6533b7d8fe1ef96bd126a3ec

RESEARCH PRODUCT

In tube-solid phase microextraction-nano liquid chromatography: Application to the determination of intact and degraded polar triazines in waters and recovered struvite.

N. Jornet-martínezPascual Serra-moraYolanda Moliner-martínezPilar Campíns-falcó

subject

AnalyteCapillary actionStruviteSurface PropertiesAnalytical chemistry02 engineering and technologySolid-phase microextraction01 natural sciencesBiochemistrySensitivity and SpecificityAnalytical Chemistrychemistry.chemical_compoundLimit of DetectionPhase (matter)Chromatography High Pressure LiquidSolid Phase MicroextractionChromatographyElutionNanotubes CarbonTriazines010401 analytical chemistryOrganic ChemistryExtraction (chemistry)General Medicine021001 nanoscience & nanotechnology0104 chemical sciencesSolventchemistryStruvite0210 nano-technologyWater Pollutants Chemical

description

Abstract In-tube solid-phase microextraction (IT-SPME) coupled to miniaturized liquid chromatography (LC) techniques are attractive mainly due to the column efficiency improvement, sensitivity enhancement and reduction of solvent consumption. In addition, the nanomaterials based sorbents can play a key role in the improvement of the extraction efficiency taking into account their interesting physical and chemical properties. Thus, in this work the performance of IT-SPME coupled to nano LC (NanoLC) has been compared with the performance of IT-SPME coupled to capillary LC (CapLC) with similar configurations for the determination of polar triazines including their degradation products. In both cases, a DAD detector was used. Different extractive phases such as TRB-5, TRB-5/c-SWNTs, TRB-5/c-MWNTs capillary columns have been tested. The dimensions of the capillary columns were 0.32 mm id × 40 cm length and 0.1 or 0.075 mm i.d. × 15 cm length for the couplings with CapLC and NanoLC, respectively. The processed volume was 4 mL for CapLC and 0.5 mL for NanoLC. The elution was carried out with ACN:H 2 O (30:70, v/v). IT-SPME-NanoLC has shown a higher performance than IT-SPME-CapLC for the target analytes demonstrating the enhancement of the extraction efficiency with the former configuration. A new phase TEOS-MTEOS-SiO 2 NPs has been also proposed for IT-SPME-NanoLC, which improves the retention of polar compounds. Compared with previously published works, improved LODs were achieved (0.025–0.5 μg L −1 ). The practical application of the proposed procedure has been demonstrated for the analysis of water samples and recovered struvite samples from wastewater treatment plants. Therefore, the proposed procedure can be an alternative method for regulatory purposes.

10.1016/j.chroma.2017.07.053https://pubmed.ncbi.nlm.nih.gov/28754248