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Carbonated binder systems containing reactive MgO and Portland cement: Strength, chemical composition and pore structure

机译:含有反应性MgO和波特兰水泥的碳酸粘合剂系统:强度,化学成分和孔隙结构

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A sustainable binder system with a capacity to mineralize CO2 can be formulated by reactive MgO and Portland cement (PC). This research studies the properties of mortar specimens made with carbonated MgO-PC systems with a MgO substitution range of 0%-100% in order to evaluate and compare the compressive strength, chemical composition and pore structure. Key results indicate that the carbonation front of mortar subjected to the same curing regime is primarily controlled by the percentage of MgO. The carbonation depth together with the MgO substitution percentage impacts the type of the hydration and carbonation products and their quantity. This affects the mechanical properties and microstructure of the matrix. The compressive strength and pore volume are between of 27.5-84.7 MPa and 2.9%-8.7%, respectively. MgO substitution percentages of 60% and 70% were optimal to achieve both relatively high strength and low porosity. Carbonated MgO-PC binder with 60% MgO was found to possess 20% lower embodied CO2 than that of PC. (C) 2020 Elsevier Ltd. All rights reserved.
机译:可持续粘合剂系统具有矿化CO2的能力,可以通过反应性MgO和波特兰水泥(PC)配制。本研究研究了砂浆样品的性质,用MgO替代范围为0%-100%,以评估和比较抗压强度,化学成分和孔结构。关键结果表明,经过相同固化制度的砂浆的碳酸化前沿主要受MgO的百分比控制。碳化深度与MgO取代百分比一起影响水合和碳化产物的类型及其量。这影响了基质的机械性能和微观结构。压缩强度和孔体积分别为27.5-84.7MPa和2.9%-8.7%。 MgO取代百分比60%和70%是最佳的,以实现相对高的强度和低孔隙率。发现具有60%MgO的碳酸化MgO-PC粘合剂具有比PC的20%降低的20%。 (c)2020 elestvier有限公司保留所有权利。

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