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CaO-AlO-SiO玻璃的CaO/SiO摩尔比对其在碱激发体系中的结构和反应活性的影响。

The effect of CaO/SiO molar ratio of CaO-AlO-SiO glasses on their structure and reactivity in alkali activated system.

作者信息

Kucharczyk Sylwia, Sitarz Maciej, Zajac Maciej, Deja Jan

机构信息

AGH University of Science and Technology, Krakow, 30-059, Poland.

HeidelbergCement Technology Center GmbH, Oberklamweg 2-4, 69181 Leimen, Germany.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2018 Apr 5;194:163-171. doi: 10.1016/j.saa.2018.01.018. Epub 2018 Jan 5.

DOI:10.1016/j.saa.2018.01.018
PMID:29331818
Abstract

The influence of CaO/SiO molar ratio of calcium aluminosilicate glasses on resulting structure and reactivity was investigated. Chemical compositions of glasses were chosen to mimic the composition of the fly ash and slag amorphous phase. Understanding the reactivity of these materials is of high importance allowing further development of the composite cements to limit the environmental footprint of cement industry. Fourier transform infrared spectroscopy (FTIR) and Raman spectroscopy were employed to examine the structure of glasses. Reactivity of the glasses was analyzed on paste samples after 1, 2, 7, 28 and 90days of curing by means of thermogravimetry (TGA), X-ray diffraction (XRD) and FTIR. Spectroscopic results emphasize dependence of the structure on the chemical composition of the glasses. The higher CaO/SiO the more depolymerized the glass network is, though there is no direct correlation with the reactivity. Significant differences in reactivity is observed primarily between the glasses of peraluminous (CaO/AlO<1) and percalcic region (CaO/AlO>1). Amongst the pastes made of glasses of percalcic region a higher degree of reaction at later ages is observed for the paste containing glass of lower CaO/SiO molar ratio. This is due to both degree of depolimerization and the nature of these glasses (pozzolanic and hydraulic materials). No difference of degree of reaction has been observed within the glasses of CaO/SiO lower than 1.

摘要

研究了钙铝硅酸盐玻璃的CaO/SiO摩尔比对其最终结构和反应活性的影响。选择玻璃的化学成分以模拟粉煤灰和矿渣非晶相的组成。了解这些材料的反应活性对于进一步开发复合水泥以限制水泥工业的环境足迹至关重要。采用傅里叶变换红外光谱(FTIR)和拉曼光谱来研究玻璃的结构。通过热重分析(TGA)、X射线衍射(XRD)和FTIR对养护1、2、7、28和90天后的浆体样品进行玻璃反应活性分析。光谱结果强调了结构对玻璃化学成分的依赖性。CaO/SiO越高,玻璃网络的解聚程度越高,尽管与反应活性没有直接相关性。主要在过铝质(CaO/Al2O3<1)和过钙质区域(CaO/Al2O3>1)的玻璃之间观察到反应活性的显著差异。在由过钙质区域的玻璃制成的浆体中,对于含有较低CaO/SiO摩尔比玻璃的浆体,在后期观察到更高的反应程度。这是由于解聚程度和这些玻璃的性质(火山灰质和水硬性材料)所致。在CaO/SiO低于1的玻璃中未观察到反应程度的差异。

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