Artículo

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

A novel methodology for the determination of iron at the ppb level by spectrophotometric flow injection analysis is described. The method is based on the control of the flow dissolution of the colorimetric reagent 1,10-phenanthroline. This is achieved by means of the minimization of the area of contact between the carrier and the solid reagent, thus allowing the use of the fairly soluble organic compound without affecting the reactor lifetime. The reagent is melted inside an acrylic column (3.0 × 0.5 cm id) in such a way that a hollow space is left in the center after cooling. This new design improves some aspects of the performance of the classical solid-phase reactors as no problems related to the increase in the backpressure of the system are evidenced. Furthermore, the total reagent loading of the column is increased as no inert support is needed. A comparison between the performance of this novel methodology and that of the conventional packed reactor was performed and several advantages were observed: the use of higher flow rates, an increase in the reactor lifetime and a decrease in reagent consumption. A mathematical model to fit the concentration profiles of the dissolved reagent as a function of the residence time of the sample within the column is presented. The application of this strategy to the determination of Fe(II) improves the figures of merit in comparison to those obtained with a single-line homogeneous system: the limit of detection is 2 μg Fe L-1 (3s) and the sensitivity is similar to that of the batch procedure. Results obtained for the determination of iron in natural waters are also presented.

Registro:

Documento: Artículo
Título:Kinetic control of reagent dissolution for the flow injection determination of iron at trace levels
Autor:Bruno, H.A.; Andrade, F.J.; Luna, P.C.; Tudino, M.B.
Filiación:Lab. de Anal. de Trazas - INQUIMAE, Fac. de Ciencias Exactas y Naturales, Ciudad Universitaria, Pab. II, 3er, Piso (1428) Buenos Aires, Argentina
Palabras clave:1,10 phenanthroline; acrylic acid; iron; tartrazine; trace element; water; analytic method; article; chemical reaction kinetics; colorimetry; dissolution; flow injection analysis; mathematical model; packed bed reactor; solid; spectrophotometry; water analysis; Flow Injection Analysis; Iron; Water Pollutants, Chemical
Año:2002
Volumen:127
Número:7
Página de inicio:990
Página de fin:994
DOI: http://dx.doi.org/10.1039/b200548b
Título revista:Analyst
Título revista abreviado:Analyst
ISSN:00032654
CODEN:ANALA
CAS:Iron, 7439-89-6; Water Pollutants, Chemical
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00032654_v127_n7_p990_Bruno

Referencias:

  • Ruzicka, J., Hansen, E., (1988) Flow Injection Analysis, , Wiley, New York, 2nd edn
  • Valcarcel, M., Luque de Castro, M., (1987) Flow-Injection Analysis, , Ellis Horwood Limited, Chichester
  • Martínez Calatayud, J., García Mateo, J., (1993) Trends Anal. Chem., 12, p. 428
  • Luque de Castro, M., (1992) Trends Anal. Chem., 11, p. 148
  • Van Staden, J.F., Kluever, L.G., (1998) Fresenius' J. Anal. Chem., 362, p. 319
  • Fernandez, F.M., Tudino, M.B., Troccoli, O., (1995) An. Asoc. Quim. Argent., 83, p. 191
  • Haj-Hussein, A.T., Christian, G.D., Ruzicka, J., (1986) Anal. Chem., 58, p. 38
  • Almuaibed, A.M., Townshend, A., (1991) Anal. Chim. Acta, 245, p. 115
  • Andrade, F., Tudino, M., Troccoli, O., (1996) Analyst, 121, p. 613
  • Ruzicka, J., Hansen, E., (1988) Anal. Chim. Acta, 214, p. 1
  • Ueno, K., Sagara, F., Katsuya, H., (1992) Anal. Chim. Acta, 261, p. 241
  • Lopez Gomez, A.V., Martínez Calatayud, J., (1998) Analyst, 123, p. 2103
  • Vicente Pereira, A., Fatibello-Filho, O., (1998) Talanta, 47, p. 11
  • Lopez Gomez, A.V., Martínez Calatayud, J., (1998) Analyst, 123, p. 2103
  • Chalk, S., Tyson, J., (1994) Anal Chem., 66, p. 660
  • Andrade, F., Iñón, F., Tudino, M., Troccoli, O., (2000) J. Flow Injection Anal., 17, p. 174
  • Senior, A.T., Glennon, J.D., (1987) Anal. Chim. Acta, 196, p. 333
  • Mortatti, J., Krug, F.J., Pessenda, L.C.R., Zagatto, E.A.G., Storgaard Jorgensen, S., (1982) Analyst, 107, p. 659

Citas:

---------- APA ----------
Bruno, H.A., Andrade, F.J., Luna, P.C. & Tudino, M.B. (2002) . Kinetic control of reagent dissolution for the flow injection determination of iron at trace levels. Analyst, 127(7), 990-994.
http://dx.doi.org/10.1039/b200548b
---------- CHICAGO ----------
Bruno, H.A., Andrade, F.J., Luna, P.C., Tudino, M.B. "Kinetic control of reagent dissolution for the flow injection determination of iron at trace levels" . Analyst 127, no. 7 (2002) : 990-994.
http://dx.doi.org/10.1039/b200548b
---------- MLA ----------
Bruno, H.A., Andrade, F.J., Luna, P.C., Tudino, M.B. "Kinetic control of reagent dissolution for the flow injection determination of iron at trace levels" . Analyst, vol. 127, no. 7, 2002, pp. 990-994.
http://dx.doi.org/10.1039/b200548b
---------- VANCOUVER ----------
Bruno, H.A., Andrade, F.J., Luna, P.C., Tudino, M.B. Kinetic control of reagent dissolution for the flow injection determination of iron at trace levels. Analyst. 2002;127(7):990-994.
http://dx.doi.org/10.1039/b200548b