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煤矸石粉改性粉煤灰基地质聚合物的性能

Properties of Gangue Powder Modified Fly Ash-Based Geopolymer.

作者信息

Zhang Tianhao, Yang Zhenghui, Zhang Dongsheng, Yang Qiuning

机构信息

School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan 750021, China.

Research Group RecyCon, Department of Civil Engineering, Katholieke Universiteit Leuven, Campus Bruges, 8200 Bruges, Belgium.

出版信息

Materials (Basel). 2023 Aug 21;16(16):5719. doi: 10.3390/ma16165719.

Abstract

The environmental and economic problems caused by gangue accumulation continue to worsen. Therefore, the implementation of a cost-effective method for utilizing gangue resources is urgent. In this study, different gangue powder (GP) contents (0%, 10%, 20%, 30%, 40%, and 50%) for mechanical-thermal activation were used to modify a fly ash-based geopolymer (FAG). Further, the effect of GP was revealed by investigating the setting time, fluidity, porosity, water absorption rate, mechanical properties, drying shrinkage, and microstructure. Results showed that the addition of GP reduced the fluidity and setting time of gangue powder-fly ash-base geopolymer (GPFAG), improved density, and decreased the water absorption rate of GPFAG. Moreover, its mechanical properties gradually improved. Compared with GPFAG0 (FAG with 0% GP), the 28-d compressive and flexural strengths of GPFAG50 (FAG with 50% GP) increased by 246.4% and 136.8%, respectively. The incorporation of GP increased the drying shrinkage. The results of XRD and FTIR analyses showed that the addition of GP increased the production of amorphous silica-aluminate gels, such as N-S-A-H and C-S-A-H. Moreover, strong Si-O-T vibrational peaks appeared in the range 743-1470 cm, characterizing the GPFAG strength and reaction degree.

摘要

煤矸石堆积所造成的环境和经济问题持续恶化。因此,迫切需要实施一种具有成本效益的煤矸石资源利用方法。在本研究中,采用不同煤矸石粉(GP)含量(0%、10%、20%、30%、40%和50%)进行机械-热活化,以改性粉煤灰基地质聚合物(FAG)。此外,通过研究凝结时间、流动性、孔隙率、吸水率、力学性能、干燥收缩率和微观结构,揭示了GP的作用效果。结果表明,GP的加入降低了煤矸石粉-粉煤灰基地质聚合物(GPFAG)的流动性和凝结时间,提高了密度,并降低了GPFAG的吸水率。此外,其力学性能逐渐改善。与GPFAG0(含0% GP的FAG)相比,GPFAG50(含50% GP的FAG)的28天抗压强度和抗折强度分别提高了246.4%和136.8%。GP的掺入增加了干燥收缩率。XRD和FTIR分析结果表明,GP的加入增加了非晶态硅铝酸盐凝胶如N-S-A-H和C-S-A-H的生成量。此外,在743-1470 cm范围内出现了强Si-O-T振动峰,表征了GPFAG的强度和反应程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/469a/10456960/74a11668cc25/materials-16-05719-g001.jpg

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