S. Meseguer-Lloret
Polytechnic University of Valencia
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Publication
Featured researches published by S. Meseguer-Lloret.
Journal of Chromatography A | 2014
Mónica Catalá-Icardo; Luis Lahuerta-Zamora; Sagrario Torres-Cartas; S. Meseguer-Lloret
A new, fast, selective and sensitive method has been developed for the simultaneous determination of nine organothiophosphorus (OTP) pesticides, namely omethoate, dimethoate, disulfoton-sulfoxide, methidathion, phosmet, malathion, diazinon, pirimiphos-methyl and chlorpyrifos. The pesticides were separated on a Kinetex C18 column by gradient elution with acetonitrile:water. A post-column basic hydrolysis of the pesticides and later a chemiluminescence (CL) reaction with cerium (IV) in acid medium was carried out. Hexadecylpyridinium chloride highly enhanced the CL emission. Under optimized conditions, linearity, precision, limits of detection and quantification, and accuracy were determined. Both selectivity and sensitivity were compared with those obtained with UV detection. In combination with SPE, limits of detection in the range 15-80ng/L and 5-30ng/L were obtained when 250mL and 1000mL of solution were treated, respectively. When applied to 250mL of sample the inter-day precision of the method was between 3.5% and 7.3% and the intra-day precision between 2.9% and 6.0%. The method was applied to determine OTP pesticides in spiked water samples from different origins: irrigation, river, sea, ground, spring, mineral and tap waters, being the percentage of recovery of added amounts near 100% form most of the pesticides.
International Journal of Environmental Analytical Chemistry | 2013
Carmen Gómez-Benito; S. Meseguer-Lloret; Sagrario Torres-Cartas
In this work, a sensitive flow injection chemiluminescence (FI-CL) method for the determination of nematicide Fenamiphos in a rapid and simple way is proposed. Fenamiphos is first photodegraded in basic medium. These photofragments react with Ce(IV) providing the chemiluminescence signal. To the authors’ knowledge, no chemiluminescence method has been described in the literature for the determination of the nematicide Fenamiphos. All physical and chemical parameters in the flow injection chemiluminescence system were optimized in order to obtain the best sensitivity, selectivity and sample throughput. Before the injection of the sample in the FI-CL system, a preconcentration step with solid phase extraction C18 cartridges was performed. By applying solid phase extraction (SPE) to 250 mL of standard (final volume 10 mL), the linear dynamic range was between 3.4 and 60 µg L−1, and the detection limit was 1 µg L−1. When SPE was applied to 500 mL of standard (final volume 10 mL), the detection limit was 0.5 µg L−1. These detection limits are below the emission limit value established by the Spanish Regulations of the Hydraulic Public Domain for pesticides (50 µg L−1) and of the same order as the limit established for total pesticides (0.5 µg L−1) at European Directive on the quality of water for human consumption. The sample throughput was 126 hour−1. Intraday and interday coefficients of variation were below 10% in all cases. No interference was registered in presence of usual concentrations of anions, cations and other organophosphorus pesticides. The method was successfully applied to the analysis of environmental water samples, obtaining recoveries between 96 and 107.5%.
Applied Spectroscopy | 2016
S. Meseguer-Lloret; Sagrario Torres-Cartas; Mónica Catalá-Icardo; Carmen Gómez-Benito
Two new chemiluminescence (CL) methods are described for the determination of the herbicide 4-(4-chloro-o-tolyloxy) butyric acid (MCPB). First, a flow injection chemiluminescence (FI-CL) method is proposed. In this method, MCPB is photodegraded with an ultraviolet (UV) lamp and the photoproducts formed provide a great CL signal when they react with ferricyanide in basic medium. Second, a high-performance liquid chromatography chemiluminescence (HPLC-CL) method is proposed. In this method, before the photodegradation and CL reaction, the MCPB and other phenoxyacid herbicides are separated in a C18 column. The experimental conditions for the FI-CL and HPLC-CL methods are optimized. Both methods present good sensitivity, the detection limits being 0.12 µg L−1 and 0.1 µg L−1 (for FI-CL and HPLC-CL, respectively) when solid phase extraction (SPE) is applied. Intra- and interday relative standard deviations are below 9.9%. The methods have been satisfactorily applied to the analysis of natural water samples. FI-CL method can be employed for the determination of MCPB in simple water samples and for the screening of complex water samples in a fast, economic, and simple way. The HPLC-CL method is more selective, and allows samples that have not been resolved with the FI-CL method to be solved.
Talanta | 2018
Mónica Catalá-Icardo; Sagrario Torres-Cartas; S. Meseguer-Lloret; Ernesto F. Simó-Alfonso; José Manuel Herrero-Martínez
In this study, porous polymer monoliths were in situ synthesized in fluoropolymers tubing to prepare microbore HPLC columns. To ensure the formation of robust homogeneous polymer monoliths in these housing supports, the inner surface of fluoropolymer tubing was modified in a two-step photografting process. Raman spectroscopy and scanning electron microscopy (SEM) confirmed the successful modification of the inner poly(ethylene-co-tetrafluoroethylene) (ETFE) wall and the subsequent attachment of a monolith onto the wall. Poly(glycidyl methacrylate-co-divinylbenzene), poly(butyl methacrylate-co-ethyleneglycol dimethacrylate) and poly(styrene-co-divinylbenzene) monoliths were in situ synthesized by thermal polymerization within the confines of surface vinylized ETFE tubes. The resulting monoliths exhibited good permeability and mechanical stability (pressure resistance up to 9 MPa). The chromatographic performance of these different monolithic columns was evaluated via the separation of alkyl benzenes and proteins in a conventional HPLC system.
Talanta | 2018
Isabel Ten-Doménech; H. Martínez-Pérez-Cejuela; Ernesto F. Simó-Alfonso; Sagrario Torres-Cartas; S. Meseguer-Lloret; José Manuel Herrero-Martínez
A polymeric material modified with magnetic nanoparticles (MNPs) has been synthesized and evaluated as sorbent both for solid-phase extraction (SPE) and dispersive magnetic solid-phase extraction (MSPE) of phospholipids (PLs) in human milk samples. The synthesized sorbent was characterized by scanning electron microscopy and its iron content was also determined. Several experimental variables that affect the extraction performance (e.g. loading solvent, breakthrough volume and loading capacity) were investigated and a comparison between conventional SPE and MSPE modalities was done. The proposed method was satisfactorily applied to the analysis of PLs in human milk fat extracts in different lactation stages and the extracted PLs were determined by means of hydrophilic interaction liquid chromatography using evaporative light scattering detection.
Analytical and Bioanalytical Chemistry | 2010
S. Meseguer-Lloret; Sagrario Torres-Cartas; M. C. Gómez-Benito
Analytical and Bioanalytical Chemistry | 2012
Sagrario Torres-Cartas; Carmen Gómez-Benito; S. Meseguer-Lloret
Analytica Chimica Acta | 2017
Mónica Catalá-Icardo; Sagrario Torres-Cartas; S. Meseguer-Lloret; Carmen Gómez-Benito; E. Carrasco-Correa; Ernesto F. Simó-Alfonso; Guillermo Ramis-Ramos; José Manuel Herrero-Martínez
Analytical and Bioanalytical Chemistry | 2017
S. Meseguer-Lloret; Sagrario Torres-Cartas; Mónica Catalá-Icardo; Ernesto F. Simó-Alfonso; José Manuel Herrero-Martínez
Photochemical and Photobiological Sciences | 2016
Mónica Catalá-Icardo; S. Meseguer-Lloret; Sagrario Torres-Cartas