Continuous Temperature-Dependent Raman Spectroscopy of Melamine and Structural Analog Detection in Milk Powder

Author:

Schmidt Walter F.1,Broadhurst C. Leigh1,Qin Jianwei1,Lee Hoyoung1,Nguyen Julie K.1,Chao Kuanglin1,Hapeman Cathleen J.2,Shelton Daniel R.1,Kim Moon S.1

Affiliation:

1. Environmental Microbiology and Food Safety Laboratory, Agricultural Research Service, U.S. Department of Agriculture, Building 303, BARC-East, 10300 Baltimore Blvd., Beltsville, MD 20705 USA

2. Hydrology and Remote Sensing Laboratory, Agricultural Research Service, U.S. Department of Agriculture, Building 001, BARC-West, 10300 Baltimore Avenue, Beltsville, MD 20705 USA

Abstract

Hyperspectral Raman imaging has the potential for rapid screening of solid-phase samples for potential adulterants. We can improve mixture analysis algorithms by defining a temperature range in which the contaminant spectrum changes dramatically and uniquely compared with unadulterated material. Raman spectra were acquired for urea, biuret, cyanuric acid, and melamine (pure and at 1% in dried milk powder) from 50 to 310 °C with a gradient of 1 °C min−1. Adulterants were clearly indentified in the milk powder. Specific frequencies that were mainly associated with ring breathing, stretching, and in-plane deformation shifted with respect to temperature up to 12 cm−1 in all four molecules. Specific frequencies significantly increased/decreased in intensity within narrow temperature ranges independent of whether the amine was mixed in milk. Correlation of Raman and differential scanning calorimetry data identified structural components and vibrational modes, which concur with or trigger phase transitions.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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