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Study of the Microstructure Evolution of Low-pH Cements Based on Ordinary Portland Cement (OPC) by Mid- and Near-Infrared Spectroscopy and Their Influence on Corrosion of Steel Reinforcement

机译:中红外光谱和近红外光谱研究基于普通硅酸盐水泥的低pH值水泥的微观结构演变及其对钢筋腐蚀的影响

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摘要

Low-pH cements are designed to be used in underground repositories for high level waste. When they are based on Ordinary Portland Cements (OPC), high mineral admixture contents must be used which significantly modify their microstructure properties and performance. This paper evaluates the microstructure evolution of low-pH cement pastes based on OPC plus silica fume and/or fly ashes, using Mid-Infrared and Near-Infrared spectroscopy to detect cement pastes mainly composed of high polymerized C-A-S-H gels with low C/S ratios. In addition, the lower pore solution pH of these special cementitious materials have been monitored with embedded metallic sensors. Besides, as the use of reinforced concrete can be required in underground repositories, the influence of low-pH cementitious materials on steel reinforcement corrosion was analysed. Due to their lower pore solution pH and their different pore solution chemical composition a clear influence on steel reinforcement corrosion was detected.
机译:低pH水泥被设计用于地下仓库中的高放废物。当它们基于普通波特兰水泥(OPC)时,必须使用高矿物掺合料含量,这会显着改变其微结构性质和性能。本文使用中红外和近红外光谱技术评估了基于OPC加硅灰和/或飞灰的低pH水泥浆的微观结构演变,以检测主要由低C / S比的高聚合CASH凝胶组成的水泥浆。此外,这些特殊水泥材料的较低孔隙溶液pH值已通过嵌入式金属传感器进行了监测。此外,由于可能需要在地下储存库中使用钢筋混凝土,因此分析了低pH胶凝材料对钢筋腐蚀的影响。由于其较低的孔溶液pH值和不同的孔溶液化学组成,因此检测到对钢筋增强腐蚀的明显影响。

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