...
首页> 外文期刊>Analytical and bioanalytical chemistry >Comparison of electrospray and UniSpray, a novel atmospheric pressure ionization interface, for LC-MS/MS analysis of 81 pesticide residues in food and water matrices
【24h】

Comparison of electrospray and UniSpray, a novel atmospheric pressure ionization interface, for LC-MS/MS analysis of 81 pesticide residues in food and water matrices

机译:电喷雾和UNISPRAY,一种新型大气压电离界面的比较,对于食品和水基质中的81个农药残留物的LC-MS / MS分析

获取原文
获取原文并翻译 | 示例
           

摘要

In mass spectrometry, the type and design of ionization source play a key role on the performance of a given instrument. Therefore, it is of paramount importance to evaluate newly developed sources for their suitability to analyze food contaminants like pesticide residues. Here, we carried out a head-to-head comparison of key extraction and analytical performance parameters of an electrospray ionization (ESI) source with a new atmospheric pressure ionization source, UniSpray (US). The two interfaces were evaluated in three matrices of different properties (coffee, apple, and water) to determine if multiresidue analysis of 81 pesticides by QuEChERS extraction and LC-MS/MS analysis could be improved. Depending on the matrix and irrespective of the chemical class, US provided a tremendous gain in signal intensity (22- to 32-fold in peak area, 6- to 7-fold in peak height), a threefold to fourfold increase in signal-to-noise ratio, a mild gain in the range of compounds that can be quantified, and up to twofold improvement of recovery. UniSpray offered comparable linearity and precision of the analyses with ESI, and did not affect the ion ratio. A gain in sensitivity of many compounds was observed with US, but in general, the two ionization interfaces did not show significant difference in LOD and LOQ. UniSpray suffered less signal suppression; the matrix effect was in average 3 to 4 times more pronounced, but showed better values than ESI. With no effect on recovery efficiency, US improved the overall process efficiency 3 to 4 times more than ESI.
机译:在质谱中,电离源的类型和设计在给定仪器的性能上起关键作用。因此,评估新开发的来源至关重要,以便他们适合分析农药残留物等食物污染物。在这里,我们对电喷雾电离(ESI)源的关键提取和分析性能参数进行了新的大气压电离源,Unispray(US)进行了头部比较。两种界面在不同性质(咖啡,苹果和水)的三个矩阵中,以确定通过QueChers提取和LC-MS / MS分析的81种农药的多迹分析。根据矩阵和无论化学类别如何,我们在信号强度(峰值高度为6至7倍的峰值区域22至7倍)中提供了巨大的增益,信号至四倍增加了三倍 - 不含比例,在可以量化的化合物范围内的温和增益,达到恢复的两倍改善。 UNISPRAY提供了与ESI分析的可比线性和精度,并且不会影响离子比率。对我们观察到许多化合物的敏感性的增益,但通常,两个电离界面没有显示出LOD和LOQ的显着差异。 UNISPRAY抑制了较少的信号抑制;矩阵效应平均为3至4倍,但显示比ESI更好。没有对恢复效率的影响,我们将整体过程效率提高3至4倍以上。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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