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混合碱硫酸盐激发粒化高炉矿渣水泥的相演变

Phase Evolution of Hybrid Alkali Sulfate-Activated Ground-Granulated Blast Furnace Slag Cements.

作者信息

Etcheverry Juan Manuel, Yue Zengliang, Krishnan Sreejith, Villagran-Zaccardi Yury Andres, Van den Heede Philip, Dhandapani Yuvaraj, Bernal Susan Andrea, De Belie Nele

机构信息

Magnel-Vandepitte Laboratory for Structural Engineering and Building Materials, Ghent University, Technologiepark-Zwijnaarde 60, 9052 Ghent, Belgium.

School of Civil Engineering, University of Leeds, LS2 9JT Leeds, U.K.

出版信息

ACS Sustain Chem Eng. 2023 Dec 1;11(49):17519-17531. doi: 10.1021/acssuschemeng.3c05937. eCollection 2023 Dec 11.

Abstract

In this study, a hybrid alkali-activated ground-granulated cement consisting of 70% blast furnace slag (GGBFS) and 30% Portland cement (PC) activated with sodium sulfate was studied. Results were compared with those of a blended system without an activator. The addition of the activator significantly increased the kinetics and degree of reaction of these cements, particularly at early curing ages (2 days), without leading to significant changes in the phase assemblage. The main reaction product formed was an aluminum-substituted calcium silicate hydrate (C-A-S-H) type gel, with a Ca/Si ratio comparable to that of the activator-free blended cement; however, in the presence of the activator, sorption of sulfur was observed in the C-A-S-H phase. The formation of secondary phases including ettringite and Ca- or Mg-rich layered double hydroxides was also identified in these cements depending on the curing age and activation addition. This study demonstrates the effectiveness of sodium sulfate in accelerating the phase assemblage evolution in high-GGBFS-content PC-blended cements without leading to significant changes in the reaction products formed, particularly at advanced curing ages. This represents a step forward in the development of cements with a reduced clinker factor.

摘要

在本研究中,对一种由70%的粒化高炉矿渣(GGBFS)和30%的波特兰水泥(PC)组成并用硫酸钠激发的混合碱激发磨细水泥进行了研究。将结果与未添加激发剂的混合体系的结果进行了比较。激发剂的加入显著提高了这些水泥的反应动力学和反应程度,尤其是在早期养护龄期(2天),且未导致相组成发生显著变化。形成的主要反应产物是一种铝取代的硅酸钙水化物(C-A-S-H)型凝胶,其Ca/Si比与无激发剂的混合水泥相当;然而,在有激发剂存在的情况下,在C-A-S-H相中观察到了硫的吸附。根据养护龄期和激发剂添加量的不同,在这些水泥中还鉴定出了包括钙矾石和富含钙或镁的层状双氢氧化物在内的次生相的形成。本研究证明了硫酸钠在加速高GGBFS含量的PC混合水泥的相组成演变方面的有效性,且不会导致所形成的反应产物发生显著变化,尤其是在后期养护龄期。这代表了在降低熟料系数的水泥开发方面向前迈出的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92d4/10836761/c18102a70011/sc3c05937_0001.jpg

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