首页> 外文期刊>Analytical and Bioanalytical Chemistry >Fully automated standard addition method for the quantification of 29 polar pesticide metabolites in different water bodies using LC-MS/MS
【24h】

Fully automated standard addition method for the quantification of 29 polar pesticide metabolites in different water bodies using LC-MS/MS

机译:全自动标准添加方法,使用LC-MS / MS定量分析不同水域中的29种极性农药代谢物

获取原文
获取原文并翻译 | 示例
           

摘要

A reliable quantification by LC-ESI-MS/MS as the most suitable analytical method for polar substances in the aquatic environment is usually hampered by matrix effects from co-eluting compounds, which are unavoidably present in environmental samples. The standard addition method (SAM) is the most appropriate method to compensate matrix effects. However, when performed manually, this method is too labour- and time-intensive for routine analysis. In the present work, a fully automated SAM using a multi-purpose sample manager “Open Architecture UPLC®-MS/MS” (ultra-performance liquid chromatography tandem mass spectrometry) was developed for the sensitive and reliable determination of 29 polar pesticide metabolites in environmental samples. A four-point SAM was conducted parallel to direct-injection UPLC-ESI-MS/MS determination that was followed by a work flow to calculate the analyte concentrations including monitoring of required quality criteria. Several parameters regarding the SAM, chromatography and mass spectrometry conditions were optimised in order to obtain a fast as well as reliable analytical method. The matrix effects were examined by comparison of the SAM with an external calibration method. The accuracy of the SAM was investigated by recovery tests in samples of different catchment areas. The method detection limit was estimated to be between 1 and 10 ng/L for all metabolites by direct injection of a 10-μL sample. The relative standard deviation values were between 2 and 10 % at the end of calibration range (30 ng/L). About 200 samples from different water bodies were examined with this method in the Rhine and Ruhr region of North Rhine-Westphalia (Germany). Approximately 94 % of the analysed samples contained measurable amounts of metabolites. For most metabolites, low concentrations ≤0.10 μg/L were determined. Only for three metabolites were the concentrations in ground water significantly higher (up to 20 μg/L). In none of the examined drinking water samples were the health-related indication values (between 1 and 3 μg/L) for non-relevant metabolites exceeded.
机译:通过LC-ESI-MS / MS作为对水生环境中极性物质最合适的分析方法,进行可靠的定量分析通常会受到共洗脱化合物的基质效应的影响,这些化合物不可避免地存在于环境样品中。标准加法(SAM)是补偿基质效应的最合适方法。但是,如果手动执行此方法,则对于常规分析而言,这种方法既费时又费力。在当前工作中,开发了一种使用多功能样品管理器“ Open ArchitectureUPLC®-MS/ MS”(超高效液相色谱串联质谱)的全自动SAM,用于灵敏可靠地测定食品中29种极性农药的代谢物。环境样品。与直接进样UPLC-ESI-MS / MS测定同时进行四点SAM,然后进行工作流程以计算分析物浓度,包括监测所需的质量标准。优化了有关SAM,色谱和质谱分析条件的几个参数,以获得快速而可靠的分析方法。通过将SAM与外部校准方法进行比较来检查基质效应。通过对不同集水区的样本进行恢复测试来研究SAM的准确性。通过直接进样10μL样品,所有代谢物的方法检测限估计为1至10 ng / L。在校准范围结束时(30 ng / L),相对标准偏差值在2%至10%之间。使用这种方法,在北莱茵-威斯特法伦州(德国)的莱茵河和鲁尔地区对来自不同水体的大约200个样品进行了检查。大约94%的分析样品中含有可测量数量的代谢产物。对于大多数代谢物,测定的低浓度≤0.10μg/ L。仅对于三种代谢物,地下水中的浓度显着更高(高达20μg/ L)。在所有检查的饮用水样本中,没有任何一项不相关的代谢物的健康相关指示值超过1至3μg/ L。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号