4.7 Article

Durability of alkali-activated fly ash concrete: Chloride penetration in pastes and mortars

Journal

CONSTRUCTION AND BUILDING MATERIALS
Volume 65, Issue -, Pages 51-59

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2014.04.110

Keywords

Concrete; Alkali-activated materials; Geopolymers; Chloride penetration; Durability; Pore structure

Funding

  1. Natural Science Foundation of Jiangsu Province of China [BK20130428]
  2. Natural Science Foundation of the Jiangsu Higher Education Institutions of China [12KJB430014]
  3. Project of Key Laboratory for Ecology and Pollution Control of Coastal Wetlands [KLCW1203]
  4. Project of Key Laboratory for Advanced Technology in Environmental Protection of Jiangsu Province [AE201113]
  5. Nuclear Waste and Environmental Safety Key Defence Laboratory Open Funding [13zxnk04]
  6. Faculty of Health, Engineering and Science, USQ
  7. Australian Research Council [LP130101016]
  8. Australian Research Council [LP130101016] Funding Source: Australian Research Council

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Durability of alkalis-activated fly ash (AAFA) concretes is of vital concern for their commercial application. This study investigates the durability in the aspect of chloride penetration in AAFA pastes and mortars in comparison with Portland cement. A coarse fly ash with 0-40% substitution by a granulated blast furnace slag were used to prepared AAFA pastes and mortars at liquid/solid ratio of 0.6-0.8 (in mass). It was observed that at the same grade of compressive strength, even higher, the unsaturated AAFA paste and mortar had higher Cl- penetration rate than Portland cement paste and mortar. Only the mortars with the liquid/solid ratio of 0.6 and the mortar with 40% slag substitution exhibited similar Cl- penetration rate as the cement mortar at w/c of 0.5. The pore structure analysis showed that the porosity and tortuosity are the two most significant factors affecting the Cl- penetration. This study underlines the important roles of the natural properties of fly ash, liquid/solid ratio and slag substitution in the development of durable AAFA concrete. (C) 2014 Elsevier Ltd. All rights reserved.

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