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傅立叶红外技术在中药鉴别中的应用研究 被引量:1
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作者 郭晓玉 雷敬卫 +4 位作者 樊克锋 白雁 贾永 孙素琴 周群 《世界中西医结合杂志》 2006年第1期26-28,共3页
目的:探讨傅立叶红外技术(FT-IR)在中药鉴别中的应用价值。方法:采用配对试验方法,用FT-IR技术分别测定东阿阿胶与伪品阿胶、普通大豆与转基因大豆、山楂与山茱萸、淀粉与牡丹皮、山药、泽泻的图谱信息。结果:各配对物的图谱信息既具有... 目的:探讨傅立叶红外技术(FT-IR)在中药鉴别中的应用价值。方法:采用配对试验方法,用FT-IR技术分别测定东阿阿胶与伪品阿胶、普通大豆与转基因大豆、山楂与山茱萸、淀粉与牡丹皮、山药、泽泻的图谱信息。结果:各配对物的图谱信息既具有相似性,又具有明显的差异性。结论:应用FT-IR鉴别中药,既能揭示同类中药的共性,又能揭示各自的特异性,具有较高的可信度,能准确地鉴别中药。 展开更多
关键词 傅立叶红外技术 理化鉴定 中药
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Mechanism Study of Rice Straw Pyrolysis by Fourier Transform Infrared Technique 被引量:3
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作者 付鹏 胡松 +4 位作者 向军 孙路石 杨涛 张安超 张军营 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2009年第3期522-529,共8页
The pyrolysis mechanism of rice straw (RS) was investigated using a tube reactor with Fourier trans-form infrared (FTIR) spectroscopy and thermogravimetric analyzer. The results show that the maximum pyrolysis rate in... The pyrolysis mechanism of rice straw (RS) was investigated using a tube reactor with Fourier trans-form infrared (FTIR) spectroscopy and thermogravimetric analyzer. The results show that the maximum pyrolysis rate increases with increasing heating rate and the corresponding temperature also increases. The three-pseudocomponent model could describe the pyrolysis behavior of rice straw accurately. The main pyrolysis gas products are H2O, CO2, CO, CH4, HCHO (formaldehyde), HCOOH (formic acid), CH3OH (methanol), C6H5OH (phenol), etc. The releasing of H2O, CO2, CO and CH4 mainly focuses at 220-400°C. The H2O formation process is separated into two stages corresponding to the evaporation of free water and the formation of primary volatiles. The release of CO2 first increases with increasing temperature and gets the maximum at 309°C. The releasing behavior of CO is similar to H2O and CO2 between 200 and 400°C. The production of CH4 happens, compared to CO2 and CO, at higher temperatures of 275-400°C with the maximum at 309°C. When the temperature exceeds 200°C, hy-droxyl and aliphatic C H groups decrease significantly, while C O, olefinic C C bonds and ether structures in-crease first in the chars and then the aromatic structure develops with rising temperature. Above 500°C, the material becomes increasingly more aromatic and the ether groups decreases with an increase of temperature. The aromati-zation process starts at ≈350°C and continues to higher temperatures. 展开更多
关键词 rice straw PYROLYSIS MECHANISM Fourier transform intrared
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