Leaching Behaviour of a Glass Produced from a MSWI Bottom Ash
This paper is mainly focused on the characterisation of a glass material (GM) obtained from the thermal treatment of a bottom ash (BA) produced at the Municipal Solid Waste (MSW) incineration plant of Valorsul. By melting the BA at 1400°C during 2 hours, and without using any chemical additives, a h...
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Veröffentlicht in: | Materials science forum 2006-01, Vol.514-516, p.1736-1741 |
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Sprache: | eng |
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Zusammenfassung: | This paper is mainly focused on the characterisation of a glass material (GM) obtained
from the thermal treatment of a bottom ash (BA) produced at the Municipal Solid Waste (MSW)
incineration plant of Valorsul. By melting the BA at 1400°C during 2 hours, and without using any
chemical additives, a homogeneous black-coloured glass was obtained. The thermal and mechanical
properties of this glass were characterised. The thermal expansion coefficient, measured by
dilatometry, was 9-10 x 10-6 per °C and the modulus of rupture, determined by four-point bending
test, was 75±6 MPa, which are similar values to those exhibited by commercial soda-lime-silica
glasses used in structural applications. The chemical and the ecotoxicological leaching behaviour of
the GM were also analysed. The GM was submitted to a leaching procedure composed of 15
sequential extraction cycles. A liquid/solid (L/S) ratio of 2 l/kg was applied in each cycle. The
leachates were filtered through a membrane of PTFE (porosity: 0.45 8m). The filtered leachates
were characterised for different chemical parameters and for an ecotoxicological indicator
(bacterium Vibrio fischeri). The GM was also submitted to a microwave acidic digestion for the
assessment of the total metal content. The crude BA was also submitted to the same experimental
procedures. The GM showed levels of chemical emission and ecotoxicity for V. fischeri much lower
than those determined for the crude BA. Similar characterisation studies will be pursued with the
glass-ceramics produced by adequate thermal treatment of the glass, in order to investigate the
effect of the crystallization on the final properties. |
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ISSN: | 0255-5476 1662-9752 1662-9752 |
DOI: | 10.4028/www.scientific.net/MSF.514-516.1736 |