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Evaluation of the potential of geopolymer mortar in the rehabilitation of buried infrastructure

机译:评估地质聚合物砂浆在掩埋基础设施修复中的潜力

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Concrete pipes represent the backbone of the wastewater collection systems in many cities across North America. These pipes are in various stages of deterioration, generally due to microbiological induced corrosion and/or mechanical loading. A common method of rehabilitating these structures is the use of cementitious coatings. This paper describes the development and testing of three novel geopolymer mix designs prepared using metakaolin and fly ash (class C and F) precursors. Specimens prepared using Portland cement-silica fume blend were also tested for comparison purposes. The specimens were placed in several concentrations of sulphuric acid for a period of eight weeks. The corrosion resistance and remaining compressive strength of geopolymer mortar made from class F fly ash precursor were found to be substantially higher compared with the enhanced OPC formulation. The other geopolymer mix designs were found to perform equally or better compared with the OPC binary blend.
机译:混凝土管是整个北美许多城市废水收集系统的骨干。这些管通常处于微生物恶化的各个阶段,这归因于微生物引起的腐蚀和/或机械负荷。修复这些结构的常用方法是使用水泥涂料。本文介绍了使用偏高岭土和粉煤灰(C和F类)前体制备的三种新型地质聚合物混合物设计的开发和测试。还测试了使用波特兰水泥-硅粉混合物制备的样品,以进行比较。将样品置于几种浓度的硫酸中八周。与增强的OPC配方相比,发现由F级粉煤灰前体制成的地聚合物砂浆的耐腐蚀性和剩余抗压强度要高得多。发现其他地质聚合物混合物设计与OPC二元混合物相比性能相同或更好。

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