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作 者:吴小琼[1] 郑建珍[1] 刘文涵[1] 林振兴[2]
机构地区:[1]浙江工业大学化学工程与材料学院,浙江杭州310032 [2]宁波出入境检验检疫局,浙江宁波315012
出 处:《光谱学与光谱分析》2007年第7期1344-1346,共3页Spectroscopy and Spectral Analysis
基 金:浙江省分析测试基金项目(04128);浙江省重中之重实验室开放基金项目(20050505)资助
摘 要:利用葡萄糖溶液的激光拉曼光谱中的特征峰-CCO(1 125 cm^-1),以本底溶液水为内标物,组成相对强度,对葡萄糖溶液含量进行了测定研究,其线性范围为0~1.8 mol.L^-1,检出限为0.022 7 mol.L^-1,共存的KCl和NaCl不引起干扰,用于葡萄糖氯化钠注射液的测定获得了成功。经测定某市售标识量为葡萄糖氯化钠注射液、5%葡萄糖和10%葡萄糖注射液实测平均浓度分别为4.91%,4.93%和9.92%,其回收率分别在71.88%~126.31%,81.02%~124.89%和74.87%~121.32%之间,RSD为5.44%,4.34%和0.94%。该方法具有测定简单、操作方便,无需添加其他任何化学试剂,是一种绿色分析测定方法。In the present paper we report quantitative analysis of glucose using internal standard laser Raman spectra. A good linear correlation was observed between the intensities of the --COO band at 1 125 cm^-1 using excition wavelength of 632.81 nm (r=0. 998 8) and the glucose concentration over the range 0-1.8 mol · L^-1. Band intensities were normalized against an internal standard (water band at 1 643 cm^-1), and the limit of detection (L. O. D. ) of glucose is 0. 022 7 mol · L^-1. The interference ions would not influence the quantitative analysis. When this method was used to determine 5% glucose NaC1, 5% glucose, and 10 % glucose injections, the result showed that the recoveries are 71.88 %-126. 31%, 81.02 %-124.89 % and 74. 87 %-121.32 %, and the RSDs are 5. 44%, 4. 34% and 0. 94%, respectively. The non destructive, non intrusive nature of the method makes internal standard laser Raman spectra a convenient, accurate, and green quantitative analysis method.
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