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Chloride-Induced Corrosion of Steel in Alkali-Activated Mortars Based on Different Precursors

机译:基于不同前体的碱活化砂浆中氯化物诱导的钢腐蚀

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摘要

The low environmental impact and high long-term performance of products are becoming imperative for the sustainable development of the construction industry. Alkali-activated materials (AAMs) are one of the available low-embodied-carbon alternatives to Portland cement (OPC). For their application in the marine environment or where de-icing salts are used, it is of utmost importance to demonstrate their equal or better performance compared to OPC. The aim of this study was to compare the corrosion behaviour of the steel in AAMs based on different regionally available by-products with the behaviour of the steel in OPC. The by-products used were fly ash, slag, silica fume, and iron-silica fines. The corrosion process of each system was monitored by the corrosion potential and polarisation resistance during exposure to tap water and chloride solution over a period of almost one year. Certain AAMs showed a higher resistance to chloride penetration compared to OPC, which was attributed to the smaller number of capillary pores and higher gel phase precipitation. The same corrosion resistance compared to OPC was achieved with alkali-activated fly ash and alkali-activated slag mortars. The stability of the systems in tap water and chloride solution was confirmed by the visual assessment of the steel surface at the end of the test period.
机译:对建筑业可持续发展的产品较低的环境影响和高度长期的性能成为必不可少的。碱活性材料(AAMS)是波特兰水泥(OPC)的可用低实体碳替代品之一。对于他们在海洋环境中的应用或使用去冰盐的应用,与OPC相比,展示其平等或更好的性能至关重要。本研究的目的是将钢在AAM中的腐蚀行为基于不同的区域可用的副产物,在OPC中的钢行为。使用的副产品是飞灰,炉渣,二氧化硅烟和铁二氧化硅含量。通过在暴露过程中通过腐蚀电位和极化抗性来监测每个系统的腐蚀过程,以在近一年的时间内自来水和氯化物溶液。与OPC相比,某些AAM对氯化物渗透率较高,其归因于毛细血管孔数量较少和较高的凝胶相沉淀。与OPC相同的耐腐蚀性,通过碱活化的粉煤灰和碱活化渣砂浆实现。通过在测试期结束时通过钢表面的视觉评估确认自来水和氯化物溶液中的系统的稳定性。

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