张新祥,等). Chem. J. Chinese Universities(高等学校化学学报), 2004, 25(1):35. [10] HOU Xiang-yan, YANG Yi, GUO Zhen-ku(侯翔燕,杨 屹,郭振库). Chem. J. Chinese Universities(高等学校化学学报), 2005, 26(1):1627. [11] YUN Xue-ying, CHEN Qi-xiu, TONG Jie,et al(云学英, 陈其秀, 佟 杰,等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2004, 24(1):89. [12] PENG Mi-jun, ZHOU Chun-shan, LIU Jian-lan,et al(彭密军, 周春山, 刘建兰,等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2004, 24(12):1655.
[1]
杨承恩,李 萌,卢秋宇,王金玲,李雨婷,苏 玲. FTIR结合ELM对黑果腺肋花楸黄酮、多糖含量快速预测 [J]. 光谱学与光谱分析, 2024, 44(01): 62-68.
[2]
张 榕,段 宁,降林华,徐夫元,金 伟,李建辉. 紫外可见分光光度法直接测定高浓度六价铬溶液的光程优化研究 [J]. 光谱学与光谱分析, 2023, 43(06): 1829-1837.
[3]
姚 珊,张璇凌,蔡雨欣,何连琼,李佳潼,王小龙,刘 颖. 分光光度法对白洋淀各形态氮磷分布特征及源解析的研究 [J]. 光谱学与光谱分析, 2022, 42(04): 1306-1312.
[4]
. 不同产地丹参及根际土壤无机元素分析与评价 [J]. 光谱学与光谱分析, 2021, 41(11): 3618-3624.
[5]
. FTIR光谱快速鉴别刺梨黄酮的研究 [J]. 光谱学与光谱分析, 2021, 41(10): 3045-3050.
[6]
. 基于太赫兹时域光谱技术的黄酮类化合物研究 [J]. 光谱学与光谱分析, 2020, 40(12): 3919-3924.
[7]
. 番茄红素在不同溶剂中的分光光度法分析 [J]. 光谱学与光谱分析, 2019, 39(04): 1114-1117.
[8]
. 基于顺序注射分析的海水亚硝酸盐快速检测方法研究 [J]. 光谱学与光谱分析, 2019, 39(02): 589-595.
[9]
. 超支化聚酰胺接枝壳聚糖的制备及其对重金属和染料吸附的光谱分析 [J]. 光谱学与光谱分析, 2018, 38(11): 3583-3587.
[10]
. 含硼盐卤体系中碳酸根和碳酸氢根分析方法改进 [J]. 光谱学与光谱分析, 2018, 38(07): 2194-2199.
[11]
. 红外光谱结合化学计量学快速预测铁皮石斛中总黄酮含量 [J]. 光谱学与光谱分析, 2018, 38(06): 1702-1707.
[12]
. FTIR结合SVR对三七总多糖含量快速预测 [J]. 光谱学与光谱分析, 2018, 38(06): 1696-1701.
[13]
. 盐浴复合热处理氰酸根顺序注射研究和测定 [J]. 光谱学与光谱分析, 2018, 38(06): 1824-1828.
[14]
. 基于分光光度法的海水原位硅酸盐微芯片分析传感器的研制 [J]. 光谱学与光谱分析, 2018, 38(03): 895-900.
[15]
. 基于光谱分析技术的宣纸用铝盐施胶沉淀剂作用机理研究 [J]. 光谱学与光谱分析, 2018, 38(02): 418-423.