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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Rapid ultrasound assisted emulsification micro-solid phase extraction based on molecularly imprinted polymer for HPLC-DAD determination of bisphenol A in aqueous matrices
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Rapid ultrasound assisted emulsification micro-solid phase extraction based on molecularly imprinted polymer for HPLC-DAD determination of bisphenol A in aqueous matrices

机译:快速超声辅助乳化微固相萃取基于分子印迹聚合物,用于HPLC-DAD测定水性基质中双酚A的测定

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Abstract Molecularly imprinted polymer (MIP) was employed as sorbent in ultrasound assisted emulsification molecularly imprinted polymer micro-solid phase extraction (USAE-MIP-μ-SPE) of bisphenol A (BPA) in water, beverages and the aqueous liquid in canned foods prior to high performance liquid chromatography-diode array detector (HPLC-DAD) analysis. Several effective variables, such as types of emulsification solvent and its volume, types of desorption solvent and its volume, salting out effect, pH of sample solution, mass of sorbent, extraction and desorption time, and sample volume, were optimized comprehensively. Under the optimized USAE-MIP-μ-SPE and HPLC-DAD conditions, the method demonstrated good linearity over the range of 0.5–700μgL?1 with a coefficient determination of R 2 =0.9973, low limit of detection (0.07μgL?1), good analyte recoveries (82.2–118.9%) and acceptable RSDs (0.7–14.2%, n=3) with enrichment factor of 49. The method was applied to thirty samples of drinking water, mineral water, river water, lake water, as well as beverages and canned foods, the presence of BPA was identified in four samples. The proposed method showed good selectivity and reusability for extraction of BPA, and hence the USAE-MIP-μ-SPE is rapid, simple, cost effective and environmentally friendly. 展开▼
机译:<![cdata [ 抽象 分子印迹聚合物(MIP)在超声辅助乳化分子印迹聚合物微固相萃取中使用(USAE-MIP-μ-SPE)的吸附剂)在高效液相色谱 - 二极管阵列检测器(HPLC-DAD)分析之前,在水,饮料和水液中的水,饮料和含水液体中的水液。综合优化了几种有效变量及其体积的乳化溶剂及其体积,解吸溶剂类型,盐洗效果,对样品溶液的质量,质量,萃取和解吸时间和样品体积。在优化的USAE-MIP-μ-SPE和HPLC-DAD条件下,该方法在0.5-700 μgμg=“0.25”/ > l ?1 具有系数确定 r 2 = 0.9973,检测限度下限(0.07 μg l ?1 ),良好的分析物回收率(82.2-118.9%)和可接受的rsds(0.7-14.2%, n = 3 )富集因子为49.将该方法应用于三十次饮用水,矿泉水,河水,湖水以及饮料和罐头食品的三十次样品,在四个样品中鉴定了BPA的存在。所提出的方法显示出良好的选择性和可重用性,用于提取BPA,因此USAE-MIP-μ-SPE快速,简单,成本效益和环保。

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