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J Hazard Mater ; 151(2-3): 585-93, 2008 Mar 01.
Article in English | MEDLINE | ID: mdl-17658684

ABSTRACT

The reuse of cement-solidified Municipal Solid Waste Incinerator (MSWI) fly ash (solidified/stabilised (S/S) product) as an artificial aggregate in Portland cement mortars was investigated. The S/S product consisted of a mixture of 48 wt.% washed MSWI fly ash, 20 wt.% Portland cement and 32 wt.% water, aged for 365 days at 20 degrees C and 100% RH. Cement mortars (water/cement weight ratio=0.62) were made with Portland cement, S/S product and natural sand at three replacement levels of sand with S/S product (0%, 10% and 50% by mass). After 28 days of curing at 20 degrees C and 100% RH, the mortar specimens were characterised for their physico-mechanical (porosity, compressive strength) and leaching behaviour. No retardation in strength development, relatively high compressive strengths (up to 36 N/mm2) and low leaching rates of heavy metals (Cr, Cu, Pb and Zn) were always recorded. The leaching data from sequential leach tests on monolithic specimens were successfully elaborated with a pseudo-diffusional model including a chemical retardation factor related to the partial dissolution of contaminant.


Subject(s)
Carbon/chemistry , Incineration , Particulate Matter/chemistry , Refuse Disposal/methods , Carbon/analysis , Coal Ash , Compressive Strength , Construction Materials , Diffusion , Hydrogen-Ion Concentration , Industrial Waste , Metals, Heavy/analysis , Metals, Heavy/chemistry , Models, Statistical , Particulate Matter/analysis , Stress, Mechanical , Temperature , Tensile Strength , Time Factors , Waste Management
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