Artículo

La versión final de este artículo es de uso interno. El editor solo permite incluir en el repositorio el artículo en su versión post-print. Por favor, si usted la posee enviela a
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

The dissolution of nickel ferrite in oxalic acid and in ferrous oxalate- oxalic acid aqueous solution was studied. Nickel ferrite was synthesized by thermal decomposition of a mixed tartrate; the particles were shown to be coated with a thin ferric oxide layer. Dissolution takes place in two stages, the first one corresponding to the dissolution of the ferric oxide outer layer and the second one being the dissolution of Ni1.06Fe1.96O4. The kinetics of dissolution during this first stage is typical of ferric oxides: in oxalic acid, both a ligand-assisted and a redox mechanism operates, whereas in the presence of ferrous ions, redox catalysis leads to a faster dissolution. The rate dependence on both oxalic acid and on ferrous ion is described by the Langmuir-Hinshelwood equation; the best fitting corresponds to K(1/ads) = 25.6 mol-1 dm-3 and k(1/max) = 9.17 x 10-7 mol m-2 s-1 and K(2/ads) = 37.1 x 103 mol-1 dm-3 and k(1/max) = 62.3 x 10-7 mol m-2 s-1, respectively. In the second stage, Langmuir- Hinshelwood kinetics also describes the dissolution of iron and nickel from nickel ferrite, with K(1/ads) = 20.8 mol-1 dm3 and K(2/ads) = 1.16 x 105 mol-1 dm3. For iron, k(1/max) = 1.02 x 10-7 mol of Fe m-2 s2+-1 and k(2/max) = 2.38 x 10-7 mol of Fe m-2 s-1; for nickel, the rate constants k(1/max) and k(2/max) are 2.4 and 1.79 times smaller, respectively. The factor 1.79 agrees nicely with the stoichiometric ratio, whereas the factor 2.4 implies the accumulation of some nickel in the residual particles. The rate of nickel dissolution in oxalic acid is higher than that in bunsenite by a factor of 8, whereas hematite is more reactive by a factor of 9 (in the absence of Fe(II)) and 27 (in the presence of Fe (II)). It may be concluded that oxalic acid operates to dissolve iron, and the ensuing disruption of the solid framework accelerates the release of nickel. (C) 2000 Academic Press.

Registro:

Documento: Artículo
Título:Dissolution of nickel ferrite in aqueous solutions containing oxalic acid and ferrous salts
Autor:Figueroa, C.A.; Sileo, E.E.; Morando, P.J.; Blesa, M.A.
Filiación:Unidad de Actividad Química, Comn. Nac. de Ener. Atómica, Avenida del Libertador 8250, 1429 Buenos Aires, Argentina
INQUIMAE, Fac. de Ciencias Exactas Y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina
Inst. de Tecnología J. Sabato, Univ. Nac. de Gen. San Martín, San Martín, Argentina
Escuela de Posgrado, Univ. Nac. de Gen. San Martín, San Martín, Argentina
Palabras clave:Dissolution; Ferrous oxalate; Mixed oxides; Nickel ferrite; Oxalic acid; Surface complexation; ferric oxide; ferrous ion; iron; nickel; oxalic acid; tartaric acid; aqueous solution; article; catalysis; dissolution; oxidation reduction reaction; priority journal; X ray diffraction
Año:2000
Volumen:225
Número:2
Página de inicio:403
Página de fin:410
DOI: http://dx.doi.org/10.1006/jcis.2000.6734
Título revista:Journal of Colloid and Interface Science
Título revista abreviado:J. Colloid Interface Sci.
ISSN:00219797
CODEN:JCISA
CAS:ferric oxide, 1309-37-1, 56449-54-8; ferrous ion, 15438-31-0; iron, 14093-02-8, 53858-86-9, 7439-89-6; nickel, 7440-02-0; oxalic acid, 144-62-7; tartaric acid, 133-37-9, 3715-17-1, 526-83-0, 526-94-3, 87-69-4
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00219797_v225_n2_p403_Figueroa

Referencias:

  • Blesa, M.A., Morando, P.J., Regazzoni, A.E., (1994) Chemical Dissolution of Metal Oxides, , Boca Raton: CRC Press
  • Blesa, M.C., Amador, U., Morán, E., Menéndez, N., Tornero, J.D., Rodríguez-Carvajal, J., (1993) Solid State Ionics, 6365, p. 429
  • Gainsford, A.R., Sisley, M.J., Swaddle, T.W., Bayliss, P., (1975) Can. J. Chem., 53, p. 12
  • Regazzoni, A.E., Matijevic, E., (1982) J. Colloid Interface Sci., 90, p. 100
  • Huang, C.-L., Matijevic, E., (1996) Solid State Ionics, 84, p. 249
  • Marcilly, C., Courty, P., Delmon, B., (1970) J. Am. Ceram. Soc., 53, p. 56
  • Jacobo, S., Domingo Pascual, C., Rodríguez Clemente, R., Blesa, M.A., (1997) J. Mater. Sci., 32, p. 1025
  • Blesa, M.A., Marinovich, H.A., Baumgartner, E.C., Maroto, A.J.G., (1987) Inorg. Chem., 26, p. 3713
  • Zinder, B., Furrer, G., Stumm, W., (1986) Geochim. Cosmochim. Acta, 50, p. 1861
  • Ludwing, C., Devidal, J.-L., Casey, W.H., (1996) Geochim. Cosmochim. Acta, 60, p. 213
  • García Rodenas, L.A., Iglesias, A.M., Bruyere, V.I.E., Morando, P.J., Blesa, M.A., (1996) 70th Colloid and Surface Science Symposium, Potsdam, NY, 1996, , Washington: American Chemical Society
  • Blesa, M.A., Weisz, A.D., Morando, P.J., Salfity, J.A., Magaz, G.E., Regazzoni, A.E., (2000) Coord. Chem. Rev., 196, p. 31
  • Nii, K., (1970) Corrosion Sci., 10, p. 571
  • Marcilly, C., Delmon, B., (1795) C. R. Acad. Sci. Paris, Ser. C, 268, p. 1969
  • Courty, P., Delmon, B., (1969) C. R. Acad. Sci. Paris, Ser. C, 268, p. 1874
  • Leussing, D.L., Newman, L., (1956) J. Am. Chem. Soc., 78, p. 552
  • Vogel, A.J., (1961) Química Analítica Cuantitativa, p. 915. , Kapelusz Buenos Aires
  • Hill, R.J., Kraig, J.R., Gibbs, G.V., (1979) Phys. Chem. Miner., 4, p. 315
  • Data Base from International Center for Diffraction Data (ICDD), , PDF 33-0664
  • Music, S., Gotic, M., Czakó-Nagy, I., Popovic, S., Balzar, D., (1996) ICAME-95, , I. Ortalli. Bologna: SIF
  • Suter, D., Siffert, C., Sulzberger, B., Stumm, W., (1988) Naturwissenschaften, 75, p. 571
  • Rueda, E.H., Grassi, R.L., Blesa, M.A., (1985) J. Colloid Interface Sci., 106, p. 243
  • Litter, M.I., Baugmgartner, E.C., Urrutia, G.A., Blesa, M.A., (1991) Environ. Sci. Technol., 25, p. 1907
  • Ballesteros, M.C., Rueda, E.H., Blesa, M.A., (1998) J. Colloid Interface Sci., 201, pp. 13-19
  • Borghi, E.B., Morando, P.J., Blesa, M.A., (1991) Langmuir, 7, p. 1652
  • Urrutia, G.A., Blesa, M.A., (1988) React. Solids, 6, pp. 281-284
  • Shailaja, M., Narasimhan, S.V., (1991) J. Nucl. Sci. Technol., 28, p. 748
  • Jacobo, S.E., Regazzoni, A.E., Blesa, M.A., submitted; Borghi, E.B., Regazzoni, A.E., Maroto, A.J.G., Blesa, M.A., (1989) J. Colloid Interface Sci., 130, p. 299

Citas:

---------- APA ----------
Figueroa, C.A., Sileo, E.E., Morando, P.J. & Blesa, M.A. (2000) . Dissolution of nickel ferrite in aqueous solutions containing oxalic acid and ferrous salts. Journal of Colloid and Interface Science, 225(2), 403-410.
http://dx.doi.org/10.1006/jcis.2000.6734
---------- CHICAGO ----------
Figueroa, C.A., Sileo, E.E., Morando, P.J., Blesa, M.A. "Dissolution of nickel ferrite in aqueous solutions containing oxalic acid and ferrous salts" . Journal of Colloid and Interface Science 225, no. 2 (2000) : 403-410.
http://dx.doi.org/10.1006/jcis.2000.6734
---------- MLA ----------
Figueroa, C.A., Sileo, E.E., Morando, P.J., Blesa, M.A. "Dissolution of nickel ferrite in aqueous solutions containing oxalic acid and ferrous salts" . Journal of Colloid and Interface Science, vol. 225, no. 2, 2000, pp. 403-410.
http://dx.doi.org/10.1006/jcis.2000.6734
---------- VANCOUVER ----------
Figueroa, C.A., Sileo, E.E., Morando, P.J., Blesa, M.A. Dissolution of nickel ferrite in aqueous solutions containing oxalic acid and ferrous salts. J. Colloid Interface Sci. 2000;225(2):403-410.
http://dx.doi.org/10.1006/jcis.2000.6734