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地质聚合反应的前20小时:基于粉煤灰的地质聚合物的原位小角X射线散射研究

The First 20 Hours of Geopolymerization: An in Situ WAXS Study of Flyash-Based Geopolymers.

作者信息

Williams Ross P, van Riessen Arie

机构信息

John de Laeter Centre, Curtin University of Technology, GPO Box U1987, Perth WA 6845, Australia.

出版信息

Materials (Basel). 2016 Jul 8;9(7):552. doi: 10.3390/ma9070552.

Abstract

This study followed the first 20 h of flyash geopolymerization at 70 °C using time resolved Wide Angle X-ray Scattering (WAXS). The extent of dissolution of the amorphous phase of the flyash was determined to range from 29% to 54% for the different formulations trialed. The dissolution rate of the flyash significantly reduced after the first 5 h for all samples. During the formation stage of the geopolymer there were significant temporal variations in the chemistry of the dissolved solution due to the rate of flyash dissolution, with a relative standard deviation of 20%, 57% and 24% for the Si/Al, Na/Al and H/Si ratios, respectively. Utilizing the Power Law, scattering in the low angle region of the WAXS pattern combined with the geopolymer peak area yielded a measure which correlated with the compressive strength-providing a new method to measure the flyash dissolution and geopolymer formation processes independently. The evolution of several zeolite-like phases was followed, noting there are different formation mechanisms involved even within the same sample. Four samples were examined with compressive strengths ranging from 14(2)-50(9) MPa, each was synthesized with flyash from Collie Power Station (Western Australia) activated with sodium silicate solution of varying concentrations.

摘要

本研究利用时间分辨广角X射线散射(WAXS)跟踪了70℃下粉煤灰地质聚合反应的前20小时。对于试验的不同配方,粉煤灰非晶相的溶解程度确定为29%至54%。所有样品在最初5小时后,粉煤灰的溶解速率显著降低。在地质聚合物的形成阶段,由于粉煤灰的溶解速率,溶解溶液的化学性质存在显著的时间变化,硅铝比、钠铝比和氢硅比的相对标准偏差分别为20%、57%和24%。利用幂律,WAXS图案低角度区域的散射与地质聚合物峰面积相结合,得出了一种与抗压强度相关的测量方法,为独立测量粉煤灰溶解和地质聚合物形成过程提供了一种新方法。跟踪了几种类沸石相的演变,注意到即使在同一样品中也涉及不同的形成机制。研究了四个样品,其抗压强度范围为14(2)-50(9)MPa,每个样品均由来自科利发电站(西澳大利亚)的粉煤灰与不同浓度的硅酸钠溶液活化合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38a4/5456921/ca73b7bdec8f/materials-09-00552-g001.jpg

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