光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2010年
4期
897-900
,共4页
徐荣%孙素琴%刘友刚%陈君%刘同宁%陈士林
徐榮%孫素琴%劉友剛%陳君%劉同寧%陳士林
서영%손소금%류우강%진군%류동저%진사림
傅里叶变换红外光谱%二维相关%肉苁蓉%管花肉苁蓉%盐生肉苁蓉%鉴别
傅裏葉變換紅外光譜%二維相關%肉蓯蓉%管花肉蓯蓉%鹽生肉蓯蓉%鑒彆
부리협변환홍외광보%이유상관%육종용%관화육종용%염생육종용%감별
Fourier transform infrared spectroscopy (FTIR)%Two-dimensional correlation infrared spectroscopy(2D-IR)%C. deserticola%C. tubulosa%C. salsa%Identification
采用傅里叶变换红外光谱(FTIR)及其二阶导数谱和二维相关红外光谱对传统名贵中药材肉苁蓉、管花肉苁蓉和盐生肉苁蓉进行鉴别研究.结果表明,肉苁蓉与管花肉苁蓉的红外谱图有明显区别,相似系数仅0.623 3;而肉苁蓉与盐生肉苁蓉的峰形和峰位均极其相似,相似系数达0.904 8,仅从一维图上无法看出两者的成分差异,但通过二阶导数谱中1 730(1 738),816 cm~(-1)处的峰形差异可发现二者的一些成分含量存在较明显差异.二维相关谱更直观地反映出三者的差异,它们的自动峰个数均不相同.可见,红外光谱法基本可以实现了对肉苁蓉属3种药材的鉴别,而且具有快速、有效和无损等优点.
採用傅裏葉變換紅外光譜(FTIR)及其二階導數譜和二維相關紅外光譜對傳統名貴中藥材肉蓯蓉、管花肉蓯蓉和鹽生肉蓯蓉進行鑒彆研究.結果錶明,肉蓯蓉與管花肉蓯蓉的紅外譜圖有明顯區彆,相似繫數僅0.623 3;而肉蓯蓉與鹽生肉蓯蓉的峰形和峰位均極其相似,相似繫數達0.904 8,僅從一維圖上無法看齣兩者的成分差異,但通過二階導數譜中1 730(1 738),816 cm~(-1)處的峰形差異可髮現二者的一些成分含量存在較明顯差異.二維相關譜更直觀地反映齣三者的差異,它們的自動峰箇數均不相同.可見,紅外光譜法基本可以實現瞭對肉蓯蓉屬3種藥材的鑒彆,而且具有快速、有效和無損等優點.
채용부리협변환홍외광보(FTIR)급기이계도수보화이유상관홍외광보대전통명귀중약재육종용、관화육종용화염생육종용진행감별연구.결과표명,육종용여관화육종용적홍외보도유명현구별,상사계수부0.623 3;이육종용여염생육종용적봉형화봉위균겁기상사,상사계수체0.904 8,부종일유도상무법간출량자적성분차이,단통과이계도수보중1 730(1 738),816 cm~(-1)처적봉형차이가발현이자적일사성분함량존재교명현차이.이유상관보경직관지반영출삼자적차이,타문적자동봉개수균불상동.가견,홍외광보법기본가이실현료대육종용속3충약재적감별,이차구유쾌속、유효화무손등우점.
In the present paper, Fourier transform infrared spectroscopy (FTIR) associated with second derivative infrared spec-troscopy and two-dimensional correlation spectroscopy (2D-IR) were used to analyze the 3 different sources of Hebra cistanehe.The results showed that these IR spectra showed their different macro-fingerprint features: the charactersistic peaks of C. deser-ticola were located at~1 730, 1 633, 1 156, 1 081, 1 025 and 931 cm~(-1) and those of C. tubulosa were at 1 692, 1 631, 1 604,1 516, 1 265 and 1 023 cm~(-1) , respectively. The only two peaks at ~1 151 and 1 085 cm~(-1) of C. salsa were different from that of C. deserticola. As a result, the IR spectrum of C. deserticola could be identified obviously from that of the C. tubulosa,whose similar index was only 0. 623 3, but it was very similar to that of C. salsa, whose similar index was up to 0. 904 8, dem-onstrating very similar ingredients. However, the difference between C. deserticola and C. salsa was obvious in the second de-rivative IR spectra: the shape of the two peaks of C. deserticola at ~1 730 and 816 cm~(-1) were much sharper. In addition, the fingerprint characters in 2D-IR spectra were more visualized. The three kinds of herbs were quite different from each other in the number and intensity of autopeaks. Therefore, FTLR macro-fingerprint method can identify different sources of Hebra cistance fast, nondestructively and effectively.