Please use this identifier to cite or link to this item:
https://hdl.handle.net/10953/1062
Title: | Ambient (desorption/ionization) mass spectrometry methods for pesticide testing in food: a review |
Authors: | Beneito-Cambra, Miriam Gilbert-López, Bienvenida Moreno-González, David Bouza, Marcos Franzke, Joachim García-Reyes, J. Francisco Molina-Díaz, Antonio |
Abstract: | Ambient mass spectrometry refers to the family of techniques that allows ions to be generated from condensed phase samples under ambient conditions and then, collected and analysed by mass spectrometry. One of their key advantages relies on their ability to allow the analysis of samples with minimal to no sample workup. This feature maps well to the requirements of food safety testing, in particular, those related to the fast determination of pesticide residues in foods. This review discusses the application of different ambient ionization methods for the qualitative and (semi)quantitative determination of pesticides in foods, with the focus on different specific methods used and their ionization mechanisms. More popular techniques used are those commercially available including desorption electrospray ionization (DESI-MS), direct analysis on real time (DART-MS), paper spray (PS-MS) and low-temperature plasma (LTP-MS). Several applications described with ambient MS have reported limits of quantitation approaching those of reference methods, typically based on LC-MS and generic sample extraction procedures. Some of them have been combined with portable mass spectrometers thus allowing “in situ” analysis. In addition, these techniques have the ability to map surfaces (ambient MS imaging) to unravel the distribution of agrochemicals on crops. |
Issue Date: | 2-Aug-2020 |
Publisher: | Royal Chemical Society |
Appears in Collections: | DQFA-Artículos |
Files in This Item:
File | Description | Size | Format | |
---|---|---|---|---|
Ambient desorption_ionization mass spectrometry methods for pesticide testing in food A review.pdf | 1,64 MB | Adobe PDF | ![]() View/Open |
This item is protected by original copyright |
This item is licensed under a Creative Commons License