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Potential of short-column liquid chromatography with tandem mass spectrometric detection for the rapid study of pesticide degradation

机译:短柱液相色谱-串联质谱检测在农药降解快速研究中的潜力

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摘要

The applicability of solid-phase extraction-LC using two short columns (SPE-LC) and/or single-short-column liquid chromatography (SSC) combined on-line with tandem mass spectrometry (MS) was demonstrated for the rapid study of pesticide degradation. A fast analytical procedure was developed to provide preliminary information concerning experimental conditions, approximate rates of degradation and identity of the degradation products. Surface water samples were spiked at relevant concentration levels with well-known micro-contaminants and photolysis was used to transform parent compounds into their degradation products. In general, the strategy was as follows: at 30-min intervals 10-mL samples were on-line enriched, separated by short-column LC and recorded in full-scan MS to obtain information on the disappearance of the parent compound and the appearance of breakdown products. To obtain structural information, product-ion spectra of selected compounds appearing in the full-scan MS chromatogram were recorded; this enabled the identification of several degradation products. Total analysis time of enrichment/separation and detection was about 10-15 min. [References: 11]
机译:证明了使用两个短柱(SPE-LC)和/或单短柱液相色谱(SSC)在线联用串联质谱(MS)进行固相萃取LC的快速研究农药的方法降解。开发了一种快速分析程序,以提供有关实验条件,近似降解速率和降解产物身份的初步信息。将地表水样品掺入已知浓度的相关微浓度污染物,并使用光解法将母体化合物转化为其降解产物。通常,该策略如下:每隔30分钟对10 mL样品进行在线富集,通过短柱LC分离,并在全扫描MS中记录,以获取有关母体化合物消失和外观的信息击穿产品。为了获得结构信息,记录了出现在全扫描MS色谱图中的所选化合物的产物离子质谱图。这样可以识别几种降解产物。富集/分离和检测的总分析时间为约10-15分钟。 [参考:11]

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