Department of Chemistry, Lomonosov Moscow State University, Moscow 119991, Russia.
Sensors (Basel). 2023 Mar 28;23(7):3519. doi: 10.3390/s23073519.
In this study, aqueous two-phase systems (ATPSs) containing a cationic and anionic surfactants mixture were used for the preconcentration of the synthetic food dyes Allura Red AC, Azorubine, Sunset Yellow, Tartrazine, and Fast Green FCF. A rapid, simple, low cost, affordable, and environmentally friendly methodology based on microextraction in ATPSs, followed by spectrophotometric/colorimetric determination of the dyes, is proposed. The ATPSs are formed in mixtures of benzethonium chloride (BztCl) and sodium N-lauroylsarcosinate (NaLS) or sodium dihexylsulfosuccinate (NaDHSS) under the molar ratio close to equimolar at the total surfactant concentration of 0.01-0.20 M. The density, viscosity, polarity, and water content in the surfactant-rich phases at an equimolar ratio BztCl:NaA were determined. The effects of pH, total surfactant concentration, dye concentration, and time of extraction/centrifugation were investigated, and the optimum conditions for the quantitative extraction of dyes were established. The smartphone-based colorimetric determination was employed directly in the extract without separating the aqueous phase. The analytical performance (calibration linearity, precision, limits of detection and quantification, reproducibility, and preconcentration factor) and comparison of the spectrophotometric and smartphone-based colorimetric determination of dyes were evaluated. The method was applied to the determination of dyes in food samples and food-processing industrial wastewater.
在这项研究中,使用含有阳离子和阴离子表面活性剂混合物的双水相体系 (ATPS) 来预浓缩合成食用染料诱惑红 AC、偶氮玉红、日落黄、柠檬黄和亮绿 FCF。提出了一种基于微萃取在 ATPS 中的快速、简单、低成本、经济实惠且环保的方法,随后通过分光光度法/比色法测定染料。在总表面活性剂浓度为 0.01-0.20 M 时,接近等摩尔比的摩尔比下,在苯扎氯铵 (BztCl) 和十二烷基磺酸钠 (NaLS) 或二己基磺基琥珀酸钠 (NaDHSS) 的混合物中形成 ATPS。测定等摩尔比 BztCl:NaA 时表面活性剂富相的密度、粘度、极性和含水量。考察了 pH、总表面活性剂浓度、染料浓度和萃取/离心时间的影响,确定了定量萃取染料的最佳条件。智能手机比色法直接用于提取物中,无需分离水相。评估了染料的分析性能(校准线性、精密度、检测限和定量限、重现性和预浓缩因子)以及分光光度法和智能手机比色法测定染料的比较。该方法应用于食品样品和食品加工工业废水中染料的测定。