6533b872fe1ef96bd12d39bd

RESEARCH PRODUCT

Measurement of pollution levels of N-nitroso compounds of health concern in water using ultra-performance liquid chromatography–tandem mass spectrometry

Dominique WolbertDominique WolbertMariana Liliana PacalaYassine KadmiYassine KadmiLacramioara RusuLidia FavierLidia FavierAndrei Ionut Simion

subject

Environmental EngineeringFormic acidGeneral Chemical EngineeringElectrospray ionizationAnalytical chemistry010501 environmental sciencesTandem mass spectrometry01 natural scienceschemistry.chemical_compoundN-nitrosaminesLiquid chromatography–mass spectrometry[CHIM.ANAL]Chemical Sciences/Analytical chemistryEnvironmental ChemistrySolid phase extractionSafety Risk Reliability and QualitySolid phase extraction0105 earth and related environmental sciencesDetection limitChromatography[SDE.IE]Environmental Sciences/Environmental Engineering010401 analytical chemistryExtraction (chemistry)6. Clean water0104 chemical sciencesWater qualityUltra-high liquid chromatography–tandem mass spectrometrychemistry13. Climate actionWater quality[CHIM.OTHE]Chemical Sciences/Other

description

International audience; This paper reports the development of a highly sensitive analytical method combining solid-phase extraction (SPE) with ultra-high performance liquid chromatography coupled with tandem mass spectrometry (UHPLC–MS/MS), for the monitoring of ultra-trace levels of N-nitrosamines in water samples. Under optimized analytical conditions, chromatographic separation was performed in 3 min, in isocratic mode, using an Acquity UHPLC C18 column and a mobile phase consisting of acetonitrile, water, and formic acid (60:40:0.1, v/v/v) at a flow rate of 0.4 mL min−1. Electrospray ionization tandem interface was employed prior to mass spectrometric detection. Good linearity (R2 ≥ 0.9987) and low limits of detection (0.04–0.4 ng L−1) and quantification (0.1–1.2 ng L−1) were obtained. The extraction recoveries ranged from 98 ± 1% to 100 ± 1% and the relative standard deviations were less than 1.53%. The matrix effect was between 98 ± 2 and 100 ± 1%. The obtained results clearly demonstrate that the developed method is accurate and highly sensitive for the simultaneous determination of N-nitroso-n-propylamine, N-nitrosomorpholine, N-nitrosomethylethylamine and N-nitrosodimethylamine at ultra-trace levels (ng L−1) in different types of water samples. Therefore, this method can be a useful analytical tool for future toxicological, water quality surveillance studies and for the investigation of drinking water quality. © 2016 Institution of Chemical Engineers

10.1016/j.psep.2016.04.026https://hal-univ-rennes1.archives-ouvertes.fr/hal-01544453/document