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Efficient Low-Cost Procedure for Microextraction of Estrogen from Environmental Water Using Magnetic Ionic Liquids

机译:使用磁离子液体从环境水中雌激素微萃取的高效低成本程序

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摘要

In this study, three magnetic ionic liquids (MILs) were investigated for extraction of four estrogens, i.e., estrone (E1), estradiol (E2), estriol (E3), and ethinylestradiol (EE2), from environmental water. The cation trihexyl(tetradecyl)phosphonium ([P66614]+), selected to confer hydrophobicity to the resulting MIL, was combined with tetrachloroferrate(III), ferricyanide, and dysprosium thiocyanate to yield ([P66614][FeCl4]), ([P66614]3[Fe(CN)6]), and ([P66614]5[Dy(SCN)8]), respectively. After evaluation of various strategies to develop a liquid–liquid microextraction technique based on synthesized MILs, we placed the MILs onto a magnetic stir bar and used them as extracting solvents. After extraction, the MIL-enriched phase was dissolved in methanol and injected into an HPLC–UV for qualitative and quantitative analysis. An experimental design was used to simultaneously evaluate the effect of select variables and optimization of extraction conditions to maximize the recovery of the analytes. Under optimum conditions, limits of detection were in the range of 0.2 (for E3 and E2) and 0.5 μg L−1 (for E1), and calibration curves exhibited linearity in the range of 1–1000 μg L−1 with correlation coefficients higher than 0.998. The percent relative standard deviation (RSD) was below 5.0%. Finally, this method was used to determine concentration of estrogens in real lake and sewage water samples.
机译:在该研究中,研究了三种磁离子液体(MIL)用于从环境水中提取四个雌激素,即雌激素(E1),雌二醇(E2),雌二醇(E2),雌二醇(E3)和乙烯醇(EE2)。选择赋予所得MIL的疏水性的阳离子三己基(四烷基)鏻([P66614] +)与四氯甲酸酯(III),铁氰化物和硫代氰酸氢镝合并为产率([P66614] [FECL4])([P66614] [Fe(CN)6])和([P66614] 5 [DY(SCN)8])。在评估基于合成密耳的液体微萃取技术的各种策略之后,将密耳放入磁搅拌棒中并用它们作为提取溶剂。萃取后,将富硫相溶于甲醇中,并注入HPLC-UV以进行定性和定量分析。使用实验设计来同时评估选择变量和优化提取条件的效果,以最大限度地提高分析物的回收率。在最佳条件下,检测限范率为0.2(E3和E2)和0.5μgL-1(对于E1),校准曲线在1-1000μgL-1的范围内显示出具有相关系数的线性度超过0.998。相对标准偏差(RSD)的百分比低于5.0%。最后,这种方法用于确定真正的湖泊和污水样品中雌激素的浓度。

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