» Articles » PMID: 19437429

Simultaneous Determination of Parabens, Triclosan and Triclocarban in Water by Liquid Chromatography/electrospray Ionisation Tandem Mass Spectrometry

Overview
Specialty Chemistry
Date 2009 May 14
PMID 19437429
Citations 14
Authors
Affiliations
Soon will be listed here.
Abstract

A method for the determination of several household biocides in water by liquid chromatography/electrospray ionisation tandem mass spectrometry (LC/ESI-MS/MS) is presented. It permits the simultaneous determination of triclosan (TCS), triclocarban (TCC) and seven parabens, including the distinction between branched and linear isomers of propyl (i-PrP and n-PrP) and butyl parabens (i-BuP and n-BuP). Prior to LC/MS/MS, analytes are preconcentrated by solid-phase extraction (SPE) on Oasis HLB (60 mg) cartridges at natural sample pH and subsequently eluted with 4 mL of methanol. This simple SPE procedure provides extraction recoveries above 85% except for raw wastewater, where it falls to 65% for TCC. The performance of the method was tested with two triple-quadrupole LC/MS instruments from a low/mid and mid/high market range: a Varian 1200L and an API-4000. The latter system provided between 3 and 80 times lower limits of quantification (LOQs) than the first one, in the 0.08-0.44 ng/L range for surface water. Moreover, a comparison of matrix effects on both instruments showed a very different behaviour, particularly in the case of parabens. For these compounds signal suppression was observed in the 1200L instrument and signal enhancement with the 4000 instrument. As a result, different calibration approaches were chosen for them and this pointed to the need of matrix effect re-evaluation in method transfer between different LC/MS systems. The application of the method to real samples showed the ubiquity of methyl paraben (MeP) and n-PrP (at the 1-6 microg/L in raw wastewater) and the coexistence of i-BuP and n-BuP at similar levels (ca. 100-200 ng/L in raw wastewater).

Citing Articles

International Comparison, Risk Assessment, and Prioritisation of 26 Endocrine Disrupting Compounds in Three European River Catchments in the UK, Ireland, and Spain.

Rapp-Wright H, Rodriguez-Mozaz S, Alvarez-Munoz D, Barcelo D, Regan F, Barron L Molecules. 2023; 28(16).

PMID: 37630246 PMC: 10458904. DOI: 10.3390/molecules28165994.


Novel MIPs-Parabens based SPE Stationary Phases Characterization and Application.

Tartaglia A, Kabir A, Ulusoy S, Ulusoy H, Merone G, Savini F Molecules. 2019; 24(18).

PMID: 31540217 PMC: 6767171. DOI: 10.3390/molecules24183334.


Extended liquid chromatography high resolution mass spectrometry screening method for veterinary drug, pesticide and human pharmaceutical residues in aquaculture fish.

Turnipseed S, Storey J, Wu I, Andersen W, Madson M Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2019; 36(10):1501-1514.

PMID: 31361192 PMC: 7377552. DOI: 10.1080/19440049.2019.1637945.


Melamine Sponge Functionalized with Urea-Formaldehyde Co-Oligomers as a Sorbent for the Solid-Phase Extraction of Hydrophobic Analytes.

Garcia-Valverde M, Chatzimitakos T, Lucena R, Cardenas S, Stalikas C Molecules. 2018; 23(10).

PMID: 30309030 PMC: 6222532. DOI: 10.3390/molecules23102595.


Occurrence, distribution, and environmental risk of four categories of personal care products in the Xiangjiang River, China.

Lu J, Li H, Luo Z, Lin H, Yang Z Environ Sci Pollut Res Int. 2018; 25(27):27524-27534.

PMID: 30051289 DOI: 10.1007/s11356-018-2686-7.