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Performance of Sustainable Fly Ash and Slag Cement Mortars Exposed to Simulated and Real In Situ Mediterranean Conditions along 90 Warm Season Days

机译:在模拟的和真实的地中海原位条件下,在90个暖季里,可持续粉煤灰和矿渣水泥砂浆的性能

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摘要

Nowadays, cement manufacture is one of the most polluting worldwide industrial sectors. In order to reduce its CO2 emissions, the clinker replacement by ground granulated blast–furnace slag and fly ash is becoming increasingly common. Both additions are well-studied when the hardening conditions of cementitious materials are optimum. Therefore, the main objective of this research was to study the short-term effects of exposure, to both laboratory simulated and real in situ Mediterranean climate environments, on the microstructure and durability-related properties of mortars made using commercial slag and fly ash cements, as well as ordinary Portland cement. The real in situ condition consisted of placing the samples at approximately 100 m away from the Mediterranean Sea. The microstructure was analysed using mercury intrusion porosimetry. The effective porosity, the capillary suction coefficient and the non-steady state chloride migration coefficient were also studied. In view of the results obtained, the non-optimum laboratory simulated Mediterranean environment was a good approach to the real in situ one. Finally, mortars prepared using sustainable cements with slag and fly ash exposed to both Mediterranean climate environments, showed adequate service properties in the short-term (90 days), similar to or even better than those in mortars made with ordinary Portland cement.
机译:如今,水泥制造是全球污染最严重的工业部门之一。为了减少其CO2排放,用粒状高炉矿渣和粉煤灰替代熟料变得越来越普遍。当胶凝材料的硬化条件最佳时,对这两种添加剂都进行了充分研究。因此,这项研究的主要目的是研究暴露于实验室模拟和真实的地中海气候环境中的短期影响,这些影响对使用商业矿渣和粉煤灰水泥制成的砂浆的微观结构和耐久性相关的性能,以及普通的波特兰水泥。真正的原位条件是将样品放置在距离地中海约100 m的位置。使用压汞法分析了显微组织。还研究了有效孔隙率,毛细吸力系数和非稳态氯离子迁移系数。鉴于获得的结果,非最佳的实验室模拟地中海环境是对真实现场环境的一种很好的方法。最后,使用可持续性水泥,矿渣和粉煤灰暴露在两个地中海气候环境中制成的砂浆在短期(90天)内显示出足够的服务性能,与使用普通波特兰水泥制成的砂浆相似甚至更好。

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