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FTIR study of the effect of temperature and nanosilica on the nano structure of C-S-H gel formed by hydrating tricalcium silicate

机译:FTIR研究温度和纳米二氧化硅对水合硅酸三钙形成的C-S-H凝胶纳米结构的影响

摘要

Fourier transform infrared spectroscopy (FTIR) was used to explore the effect of temperature (25, 40 and 65 C) and the presence of amorphous nanosilica (nSA) on the nanostructure of the C-S-H gel generated during tricalcium silicate (C3S) hydration. Rising temperatures were shown to modify the nanostructure of C-S-H gel. The bands at around 1076 cm-1, 909 cm-1 and 540 cm-1 that appeared on the FTIR spectrum for C3S paste with rising temperatures were attributed to the formation a jennite-like structure. Moreover, irrespective of temperature, as the reaction progressed, the initial tobermorite-like C-S-H gel changed to a jennite-like structure. With the addition of nSA, the band generated at 960-970 cm -1 appeared from the first day of hydration, an indication that nanosilica accelerates C3S hydration. The presence of nSA induced no narrowing of the bands at 1076 cm-1 or 909 cm -1 at any curing time, a sign that these gels had a smaller proportion of jennite-like species than the gels in the nSA-free pastes. Finally, compositional date of C-S-H was provides. © 2013 Elsevier Ltd.
机译:傅里叶变换红外光谱(FTIR)用于研究温度(25、40和65 C)以及非晶态纳米二氧化硅(nSA)的存在对硅酸三钙(C3S)水化过程中生成的C-S-H凝胶纳米结构的影响。显示出升高的温度改变了C-S-H凝胶的纳米结构。随着温度升高,C3S糊剂在FTIR谱上出现的大约1076 cm-1、909 cm-1和540 cm-1的谱带归因于形成了菱镁矿状结构。此外,不管温度如何,随着反应的进行,最初的辉光石状的C-S-H凝胶变成了菱镁矿状的结构。通过添加nSA,从水合第一天开始,在960-970 cm -1处出现了能带,这表明纳米二氧化硅促进了C3S水合。 nSA的存在在任何固化时间都不会引起1076 cm-1或909 cm -1处的谱带变窄,这表明这些凝胶比不含nSA的糊剂中的凝胶状晶种比例更小。最后,提供了C-S-H的组成日期。 ©2013爱思唯尔有限公司。

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