[en] Low-density xerogel Pd-Ag/SiO2 catalysts were prepared by a cogelation of tetraethoxysilane with organically substituted alkoxides capable of forming chelates with palladium and silver ions, followed by a drying under vacuum, a calcination, and a reduction. The resulting Pd-Ag alloy particles have diameters of about 2-3 nm and are dispersed inside the silica particles which exhibit a monodisperse micropore size distribution centered at 0.8 nm. At low silver loading, the composition of the bimetallic particles is almost identical to the overall composition, but when this loading is increased, the percentage of silver in the alloy particles is appreciably lower than the overall percentage, In all bimetallic samples, a few large pure silver particles are observed. When dried under vacuum, the xerogels exhibit a texture similar to that of aerogels dried under supercritical conditions with pore volumes in the range 2-6 cm(3)/g and pores ranging from micro- to macropores of several hundred nanometers. When the silver loading is increased, xerogels containing palladium show aggregates of increasingly interpenetrated silica particles. This is explained bq an aggregation, during the gelation reaction, of colliding SiO2 particles which is limited by an increasingly slow sticking reaction due to the growing basicity in the precursor solution when the concentrations of Ag and associated compounds are increased. During thermal treatments, the Pd-Ag alloy seems to form by the migration, through the porous network, of silver which finally alloys with Pd crystallites trapped inside SiO2 particles. Whereas ethane is the main product when hydrodechlorination of 1,2-dichloroethane is performed over pure palladium, the dilution of this active metal by silver leads to a strong increase in ethylene selectivity. (C) 1997 Academic Press.
Disciplines :
Materials science & engineering Chemical engineering Chemistry
Author, co-author :
Heinrichs, Benoît ; Université de Liège - ULiège > Département de chimie appliquée > Génie chimique - Chimie physique appliquée
Delhez, Patrice; Université de Liège - ULiège > Département de chimie appliquée
Schoebrechts, Jean-Paul; Solvay S.A. > Laboratoire Central
Pirard, Jean-Paul ; Université de Liège - ULiège > Département de chimie appliquée > Génie chimique - Chimie physique appliquée
Language :
English
Title :
Palladium-silver sol-gel catalysts for selective hydrodechlorination of 1,2-dichloroethane into ethylene - I. Synthesis and characterization
Publication date :
1997
Journal title :
Journal of Catalysis
ISSN :
0021-9517
eISSN :
1090-2694
Publisher :
Academic Press, San Diego, United States - California
Volume :
172
Issue :
2
Pages :
322-335
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
FRIA - Fonds pour la Formation à la Recherche dans l'Industrie et dans l'Agriculture MRW - Ministère de la Région wallonne F.R.S.-FNRS - Fonds de la Recherche Scientifique Service de la Programmation de la Politique Scientifique
Ritter, E. R., Bozzelli, J. W., and Dean, A. M., J. Phys. Chem. 94, 2493 (1990).
Kosusko, M., Mullins, M. E., Ramanathan, K., and Rogers, T. N., Environ. Prog. 7, 136 (1988).
Tichenor, B. A., and Palazzolo, M. A., Environ. Prog. 6, 172 (1987).
Kalnes, T. N., and James, R. B., Environ. Prog. 7, 185 (1988).
Bozzelli, J. W., Chen, Y.-M., and Chuang, S. S. C., Chem. Eng. Comm. 115, 1 (1992).
Fung, S. C., and Sinfelt, J. H., J. Catal. 103, 220 (1987).
Anderson, J. R., and McConkey, B. H., J. Catal. 11, 54 (1968).
Ito, L. N., Harley, A. D., Holbrook, M. T., Smith, D. D., Murchison, C. B., and Cisneros, M. D., International Patent Application WO 94/07827 (1994).
López, T., López-Gaona, A., and Gómez, R., J. Non-Cryst. Solids 110, 170 (1989).
López, T., López-Gaona, A., and Gómez, R., Langmuir 6, 1343 (1990).
López, T., Bosch, P., Asomoza, M., and Gómez, R., J. Catal. 133, 247 (1992).
López, T., Gómez, R., Novaro, O., Ramírez-Solís, A., Sánchez-Mora, E., Castillo, S., Poulain, E., and Martínez-Magadán, J. M., J. Catal. 141, 114 (1993).
López, T., Asomoza, M., Bosch, P., Garcia-Figueroa, E., and Gómez, R., J. Catal. 138, 463 (1992).
López, T., Romero, A., and Gómez, R., J. Non-Cryst. Solids 127, 105 (1991).
Schubert, U., Breitscheidel, B., Buhler, H., Egger, C., and Urbaniak, W., in "Better Ceramics Through Chemistry V: Symp. Proc., San Francisco, April 27-May 1, 1992" (M. J. Hampden-Smith, W. G. Klemperer, and C. J. Brinker, Eds.), Materials Research Society Symposium Proceedings, Vol. 271, p. 621, Materials Research Society, Pittsburgh, 1992.
Schubert, U., New J. Chem. 18, 1049 (1994).
Mörke, W., Lamber, R., Schubert, U., and Breitscheidel, B., Chem. Mater. 6, 1659 (1994).
Kaiser, A., Görsmann, C., and Schubert, U., J. Sol-Gel Sci. Technol. 8, 795 (1997).
Heinrichs, B., Pirard, J.-P., and Pirard, R., U.S. Patent 5,538,931 (1996).
Heinrichs, B., Noville, F., and Pirard, J.-P., J. Catal. 170, 366 (1997).
Brinker, C. J., and Scherer, G. W., "Sol-Gel Science: The Physics and Chemistry of Sol-Gel Processing," Academic Press, San Diego, 1990.
Sinfelt, J. H., "Bimetallic Catalysts - Discoveries, Concepts, and Applications," Wiley, New York, 1983.
El Hamdaoui, A., Bergeret, G., Massardier, J., Primet, M., and Renouprez, A., J. Catal. 148, 47 (1994).
Bouwman, R., Lippits, G. J. M., and Sachtler, W. M. H., J. Catal. 25, 350 (1972).
Wood, B. J., and Wise, H., Surf. Sci. 52, 151 (1975).
Kuijers, F. J., and Ponec, V., J. Catal. 60, 100 (1979).
Allison, E. G., and Bond, G. C., Catal. Rev. 7, 233 (1972).
Brunauer, S., Deming, L. S., Deming, W. S., and Teller, E., J. Amer. Chem. Soc. 62, 1723 (1940).
Lecloux, A. J., in "Catalysis: Science and Technology" (J. R. Anderson and M. Boudart, Eds.), Vol. 2, p. 171, Springer, Berlin, 1981.
Rouquerol, J., Avnir, D., Fairbridge, C. W., Everett, D. H., Haynes, J. H., Pernicone, N., Ramsay, J. D. F., Sing, K. S. W., and Unger, K. K., Pure Appl. Chem. 66, 1739 (1994).
Mikhail, R. S., Brunauer, S., and Bodor, E. E., J. Colloid Interface Sci. 26, 45, 54 (1968).
Broekhoff J. C. P., and de Boer, J. H., J. Catal. 9, 8 (1967).
Broekhoff, J. C. P., and de Boer, J. H., J. Catal. 9, 15 (1967).
Broekhoff, J. C. P., and de Boer, J. H., J. Catal. 10, 153 (1968).
Pirard, R., Blacher, S., Brouers, F., and Pirard, J.-P., J. Mater. Res. 10, 2114 (1995).
Pirard, R., Heinrichs, B., and Pirard, J.-P., in "Characterisation of Porous Solids IV" (B. McEnaney, T. J. Mays, J. Rouquerol, F. Rodriguez-Reinoso, K. S. W. Sing, and K. K. Unger, Eds.), The Royal Society of Chemistry, London, in press.
Pirard, R., and Pirard, J.-P, J. Non-Cryst. Solids 212, 262 (1997).
Pajonk, G. M., Appl. Catal. 72, 217 (1991).
Yamane, M., in "Sol-Gel Technology for Thin Films, Fibers, Preforms, Electronics and Specialty Shapes" (L. C. Klein, Ed.), p. 200, Noyes Publications, Park Ridge, NJ, 1988.
Iler, R. K., "The Chemistry of Silica," Wiley, New York, 1979.
Coltrain, B. K., Melpolder, S. M., and Salva, J. M., in "Proceedings of the IVth International Conference on Ultrastructure Processing of Ceramics, Glasses, and Composites" (D. R. Uhlmann and D. R. Ulrich, Eds.), Wiley, New York, 1989.
Stevenson, S. A., Dumesic, J. A., Baker, R. T. K., and Ruckenstein, E., "Metal-Support Interactions in Catalysis, Sintering, and Redispersion," Van Nostrand-Reinhold, New York, 1987.
Ruckenstein, E., and Pulvermacher, B., J. Catal. 37, 416 (1975).
Zou, W., and Gonzalez, R. D., Appl. Catal. A 126, 351 (1995).
Campbell, H. S., and Kemball, C., Trans. Faraday Soc. 57, 809 (1961).
Coq, B., Ferrat, G., and Figueras, F., J. Catal. 101, 434 (1986).
Coq, B., Ferrat, G., and Figueras, F., React. Kinet. Catal. Lett. 27, 157 (1985).