首页> 外文期刊>Analytical and Bioanalytical Chemistry >Ultrasound-assisted emulsification microextraction coupled with gas chromatography–mass spectrometry using the Taguchi design method for bisphenol migration studies from thermal printer paper, toys and baby utensils
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Ultrasound-assisted emulsification microextraction coupled with gas chromatography–mass spectrometry using the Taguchi design method for bisphenol migration studies from thermal printer paper, toys and baby utensils

机译:使用Taguchi设计方法的超声辅助乳化微萃取结合气相色谱-质谱法研究热敏纸,玩具和婴儿用具中的双酚迁移

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摘要

The optimization of a clean procedure based on ultrasound-assisted emulsification liquid–liquid microextraction for the sensitive determination of four bisphenols is presented. The miniaturized technique was coupled with gas chromatography–mass spectrometry after derivatization by in situ acetylation. The Taguchi experimental method, an orthogonal array design, was applied to find the optimal combination of seven factors (each factor at three levels) influencing the emulsification, extraction and collection efficiency, namely acetic anhydride volume, sodium phosphate concentration, carbon tetrachloride volume, aqueous sample volume, sodium chloride concentration and ultrasound power and application time. A second factorial design was applied with four factors and five levels for each factor, 25 experiments being performed in this instance. The matrix effect was evaluated, and it was concluded that sample quantification can be done by calibration with aqueous standards. The detection limits ranged from 0.01 to 0.03 ng mL-1 depending on the compound. The environmentally friendly sample pretreatment procedure was applied to study the migration of the bisphenols from different types of samples: thermal printer paper, compact discs, digital versatile discs, small tight-fitting waistcoats, baby’s bottles, baby bottle nipples of different materials and children’s toys.
机译:提出了一种基于超声辅助乳化液-液微萃取的清洁程序的优化方法,该方法可灵敏地测定四种双酚。在通过原位乙酰化衍生化之后,将微型化技术与气相色谱-质谱联用。使用Taguchi实验方法(正交阵列设计)来发现影响乳化,萃取和收集效率的七个因素(每个因素在三个水平)的最佳组合,即乙酸酐体积,磷酸钠浓度,四氯化碳体积,水样品量,氯化钠浓度,超声功率和应用时间。应用了第二个因子设计,该因子设计具有四个因子,每个因子有五个级别,在这种情况下,进行了25个实验。对基质效应进行了评估,并得出结论,可以通过用水性标准液校准来完成样品定量。根据化合物的不同,检测限范围为0.01至0.03 ng mL -1 。环保的样品预处理程序用于研究不同类型样品中双酚的迁移:热敏打印机纸,光盘,数字多功能光盘,紧身小背心,奶瓶,不同材料的奶瓶奶嘴和儿童玩具。

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