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Effects of pozzolanic reaction on carbonation degree and strength of steel slag compacts containing zeolite

机译:火山灰反应对沸石钢渣压块碳化度和强度的影响

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摘要

In this paper, a novel method, zeolite partially replacing steel slag, was proposed to futher improve the properties (compressive strength and carbonation degree) of steel slag compacts futher after CO2 curing. Inductively coupled plasma (ICP) results illustrated that the Ca, and, Fe ion concentrations in the steel slag matrix substituted by 5 wt% zeolite (water-to-solid ratio of 10) were 78.19 mg/L and 4.09 mg/L, 19.3% and 99.0% higher than that of pure steel slag after 1 d of hydration curing respectively. The decreased crystallite size of C(4)AF and increase in Fe ion concentration illustrates that zeolite with pozzolanic properties could react with CaO-FeOx matrix components such as brownmillerite (C(4)AF), to produce C-S-H gel, which possesses higher solubility than the CaO-FeOx matrix, to improve the Ca ion concentration. In terms of the compressive strength and carbonation degree results, the optimum zeolite substitution ratios were 5 wt% and 15 wt%, respectively. After 1 d hydration and 2 h of carbonation curing, the compressive strength of the steel slag compacts with 5 wt% zeolite (CSZ5) was 14% higher than that of pure steel slag compacts (CSZ0). With respect to carbonation degree, the steel slag substituted with 15 wt% zeolite (CSZ15) had a 10.2% higher carbonation level than that of CSZ0. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型方法,沸石部分更换钢渣,提出了在CO2固化后钢渣压缩钢渣压缩的特性(抗压强度和碳化度)。电感耦合等离子体(ICP)结果表明,钢渣基质中的Ca和Fe离子浓度被5wt%沸石(水至固体比为10),为78.19mg / L和4.09 mg / L,19.3分别在水合固化后的纯钢渣99.0%高于水合固化。 C(4)AF的微晶尺寸和Fe离子浓度的增加说明了具有火山灰性质的沸石可以与Cao-Feox基质组分如棕色镁(C(4)AF)反应,以产生CSH凝胶,其具有更高的溶解度比曹飞民基质,改善Ca离子浓度。就抗压强度和碳化度结果而言,最佳沸石取代比分别为5wt%和15wt%。在1 d水合和碳酸化固化的2小时之后,钢渣压缩强度为5wt%沸石(Csz5)的压缩强度比纯钢渣压块(CSZ0)高出14%。关于碳化度,用15wt%沸石(CSZ15)取代的钢渣具有比CSZ0更高的碳酸化水平为10.2%。 (c)2021 elestvier有限公司保留所有权利。

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