Preparation and characterization of magnetic composites based on a natural zeolite

A magnetic composite was prepared by wet-impregnating a powder of a natural zeolite with a magnetic Fe oxide-containing synthetic material. Both starting materials were first characterized with X-ray diffraction, scanning electron microscopy, Mössbauer spectroscopy, and by isoelectric-point using vibrating-sample magnetometry. The synthetic Fe oxide-containing material was characterized as a mixture of magnetite (Fe3O4) and goethite (α-FeOOH). From the 57Fe Mössbauer analysis, the relative subspectral area for magnetite corresponds to 93(2)%; the remaining spectrum is assignable to goethite. After the impregnation process, magnetite was still identified in the composite material as a magnetic layer surrounding the zeolite particles; no magnetically ordered goethite could be detected. The Mössbauer pattern for this sample indicates a much more complex structure than for the precursor material, based on Fe oxides, with some more altered magnetite and an intense central doublet of (super)paramagnetic Fe3+, probably due to small Fe (hydr)oxides and/or to a residual contribution of Fe-bearing species from the starting zeolite material. The composite preparation procedure also promoted the change of the characteristic A-type zeolite to mordenite. The resulting magnetic composite presented a magnetic coercivity of as much as 0.140 A m-1, at 77 K. The final composite is now being evaluated as an adsorbent: results to date confirm that this novel magnetic material may have applications in the remediation of contaminated water bodies.

Saved in:
Bibliographic Details
Main Authors: Gutiérrez, M., Escudey, Mauricio, Escrig, J., Denardin, Juliano C., Altbir, Dora, Fabris, J. D., Cavalcante, L. C. D., García-González, M. T.
Format: artículo biblioteca
Published: Clay Minerals Society 2010-10
Subjects:Coercivity, Fe OxideIsoelectric Point, Magnetic Zeolite, Magnetite, Mössbauer Spectroscopy,
Online Access:http://hdl.handle.net/10261/198407
Tags: Add Tag
No Tags, Be the first to tag this record!