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Factors controlling carbonation resistance of alkali-activated materials

机译:控制碱活化材料抗碳化性的因素

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摘要

Although notable advances have been made in recent years in elucidating the relationship between the nature of the precursor and the activation conditions used for production of alkali-activated materials (AAMs), it remains largely unknown whether these materials can withstand various environmental threats during their service life. The interaction between a cementitious material and the CO_2 present in the air is referred to as carbonation, and while this is largely a well understood phenomenon for portland cement systems, its long-term effects in AAMs are unknown. This is a consequence of the large number of variables controlling microstructural development and therefore macro-scale properties of AAMs, and the lack of standardized methodologies for testing their carbonation resistance. This study reports an overview of recently identified factors inducing microstructural changes in AAMs upon exposure to CO_2, and the influence of carbonation on the corrosion resistance of some steel reinforced AAMs.
机译:尽管近年来在阐明前驱物的性质与用于生产碱活化材料(AAM)的活化条件之间的关系方面取得了显着进展,但在很大程度上仍不清楚这些材料在使用过程中是否能承受各种环境威胁生活。胶结材料与空气中存在的CO_2之间的相互作用被称为碳酸化,虽然这在硅酸盐水泥体系中是众所周知的现象,但其在AAM中的长期作用尚不清楚。这是由于大量变量控制着微结构的发展,因此控制了AAM的宏观特性,并且缺乏测试其抗碳化性的标准化方法。这项研究报告概述了最近发现的一些因素,这些因素在暴露于CO_2时会引起AAM的微观结构变化,以及碳化对某些钢增强AAM的耐腐蚀性的影响。

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