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Detection of formaldehyde in food samples by enhanced chemiluminescence

机译:通过增强化学发光检测食品样品中的甲醛

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摘要

In this study, chemiluminescence (CL) from oxidation of formaldehyde and luminol was investigated under alkaline conditions to develop a sensitive analytical tool for formaldehyde detection. The developed method was successfully applied for detection of formaldehyde in spiked soft drinks, wine, and raw fish storing solution. CL enhancement by optimized conditions of luminol, urea-H2O2, pH, and sequence of addition was investigated, which was not explored previously. The limit of detection was 10 pg ml~(-1) and linear range 10 pg ml~(-1) to 100 μg ml~(-1) with a regression coefficient of R~2 = 0.998. The importance of these experimental parameters is discussed based on knowledge of oxidation of luminol by urea-H2O2 and further enhancement of CL by formaldehyde oxidation. Formaldehyde was spiked and recovered with 95-99.9%. The results obtained were compared with those of high-performance liquid chromatography (HPLC) and were well correlated.
机译:在这项研究中,在碱性条件下研究了甲醛和鲁米诺氧化产生的化学发光(CL),以开发用于检测甲醛的灵敏分析工具。所开发的方法已成功用于检测加标软饮料,葡萄酒和生鱼储存溶液中的甲醛。研究了通过鲁米诺,尿素-H2O2,pH和添加顺序的优化条件增强的CL,这在以前没有探讨过。检测限为10 pg ml〜(-1),线性范围为10 pg ml〜(-1)至100μgml〜(-1),回归系数R〜2 = 0.998。基于对尿素-H2O2氧化鲁米诺的氧化和甲醛氧化进一步增强CL的认识,讨论了这些实验参数的重要性。加标甲醛,回收率为95-99.9%。将获得的结果与高效液相色谱(HPLC)的结果进行比较,并具有良好的相关性。

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