Extra-framework cation release from heulandite-type rich tuffs on exchange with NH4

The outgoing cations of Greek heulandite-rich tuff samples (heulandite type-III, 91wt.%, mica 4wt.%, feldspar 5wt. %, CEC 2.22meq/g) were analysed upon exchange with ammonium acetate using atomic absorption spectrometry (AAS). The kinetic curves of each cation were investigated over a total time of...

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Veröffentlicht in:Journal of environmental management 2011-06, Vol.92 (6), p.1569-1576
Hauptverfasser: Kantiranis, N., Sikalidis, K., Godelitsas, A., Squires, C., Papastergios, G., Filippidis, A.
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Sprache:eng
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Zusammenfassung:The outgoing cations of Greek heulandite-rich tuff samples (heulandite type-III, 91wt.%, mica 4wt.%, feldspar 5wt. %, CEC 2.22meq/g) were analysed upon exchange with ammonium acetate using atomic absorption spectrometry (AAS). The kinetic curves of each cation were investigated over a total time of contact of 720h with sampling at frequent intervals. The materials were examined by powder X-ray diffraction, SEM-EDS, and AAS. The sorption ability was measured using the ammonium acetate saturation method. It was found that Ca2+ presents an unexpected extra-framework release and a surprisingly high degree of exchange (90%). The exchange of Mg (57%) is also worthy of note whereas the behavior of K+ showed an expected rapid initial release. The behavior of Na+ must be similar. However, its lower concentration in the zeolitic material minimizes its overall significance somewhat. On the other hand, Ca2+ and Mg2+ release is kinetically much slower, compared to that of alkali metal ions, and this phenomenon indicates that different exchange energies are needed till final equilibrium.
ISSN:0301-4797
1095-8630
DOI:10.1016/j.jenvman.2011.01.013