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Melamine in Milk with Surface Enhanced Raman Spectroscopy

机译:三聚氰胺在牛奶中具有表面增强拉曼光谱

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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 detection for traces of melamine in infant formula using Raman spectroscopy with gold substrate. A Raman spectra unique of melamine is first established. The characteristic peak at 676cm"1 signatures the Raman fingerprint for melamine. Then mixtures of milk and melamine, in liquid and powder form, are examined. The characteristic peak of melamine is found in the spectra of all the mixtures adulterated with melamine. It can be concluded that Raman spectroscopy with gold substrate is capable to detect for traces of melamine in infant formula, in different forms, to ensure a safe complementary and substitute for breast milk .
机译:三聚氰胺含有丰富的氮,并且容易混淆乳制品中存在的天然蛋白质。将其加入稀释的牛奶以增加蛋白质浓度。然而,三聚氰胺和氰尿酸在我们的膀胱中的相互作用触发了肾结石的形成,这导致急性肾功能衰竭。在婴儿配方配方的情况下,这是婴儿的婴儿唯一的食物来源,每天有几个喂食。拉曼光谱是一种光子方法,其能够通过生物化学指纹从其散射光谱识别未知分子。简单,快速,便携,预处理是不必要的。我们的工作在这里探讨了使用拉曼光谱用金基底的婴儿配方配方术中三聚氰胺的检测。首先建立三聚氰胺的拉曼光谱。 676cm的特征峰“1签署了三聚氰胺的拉曼指纹。然后检查牛奶和三聚氰胺,液体和粉末形式的混合物。在所有混合物掺杂的所有混合物的光谱中都发现了三聚氰胺的特征峰。它可以得出结论,具有金基底的拉曼光谱能够以不同的形式检测婴儿配方中三聚氰胺的痕量,以确保母乳的安全互补和替代品。

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