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Updated: May 18, 2026

Extraction and Characterization of Surfactants from Atmospheric Aerosols
Published on: April 21, 2017
An in-situ extraction-preconcentration method using ionic liquid-based surfactants for the determination of organic
Bárbara Delgado1, Verónica Pino, Jared L Anderson
1Departamento de Química Analítica, Nutrición y Bromatología, Universidad de La Laguna (ULL), La Laguna (Tenerife) 38206, Spain. badelsas@ull.es
Abstract:
The determination of a group of organic contaminants from marine sediments samples including three polycyclic aromatic hydrocarbons, five alkylphenols (i.e., bisphenol-A or nonylphenol) and one paraben has been carried out using an extraction/preconcentration strategy with ionic liquid-based surfactants and high-performance liquid chromatography (HPLC) with diode array detection (DAD). Sediments are first extracted using two IL-based surfactants, specifically 1-hexadecyl-3-methyl imidazolium bromide (C(16)MIm-Br) and 1-hexadecyl-3-butyl imidazolium bromide (C(16)C(4)Im-Br), as the extraction media in a microwave-assisted extraction (MAE) procedure, followed by a novel in situ preconcentration method. The optimized MAE method requires 0.1 g of sediment and 5 mL of 40 mM C(16)MIm-Br IL solution. The extracts are then centrifuged and filtered. The subsequent preconcentration in situ approach consists of the insolubilization of an IL-based surfactant formed by a metathesis reaction using the anion-exchange reagent lithium bis[(trifluoromethane)sulfonyl]imide (LiNTf(2)), which produces an analyte enriched IL microdroplet. The optimized in situ approach utilizes 4 mL of the filtered extract, which are mixed with acetonitrile and 92 μL of LiNTf(2) solution (0.5 g mL(-1)), heated, vortexed and centrifuged. The formed IL microdroplet is then simply diluted with acetonitrile (~100 μL) and injected in the chromatograph without any further clean-up steps. The overall extraction/preconcentration method requires approximately 25 min in spite of dealing with complex solid samples, is nearly free of organic solvent (requires ~900 μL of acetonitrile per sample), and produces high preconcentration factors and quantification limits down to 0.04 mg kg(-1) using HPLC-DAD.
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