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Impact of chemical variability of ground granulated blast-furnace slag on the phase formation in alkali-activated slag pastes

机译:磨碎的高炉矿渣化学变异性对碱活化矿渣糊中相形成的影响

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The influence of ground granulated blast-furnace slag (GGBS) chemical variability on phase formation in sodium hydroxide-activated GGBS pastes has been investigated using X-ray total scattering and subsequent pair distribution function (PDF) analysis. Crystalline phase identification based on reciprocal space analysis reveals that despite large chemical variations in the neat GGBSs the secondary reaction products are quite similar, with the majority of pastes containing a hydrotalcite-like phase. However, PDF analysis reveals considerable differences in short range atomic ordering of the main calcium-sodium aluminosilicate hydrate (C-(N)-A-S-H) gel phase in the pastes. Quantitative analysis of these local structural differences in conjunction with published PDF data identifies the important role calcium plays in dictating the atomic structure of disordered silicate-rich phases in cementitious materials. This study serves as a crucial step forward in linking GGBS chemistry with phase formation in alkali-activated GGBS pastes, revealing key information on the local structure of highly-disordered cementitious materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用X射线总散射和随后的对分布函数(PDF)分析研究了磨碎的高炉矿渣(GGBS)化学变异性对氢氧化钠活化GGBS糊中相​​形成的影响。基于相互空间分析的结晶相鉴定表明,尽管纯净的GGBS中存在很大的化学变化,但次级反应产物却非常相似,大多数糊状物都含有类水滑石。但是,PDF分析显示糊剂中主要钙钠铝硅酸盐水合物(C-(N)-A-S-H)凝胶相在短程原子有序方面存在很大差异。对这些局部结构差异的定量分析与已发表的PDF数据相结合,确定了钙在决定水泥材料中无序富含硅酸盐的相的原子结构中所起的重要作用。这项研究是将GGBS化学与碱活化GGBS浆料中相形成联系起来的关键一步,揭示了有关高度无序胶凝材料局部结构的关键信息。 (C)2016 Elsevier Ltd.保留所有权利。

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