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Investigation into the synergistic effects in hydrated gelling systems containing fly ash, desulfurization gypsum and steel slag

机译:含粉煤灰,脱硫石膏和钢渣的水合胶凝体系中的协同效应研究

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This paper presented the synergistic effects with respect to compressive strength in hydrated gel systems containing fly ash (FA), flue gas desulfurization gypsum (FGD) and steel slag (SS). The compressive strength of ternary, binary and unary gel system blocks were primarily investigated, and then the block of highest compressive strength in each gel system was selected to optimize its ratio of raw materials. The results showed that the compressive strength of the complex gel blocks in different gel systems changed as follows: ternary system binary system unary system, in addition, the blocks with highest compressive strength in binary and unary systems were SS-FA gel block and SS gel block. Due to the optimized ratio of raw materials, there was an enhancement of compressive strength for binary (SS-FA) and ternary system blocks. For a ternary mixture containing 20% FA, 70% SS and 10% FGD, the synergistic effect was observed mostly at 28 days and it resulted in the highest compressive strength and lowest water absorption. Studies water durability revealed the gel blocks submerged in distilled water exhibited better strength development than that cured in air-dry. In this study, XRD, SEM and TGA were used to analyze the mineral composition, microstructure and thermal weight loss characteristics of different gel system blocks in order to determine the source of the synergy and quantify its magnitude. The results indicated that the observed the synergy effect between FA, FGD and SS was attributed to produce more hydrated calcium silicate (C-S-H) and new hydration products (eg. ettringite and C-S-H with a low calcium silicon ratio). (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了在含有粉煤灰(FA),烟气脱硫石膏(FGD)和钢渣(SS)的水合凝胶体系中抗压强度的协同效应。首先研究了三元,二元和一元凝胶体系嵌段的抗压强度,然后选择每个凝胶体系中最高抗压强度的嵌段以优化其原料比。结果表明,复合凝胶嵌段在不同凝胶体系中的抗压强度变化如下:三元体系>二元体系>一元体系,此外,二元和一元体系中抗压强度最高的嵌段为SS-FA凝胶嵌段和SS凝胶块。由于原料的最佳比例,二元(SS-FA)和三元系统块的抗压强度得到了提高。对于含有20%FA,70%SS和10%FGD的三元混合物,主要在28天时观察到协同作用,并导致最高的抗压强度和最低的吸水率。水的耐久性研究表明,浸没在蒸馏水中的凝胶块比风干固化的凝胶块显示出更好的强度发展。在本研究中,使用XRD,SEM和TGA分析了不同凝胶体系块的矿物组成,微观结构和热失重特性,以确定协同作用的来源并量化其幅度。结果表明,观察到的FA,FGD和SS之间的协同作用归因于产生更多的水合硅酸钙(C-S-H)和新的水合产物(例如钙硅石比率低的钙矾石和C-S-H)。 (C)2018 Elsevier Ltd.保留所有权利。

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