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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Microemulsion electrokinetic chromatography: An application for the simultaneous determination of suspected fragrance allergens in rinse-off products
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Microemulsion electrokinetic chromatography: An application for the simultaneous determination of suspected fragrance allergens in rinse-off products

机译:微乳液电动色谱法:用于同时测定冲洗产品中可疑香料过敏原的应用

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A mixture of 18 neutral UV-active compounds with different characteristics of polarity was determined by capillary electrophoresis using a pseudostationary phase constituted by a microemulsion. The test analytes were volatile fragrance compounds, included in a list of 24 chemicals classified as suspected allergens according to Directive 2003/15/CE. The considered compounds were detected at 195 nm and p-anisaldehyde was chosen as internal standard. The background electrolyte consisted of a standard microemulsion made of 90.95% 10 mM borax buffer, pH 9.2, 1.05% n-heptane, 8.00% SDS-butanol in 1:2 ratio, to which 40 mM methyl-β-cyclodextrin was added. Temperature and voltage were set at 20 °C and 25 kV, respectively. These experimental conditions allowed separation of the compounds to be obtained in about 20 min. The method was applied to real samples made up of rinse-off scented products. The results obtained using the standard microemulsion as pseudostationary phase showed its high resolution power, capable of effectively separating a complex mixture of analytes. Microemulsion electrokinetic chromatography was confirmed to have a great potential for different analytical challenges, holding up the possibility of using this technique as a good and complementary alternative to HPLC methods for routine analysis.
机译:通过毛细管电泳,使用由微乳液构成的假平稳相,确定了18种具有不同极性特性的中性UV活性化合物的混合物。测试分析物是挥发性芳香化合物,根据指令2003/15 / CE归类为24种被归类为可疑过敏原的化学物质。在195 nm处检测到所考虑的化合物,并选择对茴香醛作为内标。背景电解质由标准微乳组成,该微乳由90.95%的10 mM硼砂缓冲液,pH 9.2、1.05%的正庚烷,8.00%的SDS /正丁醇(按1:2的比例)制成,并添加40 mM的甲基-β-环糊精。温度和电压分别设置为20°C和25 kV。这些实验条件允许在约20分钟内分离出化合物。该方法适用于由漂洗香味产品制成的真实样品。使用标准微乳作为伪平稳相获得的结果显示出其高分辨率,能够有效分离复杂的分析物混合物。经证实,微乳液电动色谱法在应对各种分析挑战方面具有巨大潜力,这阻止了将该技术用作常规分析中HPLC方法的良好和补充选择的可能性。

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