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一种用于使用质谱法从不同环境水样中萃取草甘膦和氨甲基膦酸的商用分子印迹聚合物的初步回收研究。

Preliminary recovery study of a commercial molecularly imprinted polymer for the extraction of glyphosate and AMPA in different environmental waters using MS.

作者信息

Claude Bérengère, Berho Catherine, Bayoudh Sami, Amalric Laurence, Coisy Emeline, Nehmé Reine, Morin Philippe

机构信息

Institut de Chimie Organique et Analytique-UMR 7311, Université d'Orléans, Rue de Chartres, BP 6759, 45067, Orléans Cedex 2, France.

Bureau de Recherches Géologiques et Minières, Laboratory Division, 3 Avenue Claude Guillemin, BP 36009, 45060, Orléans Cedex 2, France.

出版信息

Environ Sci Pollut Res Int. 2017 May;24(13):12293-12300. doi: 10.1007/s11356-017-8844-5. Epub 2017 Mar 29.

Abstract

A commercial molecularly imprinted polymer (MIP) dedicated to glyphosate (GLY) and its main metabolite, aminomethylphosphonic acid (AMPA), was lately assessed as "POCIS-like" sampler on mineral water. The obtained results were encouraging with 111 and 122 mL day as sampling rates for GLY and AMPA, respectively. Therefore, before applying this passive sampler to environmental waters, the commercial phase was tested on different water matrices as a solid-phase extraction (SPE) device. The SPE protocol was carried on 250 mg of MIP with the following three steps: conditioning by Milli-Q water, loading of the sample (15 mL), and elution of the analytes by 4 mL 0.1 M HCl that were evaporated to dryness and recovered in 15 mL of the suitable solvent for analysis. This protocol was first applied to mineral water spiked by GLY and AMPA at environmental concentration levels (25-750 ng L). Analyses were carried out by ultra-performance liquid chromatography hyphenated to tandem mass after derivatization of GLY and AMPA by 9-fluorenylmethylchloroformate. The linear correlation between concentrations measured with and without SPE on MIP was proved.Furthermore, other extractions showed that high concentrations of metal ion interferents (lead(II), cadmium(II), and zinc(II)) in groundwaters did not reduce SPE performance of the MIP.Then, concentration assays were undertaken and brought noteworthy results, such as the recovery of 80% GLY and AMPA from groundwater spiked at 10 ng L and concentrated 100 times. For this purpose, ion exclusion chromatography hyphenated to mass was applied without previous derivatization of the analytes. The same concentration factor and analytical method were applied to 100 ng L spiked sea water with recoveries of 96% for GLY and 121% for AMPA.

摘要

一种专门用于草甘膦(GLY)及其主要代谢物氨甲基膦酸(AMPA)的商业分子印迹聚合物(MIP),最近被评估为矿泉水中的“类POCIS”采样器。获得的结果令人鼓舞,GLY和AMPA的采样率分别为111和122 mL/天。因此,在将这种被动采样器应用于环境水体之前,对该商业相作为固相萃取(SPE)装置在不同水基质上进行了测试。SPE方案在250 mg MIP上进行,包括以下三个步骤:用超纯水冲洗,加载样品(15 mL),用4 mL 0.1 M HCl洗脱分析物,将洗脱液蒸发至干,并在15 mL合适的溶剂中复溶用于分析。该方案首先应用于添加了环境浓度水平(25 - 750 ng/L)的GLY和AMPA的矿泉水。在GLY和AMPA用9-芴基甲基氯甲酸酯衍生化后,通过超高效液相色谱-串联质谱进行分析。证明了在MIP上进行SPE和不进行SPE时所测浓度之间的线性相关性。此外,其他萃取表明,地下水中高浓度的金属离子干扰物(铅(II)、镉(II)和锌(II))不会降低MIP的SPE性能。然后,进行了浓度测定并得出了值得注意的结果,例如从添加了10 ng/L并浓缩100倍的地下水中回收了80%的GLY和AMPA。为此,在分析物未预先衍生化的情况下应用了离子排斥色谱-质谱联用。将相同的浓缩因子和分析方法应用于添加了100 ng/L的海水,GLY的回收率为96%,AMPA的回收率为121%。

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