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Molecularly imprinted stir bar sorptive extraction coupled with atomic absorption spectrometry for trace analysis of copper in drinking water samples

机译:分子印迹搅拌棒吸附萃取-原子吸收光谱法用于饮用水中痕量铜的分析

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In this work, a novel molecularly imprinted polymer (MIP) coated stir bar was fabricated and used for the extraction of trace amounts of Cu from drinking water. Cu-morin complex was used as template molecule which was chemically bonded to a glass stir bar and was employed for stir bar sorptive extraction of trace. amounts of copper ions. The effects of different parameters such as pH, adsorption and desorption time, stirring rate, temperature and amount of ligand (morin) were evaluated on the extraction efficiency and the optimum conditions were established: the extraction and desorption times were fixed respectively at 20 and 30 min, mole ratio of ligand to the analyte was selected as 2, stirring speed was 700 rpm, pH was adjusted to 5 and the extraction process was performed at a temperature of 45 °C. Under these conditions, a pre-concentration factor of 25 was achieved and the total capacity of the stir bar for copper uptake was found to be 1200 ng. A non-imprinted polymer coating was used for comparison. The MIP stir bar showed sufficient mechanical and chemical stability and was able to perform more than 50 extractions without any damage to the polymer phase. The reproducibility between stir bars (n = 5) was 8.9%. The detection limit of the proposed method was found to be 0.38 μg L~(-1) with a relative standard deviation within 0.56-5.3% and a dynamic range between 1 and 1000 μg L~(-1). The method was successfully applied to the pre-concentration and determination of copper in a few different water samples.
机译:在这项工作中,制造了一种新型的分子印迹聚合物(MIP)涂层的搅拌棒,并用于从饮用水中提取痕量的铜。 Cu-morin复合物用作模板分子,该分子化学键合到玻璃搅拌棒上,并用于搅拌棒吸附萃取痕量。数量的铜离子。评估了pH,吸附和解吸时间,搅拌速率,温度和配体(morin)数量等参数对萃取效率的影响,并确定了最佳条件:萃取和解吸时间分别固定为20和30 1分钟后,将配体与分析物的摩尔比选择为2,搅拌速度为700rpm,将pH调节至5,并且在45℃的温度下进行萃取过程。在这些条件下,获得了25的预浓缩系数,并且发现搅拌棒的总铜吸收能力为1200 ng。使用非压印聚合物涂层进行比较。 MIP搅拌棒显示出足够的机械和化学稳定性,能够进行50次以上的萃取,而不会损坏聚合物相。搅拌棒(n = 5)之间的重现性为8.9%。发现该方法的检出限为0.38μgL〜(-1),相对标准偏差在0.56-5.3%之内,动态范围在1至1000μgL〜(-1)之间。该方法已成功应用于几种不同水样中铜的富集和测定。

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