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Low concentration melamine detection with surface enhanced Raman spectroscopy

机译:表面增强拉曼光谱法检测低浓度三聚氰胺

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Melamine is rich in nitrogen and easily confound with natural protein present in dairy products. It is added to diluted milk to increase the protein concentration. However, interaction of melamine and cyanuric acid in our bladder triggers the formation of kidney stones, which results in acute kidney failure. The significance of this is accentuated in the case of infant formula, which is the sole source of food for infants, with several feedings a day. Raman spectroscopy is a photonic method capable of identifying unknown molecule through a biochemical fingerprint, from its scattering spectrum. It is simple, rapid, portable and pre-treatment is unnecessary. Our work here explores low concentration of melamine detection using Raman spectroscopy with gold coated slide (GS) as substrate. By observing melamine characteristic peak at 676cm−1, the intensity of the peak is observed at different concentration. The peak is occasionally visible up to 0.5ppm with very low intensity. Data pre-processing which include background subtraction and baseline removal is done to improve the spectra quality. It can be concluded that Raman spectroscopy with GS substrate is capable to detect melamine at low concentration. However, an optimization of pre-processing technique is essential to improve the detection limit to lower concentration.
机译:三聚氰胺富含氮,很容易与乳制品中的天然蛋白质混淆。将其添加到稀释的牛奶中以增加蛋白质浓度。但是,膀胱中三聚氰胺和氰尿酸的相互作用会触发肾结石的形成,从而导致急性肾衰竭。对于婴儿配方奶粉而言,这一点尤为重要。婴儿配方奶粉是婴儿的唯一食物来源,每天要喂几次母乳。拉曼光谱法是一种光子学方法,能够通过生化指纹从散射光谱中识别未知分子。它简单,快速,便携并且不需要预处理。我们在这里的工作探索了使用拉曼光谱法(以镀金载玻片(GS)为底物)检测低浓度的三聚氰胺。通过观察676cm-1处的三聚氰胺特征峰,可在不同浓度下观察到该峰的强度。有时会以非常低的强度看到高达0.5ppm的峰。进行了包括背景减法和基线去除在内的数据预处理,以提高光谱质量。可以得出结论,使用GS底物的拉曼光谱仪能够检测低浓度的三聚氰胺。但是,优化预处理技术对于提高检测限以降低浓度至关重要。

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