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Improvement of durability and drying shrinkage of sodium carbonate activated slag through the incorporation of calcium hydroxide and sodium hydroxide

机译:通过掺入氢氧化钙和氢氧化钠通过掺入碳酸钠活性炉渣的耐久性和干燥收缩

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This study investigates the drying shrinkage, permeability, chloride migration and pore size distribution of sodium carbonate (NC) activated slag. To this end, the effectiveness of two different modifiers, e.g. calcium hydroxide (CH), sodium hydroxide (NH), on shrinkage and permeability of NC-activated slag were investigated. Within this context, NH was replaced with NC at 20% and 40%, while CH was replaced with slag at 3% by weight. The results showed that drying shrinkage can be mitigated with NH and CH substitution, while attaining comparable performance with the ordinary Portland cement (OPC). Moreover, chloride penetration and sorptivity was reduced with the aid of the modifiers, CH-modified mixes presented better performance than OPC-based mixes. The pore structure was refined through CH-substitution. Formation of a high amount of calcite and lower unhydrated slag particle area fraction, which was confirmed with the SEM analysis, proved the lower permeability of CH-modified mixes. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究研究了碳酸钠(NC)活性炉渣的干燥收缩,渗透性,氯化物迁移和孔径分布。为此,两种不同修饰剂的有效性,例如,研究了氢氧化钙(CH),氢氧化钠(NH),用于NC活化炉渣的收缩和渗透性。在这种情况下,NH以20%和40%的NC代替,而CH被炉渣替换为3重量%。结果表明,干燥收缩可以用NH和CH替代来减轻,同时实现与普通波特兰水泥(OPC)的相当性能。此外,借助于改性剂,CH-修饰的混合物减少了氯化物渗透和吸附率,而不是比OPC基混合物更好的性能。孔隙结构通过CH替代方法精制。用SEM分析确认,形成大量方解石和低水水渣颗粒面积级分,证明了CH-修饰混合物的渗透性较低。 (c)2020 elestvier有限公司保留所有权利。

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