Duncan Kyle D, Vandergrift Gregory W, Krogh Erik T, Gill Chris G
Department of Chemistry, University of Victoria, Victoria, BC, Canada; Applied Environmental Research Laboratories (AERL), Department of Chemistry, Vancouver Island University, Nanaimo, BC, Canada.
J Mass Spectrom. 2015 Mar;50(3):437-43. doi: 10.1002/jms.3544.
Condensed phase membrane introduction mass spectrometry (CP-MIMS) is an online analytical method that allows for the direct, trace level measurement of a wide range of analytes in complex samples. The technique employs a semi-permeable membrane that transfers analytes from a sample into a flowing acceptor solvent, which is directly infused to an atmospheric pressure ionization source, such as electrospray or atmospheric pressure chemical ionization. While CP-MIMS and variants of the technique have been in the literature for nearly a decade, much of the work has focused on instrument development. Few studies have thoroughly addressed quantitative methods related to detection limits, ionization suppression, or linear dynamic range. We examine ionization suppression in the direct rapid quantitation of analytes by CP-MIMS and introduce several analytical strategies to mitigate these effects, including the novel implementation of a continuously infused internal standard in the acceptor phase solvent, and modulation of acceptor phase flow rate. Several representative analytes were used to evaluate this approach with spiked, complex sample matrices, including primary wastewater effluent and artificial urine. Also reported are improved measured detection limits in the low part-per-trillion range, using a 'stopped-flow' acceptor mode.
凝聚相膜引入质谱法(CP-MIMS)是一种在线分析方法,可对复杂样品中的多种分析物进行直接的痕量水平测量。该技术采用半透膜,将分析物从样品转移到流动的接受溶剂中,该接受溶剂直接注入大气压电离源,如电喷雾或大气压化学电离源。虽然CP-MIMS及其技术变体已在文献中出现近十年,但大部分工作都集中在仪器开发上。很少有研究全面探讨与检测限、电离抑制或线性动态范围相关的定量方法。我们研究了CP-MIMS在分析物直接快速定量中的电离抑制,并介绍了几种减轻这些影响的分析策略,包括在接受相溶剂中新型实施连续注入内标,以及调节接受相流速。使用几种代表性分析物,在加标复杂样品基质(包括原废水流出物和人工尿液)中评估了该方法。还报告了使用“停流”接受模式在低万亿分之一范围内提高的测量检测限。