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Updated: May 24, 2025

A Filter-based Surface Enhanced Raman Spectroscopic Assay for Rapid Detection of Chemical Contaminants
Published on: February 19, 2016
Rapid and in-situ detection of iodine and potassium ferrocyanide in table salt using enhanced-Multipass cavity Raman
Baokun Huang1, Chuqiu Zhao2, Dapeng Yang2
1School of Science, Jiangsu Ocean University, Lianyungang, 222005, China.
Abstract:
The excess of iodine (I2) and potassium ferrocyanide (K4[Fe(CN)6]) to table salt are harmful to both human health and environment. To date, there are still a lack of suitable methods for simple, rapid and in-situ to detect the I2 and K4[Fe(CN)6] contents in table salt. Herein, we employ a highly sensitive Raman spectroscopy, which is based on multiple reflection cavities and multi-directional signal collection optical systems, to detect the concentration of trace ions in table salt. The detection limit of our technology is less than 1 mg/kg in salt solutions, signifying that the corresponding quantitative detection limit in table salt is 3.45 mg/kg. Simultaneously, the relative Raman intensity of the ion exhibits a highly linear correlation with concentration (R2 = 0.999), rendering it a molecular probe for I2 and K4[Fe(CN)6] within table salt. The accuracy of this molecular probe for I2, K4[Fe(CN)6], and sulfate (SO42-) content in different salts is 87.2 %, 89.6 % and 95.6 % respectively.Compared with the traditional method, this method has the advantages of low sample consumption (1g of salt), fast detection speed (10 min), and the measured sample can be saved.
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