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Comparisons of alkali-activated binder concrete (ABC) with OPC concrete-A review

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CEMENT & CONCRETE COMPOSITES
卷 135, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.cemconcomp.2022.104851

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Alkali -activated binder concrete; Mechanical properties; Durability; Harsh environments

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This paper comprehensively reviews the important parameters of alkali-activated binder concrete (ABC) and provides a comparison with Ordinary Portland Cement (OPC) concrete. However, controlling the performance of ABC is complex due to its sensitivity to the chemical and physical characteristics of precursors and activators. The lack of standardized procedures for assessing specific performance further challenges the production of ABC with desirable properties. Nevertheless, with careful mix design and locally available raw materials, ABC is a potential low carbon material, especially for structures in harsh environments.
Improving the sustainability of concrete industry by adopting durable concrete with low energy intensity has become one of the major research focus in recent years, leading to the remarkable progress on alkali-activated binder concrete (ABC). To reveal the potentialities yet limitations of ABC towards a wider application, the pa-rameters important to the properties of ABC were comprehensively reviewed in this paper. A systematic com-parison with Ordinary Portland Cement (OPC) concrete was provided, intending to assist in the selection of raw materials as well as curing regime for ABC to achieve similar workability, mechanical properties and better durability. However, a broad synthesis of available laboratory and field data highlighted the fact that it is rather complicated to control the performance of ABC which is highly sensitive to both the chemical and physical characteristic of precursors and activators. The lack of standardised procedures for assessing specific perfor-mance has further challenged the production of ABC with desirable properties, since some practical and reliable test methods developed for OPC were proved unsuitable for ABC. Nevertheless, given careful mix design with locally available raw materials, ABC is a potential low carbon material, especially for structures in harsh envi-ronments like sewage, chemical acid, organic acid and elevated temperature.

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