Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Hydration reactions of cement combinations containing vitrified incinerator fly ash
One treatment option for municipal solid waste incinerator fly ash (IFA) is vitrification. The process yields a material containing reduced levels of trace metals relative to the original ash. The material is glassy and potentially suitable as a cement component in concrete. This paper examines the vitrification of an IFA and studies the hydration reactions of combinations of this vitrified material and Portland cement (PC). Isothermal conduction calorimetry, powder X-ray diffraction (XRD), thermogravimetry (TG) and scanning electron microscopy were employed to study the hydration reactions. As the levels of vitrified ash increase, the quantities of AFt phase produced decrease, whilst quantities of AFm phase increase, due to the reduced levels of sulfate in the vitrified ash. The levels of calcium silicate hydrate (CSH) gel (inferred from estimates of quantities of gel-bound water) remain constant at 28 days regardless of vitrified ash content, indicating that the material is contributing toward the formation of this product.
Hydration reactions of cement combinations containing vitrified incinerator fly ash
One treatment option for municipal solid waste incinerator fly ash (IFA) is vitrification. The process yields a material containing reduced levels of trace metals relative to the original ash. The material is glassy and potentially suitable as a cement component in concrete. This paper examines the vitrification of an IFA and studies the hydration reactions of combinations of this vitrified material and Portland cement (PC). Isothermal conduction calorimetry, powder X-ray diffraction (XRD), thermogravimetry (TG) and scanning electron microscopy were employed to study the hydration reactions. As the levels of vitrified ash increase, the quantities of AFt phase produced decrease, whilst quantities of AFm phase increase, due to the reduced levels of sulfate in the vitrified ash. The levels of calcium silicate hydrate (CSH) gel (inferred from estimates of quantities of gel-bound water) remain constant at 28 days regardless of vitrified ash content, indicating that the material is contributing toward the formation of this product.
Hydration reactions of cement combinations containing vitrified incinerator fly ash
Dyer, Thomas D. (Autor:in) / Dhir, Ravindra K. (Autor:in)
Cement and Concrete Research ; 34 ; 849-856
2004
8 Seiten, 18 Quellen
Aufsatz (Zeitschrift)
Englisch
Hydration reactions of cement combinations containing vitrified incinerator fly ash
British Library Online Contents | 2004
|Hydration reactions of cement combinations containing vitrified incinerator fly ash
Online Contents | 2004
|British Library Online Contents | 2001
|Incinerator residual ash – Metakaolin blended cements: Effect on cement hydration and properties
British Library Online Contents | 2019
|Early Hydration Reactions of Cement
British Library Conference Proceedings | 1999
|