- -

Analysis of Pesticides by Flow Injection Coupled with Chemiluminescent Detection: A Review

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Analysis of Pesticides by Flow Injection Coupled with Chemiluminescent Detection: A Review

Mostrar el registro sencillo del ítem

Ficheros en el ítem

dc.contributor.author López Paz, José Luis es_ES
dc.contributor.author Catalá Icardo, Mónica es_ES
dc.date.accessioned 2013-11-19T11:02:51Z
dc.date.issued 2011
dc.identifier.issn 0003-2719
dc.identifier.uri http://hdl.handle.net/10251/33727
dc.description "This is an Author's Accepted Manuscript of an article published in [include the complete citation information for the final version of the article as published in the Analytical Letters, published online: 18 Feb 2011 [copyright Taylor & Francis], available online at: http://dx.doi.org/10.1080/00032719.2010.500788."
dc.description.abstract The analyses of pesticides carried out by coupling flow injection analysis with chemiluminescence (CL) detection during the last ten years are reported in this review. The review is divided into three sections devoted to the different families of pesticides, namely, organophosphorus, carbamates (together with dithiocarbamates), and other pesticides from the remaining groups. Relevant analytical data such as limits of detection, dynamic ranges, recoveries, and sample pretreatments are recorded in three tables. Descriptions about the fundamentals of the CL systems used, and new promising approaches such as photoinduced chemiluminescence (PICL), multicommutation, and molecular connectivity are also included. es_ES
dc.language Inglés es_ES
dc.publisher Taylor & Francis: STM, Behavioural Science and Public Health Titles es_ES
dc.relation.ispartof Analytical Letters es_ES
dc.rights Reserva de todos los derechos es_ES
dc.subject Chemiluminescence es_ES
dc.subject Environmental analysis es_ES
dc.subject Flow injection analysis es_ES
dc.subject Pesticides es_ES
dc.subject Review es_ES
dc.subject.classification QUIMICA ANALITICA es_ES
dc.title Analysis of Pesticides by Flow Injection Coupled with Chemiluminescent Detection: A Review es_ES
dc.type Artículo es_ES
dc.embargo.lift 10000-01-01
dc.embargo.terms forever es_ES
dc.identifier.doi 10.1080/00032719.2010.500788
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Departamento de Química - Departament de Química es_ES
dc.contributor.affiliation Universitat Politècnica de València. Instituto de Investigación para la Gestión Integral de Zonas Costeras - Institut d'Investigació per a la Gestió Integral de Zones Costaneres es_ES
dc.description.bibliographicCitation López Paz, JL.; Catalá Icardo, M. (2011). Analysis of Pesticides by Flow Injection Coupled with Chemiluminescent Detection: A Review. Analytical Letters. 44:146-175. doi:10.1080/00032719.2010.500788 es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion http://www.tandfonline.com/doi/pdf/10.1080/00032719.2010.500788 es_ES
dc.description.upvformatpinicio 146 es_ES
dc.description.upvformatpfin 175 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 44 es_ES
dc.relation.senia 198790
dc.description.references Adcock, J. L., Barnett, N. W., Gerardi, R. D., Lenehan, C. E., & Lewis, S. W. (2004). Determination of glyphosate mono-isopropylamine salt in process samples using flow injection analysis with tris(2,2′-bipyridyl)ruthenium(II) chemiluminescence detection. Talanta, 64(2), 534-537. doi:10.1016/j.talanta.2004.03.024 es_ES
dc.description.references Albert-García, J. R., & Calatayud, J. M. (2008). Determination of the herbicide benfuresate by its photo-induced chemiluminescence using flow multicommutation methodology. Talanta, 75(3), 717-724. doi:10.1016/j.talanta.2007.12.003 es_ES
dc.description.references ALBERTGARCIA, J., ICARDO, M., & CALATAYUD, J. (2006). Analytical strategy photodegradation/chemiluminescence/continuous-flow multicommutation methodology for the determination of the herbicide Propanil. Talanta, 69(3), 608-614. doi:10.1016/j.talanta.2005.10.044 es_ES
dc.description.references Ferreira, A. S. A., Albert-García, J. R., & Calatayud, J. M. (2007). Chemiluminometric photo-induced determination of Strychnine in a Multicommutation flow assembly. Talanta, 72(3), 1223-1229. doi:10.1016/j.talanta.2006.12.038 es_ES
dc.description.references Amorim, C. M. P. G., Albert-García, J. R., Montenegro, M. C. B. S., Araújo, A. N., & Calatayud, J. M. (2007). Photo-induced chemiluminometric determination of Karbutilate in a continuous-flow Multicommutation assembly. Journal of Pharmaceutical and Biomedical Analysis, 43(2), 421-427. doi:10.1016/j.jpba.2006.07.006 es_ES
dc.description.references Anthemidis, A. N., & Miró, M. (2009). Recent Developments in Flow Injection/Sequential Injection Liquid-Liquid Extraction for Atomic Spectrometric Determination of Metals and Metalloids. Applied Spectroscopy Reviews, 44(2), 140-167. doi:10.1080/05704920802352598 es_ES
dc.description.references Baeyens, W. R. ., Schulman, S. ., Calokerinos, A. ., Zhao, Y., Garcı́a Campaña, A. M., Nakashima, K., & De Keukeleire, D. (1998). Chemiluminescence-based detection: principles and analytical applications in flowing streams and in immunoassays. Journal of Pharmaceutical and Biomedical Analysis, 17(6-7), 941-953. doi:10.1016/s0731-7085(98)00062-4 es_ES
dc.description.references LI, B., HE, Y., & XU, C. (2007). Simultaneous determination of three organophosphorus pesticides residues in vegetables using continuous-flow chemiluminescence with artificial neural network calibration. Talanta, 72(1), 223-230. doi:10.1016/j.talanta.2006.10.023 es_ES
dc.description.references Beale, D. J., Porter, N. A., & Roddick, F. A. (2009). A fast screening method for the presence of atrazine and other triazines in water using flow injection with chemiluminescent detection. Talanta, 78(2), 342-347. doi:10.1016/j.talanta.2008.11.033 es_ES
dc.description.references Blasco, A. J., González Crevillén, A., González, M. C., & Escarpa, A. (2007). Direct Electrochemical Sensing and Detection of Natural Antioxidants and Antioxidant Capacity in Vitro Systems. Electroanalysis, 19(22), 2275-2286. doi:10.1002/elan.200704004 es_ES
dc.description.references Botchkareva, A. E., Fini, F., Eremin, S., Mercader, J. V., Montoya, A., & Girotti, S. (2002). Development of a heterogeneous chemiluminescent flow immunoassay for DDT and related compounds. Analytica Chimica Acta, 453(1), 43-52. doi:10.1016/s0003-2670(01)01481-7 es_ES
dc.description.references Catalá Icardo, M., Garcı́a Mateo, J. V., & Martı́nez Calatayud, J. (2002). Multicommutation as a powerful new analytical tool. TrAC Trends in Analytical Chemistry, 21(5), 366-378. doi:10.1016/s0165-9936(02)00505-8 es_ES
dc.description.references Icardo, M. C., & Calatayud, J. M. (2008). Photo-Induced Luminescence. Critical Reviews in Analytical Chemistry, 38(2), 118-130. doi:10.1080/10408340802039609 es_ES
dc.description.references Chivulescu, A., Catalá-Icardo, M., Garcı́a Mateo, J. ., & Martı́nez Calatayud, J. (2004). New flow-multicommutation method for the photo-chemiluminometric determination of the carbamate pesticide asulam. Analytica Chimica Acta, 519(1), 113-120. doi:10.1016/j.aca.2004.05.046 es_ES
dc.description.references CIUMASU, I., KRAMER, P., WEBER, C., KOLB, G., TIEMANN, D., WINDISCH, S., … KETTRUP, A. (2005). A new, versatile field immunosensor for environmental pollutantsDevelopment and proof of principle with TNT, diuron, and atrazine. Biosensors and Bioelectronics, 21(2), 354-364. doi:10.1016/j.bios.2004.10.027 es_ES
dc.description.references CZESCIK, A., MALO, D., DUART, M., ZAMORA, L., FOS, G., & CALATAYUD, J. (2007). Photo-induced chemiluminescence-based determination of diphenamid by using a multicommuted flow system. Talanta, 73(4), 718-725. doi:10.1016/j.talanta.2007.04.044 es_ES
dc.description.references Danet, A. F., Badea, M., Marty, J.-L., & Aboul-Enein, H. Y. (2000). Flow analysis for determination of paraoxon with use of immobilized acetylcholinesterase reactor and new type of chemiluminescent reaction. Biopolymers, 57(1), 37-42. doi:10.1002/(sici)1097-0282(2000)57:1<37::aid-bip6>3.0.co;2-x es_ES
dc.description.references Du, J., Liu, X., & Lu, J. (2003). Determination of Monocrotophos Pesticide by Flow Injection Chemiluminescence Method Using Luminol-Hydrogen Peroxide System. Analytical Letters, 36(5), 1029-1038. doi:10.1081/al-120019260 es_ES
dc.description.references Duˇnec, A. F., Cheregi, M., Calatayud, J. M., Mateo, J. V. G., & Enein, H. Y. A. (2003). Flow Injection Methods of Analysis for Waters. II. Organic Pollutants. Critical Reviews in Analytical Chemistry, 33(1), 57-68. doi:10.1080/713609154 es_ES
dc.description.references Fritsche, U. (1980). Chemiluminescence method for the determination of nanogram amounts of highly toxic alkylphosphates. Analytica Chimica Acta, 118(1), 179-183. doi:10.1016/s0003-2670(01)93732-8 es_ES
dc.description.references Climent, T. G., Albert‐García, J. R., & Martínez Calatayud, J. (2007). Photo‐Induced Chemiluminometric Determination of Acrolein in a Multicommutation Flow Assembly. Analytical Letters, 40(4), 629-643. doi:10.1080/00032710600966085 es_ES
dc.description.references Gámiz-Gracia, L., García-Campaña, A. M., Huertas-Pérez, J. F., & Lara, F. J. (2009). Chemiluminescence detection in liquid chromatography: Applications to clinical, pharmaceutical, environmental and food analysis—A review. Analytica Chimica Acta, 640(1-2), 7-28. doi:10.1016/j.aca.2009.03.017 es_ES
dc.description.references Gámiz-Gracia, L., Garcı́a-Campaña, A. M., Soto-Chinchilla, J. J., Huertas-Pérez, J. F., & González-Casado, A. (2005). Analysis of pesticides by chemiluminescence detection in the liquid phase. TrAC Trends in Analytical Chemistry, 24(11), 927-942. doi:10.1016/j.trac.2005.05.009 es_ES
dc.description.references Gonzalez, J. M., Greenway, G. M., McCreedy, T., & Qijun, S. (2000). Determination of morpholine fungicides using the tris(2,2′-bipyridine) ruthenium(ii) chemiluminescence reaction. The Analyst, 125(4), 765-769. doi:10.1039/a909529b es_ES
dc.description.references González-San Miguel, H. M., Fernández, M., Estela, J. M., & Cerdà, V. (2009). Contribution of multi-commuted flow analysis combined with monolithic columns to low-pressure, high-performance chromatography. TrAC Trends in Analytical Chemistry, 28(3), 336-346. doi:10.1016/j.trac.2008.11.014 es_ES
dc.description.references Hamilton, D. J., Ambrus, Á., Dieterle, R. M., Felsot, A. S., Harris, C. A., Holland, P. T., … Wong, S.-S. (2003). Regulatory limits for pesticide residues in water (IUPAC Technical Report). Pure and Applied Chemistry, 75(8), 1123-1155. doi:10.1351/pac200375081123 es_ES
dc.description.references HUANG, X., & REN, J. (2006). Chemiluminescence detection for capillary electrophoresis and microchip capillary electrophoresis. TrAC Trends in Analytical Chemistry, 25(2), 155-166. doi:10.1016/j.trac.2005.07.001 es_ES
dc.description.references HUERTASPEREZ, J., GAMIZGRACIA, L., GARCIACAMPANA, A., GONZALEZCASADO, A., & MARTINEZVIDAL, J. (2005). Chemiluminescence determination of carbofuran at trace levels in lettuce and waters by flow-injection analysis. Talanta, 65(4), 980-985. doi:10.1016/j.talanta.2004.08.058 es_ES
dc.description.references Huertas-Pérez, J. F., Garcı́a-Campaña, A. M., Gámiz-Gracia, L., González-Casado, A., & Iruela, M. del O. (2004). Sensitive determination of carbaryl in vegetal food and natural waters by flow-injection analysis based on the luminol chemiluminescence reaction. Analytica Chimica Acta, 524(1-2), 161-166. doi:10.1016/j.aca.2004.05.049 es_ES
dc.description.references Jain, S. (2004). A chemiluminescence flow immunosensor based on a porous monolithic metacrylate and polyethylene composite disc modified with Protein G. Biosensors and Bioelectronics, 19(8), 795-803. doi:10.1016/j.bios.2003.08.008 es_ES
dc.description.references Fähnrich, K. (2001). Recent applications of electrogenerated chemiluminescence in chemical analysis. Talanta, 54(4), 531-559. doi:10.1016/s0039-9140(01)00312-5 es_ES
dc.description.references Kubo, H., Tsuda, Y., Yoshimura, Y., Homma, H., & Nakazawa, H. (2003). Chemiluminescence of dithiocarbamate fungicides based on the luminol reaction. Analytica Chimica Acta, 494(1-2), 49-53. doi:10.1016/s0003-2670(03)00894-8 es_ES
dc.description.references Lagalante, A. F., & Greenbacker, P. W. (2007). Flow injection analysis of imidacloprid in natural waters and agricultural matrixes by photochemical dissociation, chemical reduction, and nitric oxide chemiluminescence detection. Analytica Chimica Acta, 590(2), 151-158. doi:10.1016/j.aca.2007.03.027 es_ES
dc.description.references Lahuerta Zamora, L., Fuster Mestre, Y., Duart, M. J., Antón Fos, G. M., García Doménech, R., Gálvez Álvarez, J., & Martínez Calatayud, J. (2001). Prediction of the Chemiluminescent Behavior of Pharmaceuticals and Pesticides. Analytical Chemistry, 73(17), 4301-4306. doi:10.1021/ac010133i es_ES
dc.description.references LI, X. (2006). Solid Phase Extraction Chemiluminescence Determination of Methamidaphos on Vegetables. Chemical Research in Chinese Universities, 22(1), 21-24. doi:10.1016/s1005-9040(06)60037-8 es_ES
dc.description.references Liao, S., & Xie, Z. (2006). Flow‐Injection Chemiluminescence Study of Luminol–Hydrogen Peroxide–Carbendazim System. Spectroscopy Letters, 39(5), 473-485. doi:10.1080/00387010600820239 es_ES
dc.description.references Liu, H., Hao, Y., Ren, J., He, P., & Fang, Y. (2007). Determination of tsumacide residues in vegetable samples using a flow-injection chemiluminescence method. Luminescence, 22(4), 302-308. doi:10.1002/bio.963 es_ES
dc.description.references Liu, X., Du, J., & Lu, J. (2003). Determination of parathion residues in rice samples using a ?ow injection chemiluminescence method. Luminescence, 18(5), 245-248. doi:10.1002/bio.722 es_ES
dc.description.references LI, Z.-Q., WU, F.-J., GONG, Y., HU, C.-W., ZHANG, Y.-H., & GAN, M.-Y. (2007). Synthesis, Characterization and Activity againstStaphylococcus of Metal(II)-Gatifloxacin Complexes. Chinese Journal of Chemistry, 25(12), 1809-1814. doi:10.1002/cjoc.200790334 es_ES
dc.description.references Liu, X., Li, A., Wu, C., & Lu, J. (2007). Flow Injection Chemiluminescence Determination of Fenitrothion Pesticide Using Luminol‐Hydrogen Peroxide System. Analytical Letters, 40(14), 2737-2746. doi:10.1080/00032710701588614 es_ES
dc.description.references MALO, D., & CALATAYUD, J. (2008). Photo-induced chemiluminescence determination of the pesticide Buminafos by a Multicommutation flow-analysis assembly. Talanta, 77(2), 561-565. doi:10.1016/j.talanta.2008.04.030 es_ES
dc.description.references Paz, J. L. L., & Catalá-Icardo, M. (2008). Flow injection-photoinduced-chemiluminescence determination of ziram and zineb. Analytica Chimica Acta, 625(2), 173-179. doi:10.1016/j.aca.2008.07.027 es_ES
dc.description.references López-Paz, J. L., Catalá-Icardo, M., & Antón-Garrido, B. (2009). Determination of diquat by flow injection–chemiluminescence. Analytical and Bioanalytical Chemistry, 394(4), 1073-1079. doi:10.1007/s00216-009-2609-z es_ES
dc.description.references Lü, W., Chen, Y., Zhu, J., & Chen, X. (2009). The combination of flow injection with electrophoresis using capillaries and chips. ELECTROPHORESIS, 30(1), 83-91. doi:10.1002/elps.200800402 es_ES
dc.description.references Marquette, C. (2000). Regenerable immunobiosensor for the chemiluminescent flow injection analysis of the herbicide 2,4-D. Talanta, 51(2), 395-401. doi:10.1016/s0039-9140(99)00298-2 es_ES
dc.description.references Mervartová, K., Calatayud, J. M., & Icardo, M. C. (2005). A Fully Automated Assembly Using Solenoid Valves for the Photodegradation and Chemiluminometric Determination of the Herbicide Chlorsulfuron. Analytical Letters, 38(1), 179-194. doi:10.1081/al-200043477 es_ES
dc.description.references Mir�, M., & Frenzel, W. (2004). What Flow Injection has to Offer in the Environmental Analytical Field. Microchimica Acta, 148(1-2). doi:10.1007/s00604-004-0246-y es_ES
dc.description.references Pulgarín, J. A. M., Molina, A. A., & López, P. F. (2006). Automatic chemiluminescence-based determination of carbaryl in various types of matrices. Talanta, 68(3), 586-593. doi:10.1016/j.talanta.2005.04.051 es_ES
dc.description.references Murillo Pulgarín, J. A., García Bermejo, L. F., & Rubio Aranda, J. A. (2005). Development of Time-Resolved Chemiluminescence for the Determination of Antu in River Water, Wheat, Barley, and Oat Grain Samples. Journal of Agricultural and Food Chemistry, 53(17), 6609-6615. doi:10.1021/jf050876v es_ES
dc.description.references Díaz, A. N., Bracho, V., Algarra, M., & García Sánchez, F. (2008). Chemiluminometric Determination of the Pesticide Pirimicarb by a Flow Injection Analysis Assembly. Analytical Letters, 41(17), 3210-3220. doi:10.1080/00032710802463014 es_ES
dc.description.references Palomeque, M., Garcı́a Bautista, J. ., Catalá Icardo, M., Garcı́a Mateo, J. ., & Martı́nez Calatayud, J. (2004). Photochemical-chemiluminometric determination of aldicarb in a fully automated multicommutation based flow-assembly. Analytica Chimica Acta, 512(1), 149-156. doi:10.1016/j.aca.2004.02.031 es_ES
dc.description.references PAWLICOVÁ, Z., ALBERT-GARCÍA, J. R., SAHUQUILLO, I., GARCÍA MATEO, J. V., CATALÁ ICARDO, M., & MARTÍNEZ CALATAYUD, J. (2006). Chemiluminescent Determination of the Pesticide Bromoxynil by On-line Photodegradation in a Flow-Injection System. Analytical Sciences, 22(1), 29-34. doi:10.2116/analsci.22.29 es_ES
dc.description.references Pérez-Ruiz, T., Martínez-Lozano, C., & García, M. D. (2007). Determination of propoxur in environmental samples by automated solid-phase extraction followed by flow-injection analysis with tris(2,2′-bipyridyl)ruthenium(II) chemiluminescence detection. Analytica Chimica Acta, 584(2), 275-280. doi:10.1016/j.aca.2006.11.062 es_ES
dc.description.references Pérez-Ruiz, T., Martı́nez-Lozano, C., Tomás, V., & Martı́n, J. (2001). Flow-injection fluorimetric method for the determination of dimethylarsinic acid using on-line photo-oxidation. Analytica Chimica Acta, 447(1-2), 229-235. doi:10.1016/s0003-2670(01)01299-5 es_ES
dc.description.references Pérez-Ruiz, T., Martínez-Lozano, C., Tomás, V., & Martín, J. (2002). Chemiluminescence determination of carbofuran and promecarb by flow injection analysis using two photochemical reactions. The Analyst, 127(11), 1526-1530. doi:10.1039/b207460p es_ES
dc.description.references Pérez-Ruiz, T., Lozano, C. M., Tomás, V., & Martı́n, J. (2003). Flow injection chemiluminescence determination of carbaryl using photolytic decomposition and photogenerated tris (2,2′-bipyridyl)ruthenium(III). Analytica Chimica Acta, 476(1), 141-148. doi:10.1016/s0003-2670(02)01355-7 es_ES
dc.description.references U.S. Environmental Protection Agency . 2001 . Pesticide industry sales and usage . http://www.epa.gov/oppbead1/pestsales es_ES
dc.description.references Picó, Y., Fernández, M., Ruiz, M. J., & Font, G. (2007). Current trends in solid-phase-based extraction techniques for the determination of pesticides in food and environment. Journal of Biochemical and Biophysical Methods, 70(2), 117-131. doi:10.1016/j.jbbm.2006.10.010 es_ES
dc.description.references Neves, A. I. P., Albert-García, J. R., & Calatayud, J. M. (2007). Chemiluminometric determination of the pesticide 3-indolyl acetic acid by a flow injection analysis assembly. Talanta, 71(1), 318-323. doi:10.1016/j.talanta.2006.04.003 es_ES
dc.description.references Reis, B. F., Giné, M. F., Zagatto, E. A. G., Lima, J. L. F. C., & Lapa, R. A. (1994). Multicommutation in flow analysis. Part 1. Binary sampling: concepts, instrumentation and spectrophotometric determination of iron in plant digests. Analytica Chimica Acta, 293(1-2), 129-138. doi:10.1016/0003-2670(94)00090-5 es_ES
dc.description.references RODA, A. (2004). Biotechnological applications of bioluminescence and chemiluminescence. Trends in Biotechnology, 22(6), 295-303. doi:10.1016/j.tibtech.2004.03.011 es_ES
dc.description.references Sá, F., López Malo, D., & Martínez Calatayud, J. (2007). Determination of the Herbicide Fluometuron by Photo‐induced Chemiluminescence in a Continuous‐flow Multicommutation Assembly. Analytical Letters, 40(15), 2872-2885. doi:10.1080/00032710701603900 es_ES
dc.description.references RICART, I., ANTONFOS, G., DUART, M., MATEO, J., ZAMORA, L., & CALATAYUD, J. (2007). Theoretical prediction of the photoinduced chemiluminescence of pesticides. Talanta, 72(2), 378-386. doi:10.1016/j.talanta.2006.10.048 es_ES
dc.description.references Santana Rodríguez, J. J., Halko, R., Betancort Rodríguez, J. R., & Aaron, J. J. (2006). Environmental analysis based on luminescence in organized supramolecular systems. Analytical and Bioanalytical Chemistry, 385(3), 525-545. doi:10.1007/s00216-006-0342-4 es_ES
dc.description.references Song, Z., Hou, S., & Zhang, N. (2002). A New Green Analytical Procedure for Monitoring Sub-nanogram Amounts of Chlorpyrifos on Fruits Using Flow Injection Chemiluminescence with Immobilized Reagents. Journal of Agricultural and Food Chemistry, 50(16), 4468-4474. doi:10.1021/jf025589v es_ES
dc.description.references Soto-Chinchilla, J. J., Garcı́a-Campaña, A. M., Gámiz-Gracia, L., Cuadros-Rodrı́guez, L., & Vidal, J. L. M. (2004). Determination of a N-methylcarbamate pesticide in environmental samples based on the application of photodecomposition and peroxyoxalate chemiluminescent detection. Analytica Chimica Acta, 524(1-2), 235-240. doi:10.1016/j.aca.2004.05.084 es_ES
dc.description.references Surugiu, I., Svitel, J., Ye, L., Haupt, K., & Danielsson, B. (2001). Development of a Flow Injection Capillary Chemiluminescent ELISA Using an Imprinted Polymer Instead of the Antibody. Analytical Chemistry, 73(17), 4388-4392. doi:10.1021/ac0101757 es_ES
dc.description.references Tsogas, G. Z., Giokas, D. L., Nikolakopoulos, P. G., Vlessidis, A. G., & Evmiridis, N. P. (2006). Determination of the pesticide carbaryl and its photodegradation kinetics in natural waters by flow injection–direct chemiluminescence detection. Analytica Chimica Acta, 573-574, 354-359. doi:10.1016/j.aca.2005.11.058 es_ES
dc.description.references TUDORACHE, M., TENCALIEC, A., & BALA, C. (2008). Magnetic beads-based immunoassay as a sensitive alternative for atrazine analysis. Talanta, 77(2), 839-843. doi:10.1016/j.talanta.2008.07.040 es_ES
dc.description.references Tzanavaras, P. D., & Themelis, D. G. (2007). Review of recent applications of flow injection spectrophotometry to pharmaceutical analysis. Analytica Chimica Acta, 588(1), 1-9. doi:10.1016/j.aca.2007.01.060 es_ES
dc.description.references Wang, J. (2001). Development of a luminol-based chemiluminescence flow-injection method for the determination of dichlorvos pesticide. Talanta, 54(6), 1185-1193. doi:10.1016/s0039-9140(01)00388-5 es_ES
dc.description.references WANG, X., LIN, J., LIU, M., & CHENG, X. (2009). Flow-based luminescence-sensing methods for environmental water analysis. TrAC Trends in Analytical Chemistry, 28(1), 75-87. doi:10.1016/j.trac.2008.10.005 es_ES
dc.description.references Waseem, A., Yaqoob, M., Nabi, A., & Siddiqui, M. A. (2007). Determination of carbaryl by flow injection with luminol chemiluminescence inhibition detection. International Journal of Environmental Analytical Chemistry, 87(12), 825-832. doi:10.1080/03067310701380021 es_ES
dc.description.references Waseem, A., Yaqoob, M., & Nabi, A. (2007). Flow-injection determination of carbaryl and carbofuran based on KMnO4–Na2SO3 chemiluminescence detection. Luminescence, 22(4), 349-354. doi:10.1002/bio.970 es_ES
dc.description.references WASEEM, A., YAQOOB, M., & NABI, A. (2008). Photodegradation and Flow-Injection Determination of Simetryn Herbicide by Luminol Chemiluminescence Detection. Analytical Sciences, 24(8), 979-983. doi:10.2116/analsci.24.979 es_ES
dc.description.references WASEEM, A., YAQOOB, M., & NABI, A. (2009). Photodegradation and Flow-Injection Determination of Dithiocarbamate Fungicides in Natural Water with Chemiluminescence Detection. Analytical Sciences, 25(3), 395-400. doi:10.2116/analsci.25.395 es_ES
dc.description.references Waseem, A., Yaqoob, M., & Nabi, A. (2010). Flow-Injection Determination of Benzimidazole Fungicides in Natural Waters with Copper(II)-Hydrogen Peroxide Chemiluminescence. Analytical Letters, 43(4), 603-617. doi:10.1080/00032710903406862 es_ES
dc.description.references Xie, Z., Ouyang, X., Guo, L., Lin, X., & Chen, G. (2005). Determination of carbofuran by flow-injection with chemiluminescent detection. Luminescence, 20(3), 226-230. doi:10.1002/bio.825 es_ES
dc.description.references Xu, W., Sandford, R. C., Worsfold, P. J., Carlton, A., & Hanrahan, G. (2005). Flow Injection Techniques in Aquatic Environmental Analysis: Recent Applications and Technological Advances. Critical Reviews in Analytical Chemistry, 35(3), 237-246. doi:10.1080/10408340500323362 es_ES
dc.description.references Yakovleva, J., Davidsson, R., Lobanova, A., Bengtsson, M., Eremin, S., Laurell, T., & Emnéus, J. (2002). Microfluidic Enzyme Immunoassay Using Silicon Microchip with Immobilized Antibodies and Chemiluminescence Detection. Analytical Chemistry, 74(13), 2994-3004. doi:10.1021/ac015645b es_ES
dc.description.references Zhao, L., Sun, L., & Chu, X. (2009). Chemiluminescence immunoassay. TrAC Trends in Analytical Chemistry, 28(4), 404-415. doi:10.1016/j.trac.2008.12.006 es_ES
dc.description.references Zui, O. V., & Birks, J. W. (2000). Trace Analysis of Phosphorus in Water by Sorption Preconcentration and Luminol Chemiluminescence. Analytical Chemistry, 72(7), 1699-1703. doi:10.1021/ac9909857 es_ES


Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del ítem