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Experimental Study on Utilization of Quartz Mill Tailings as a Filler to Prepare Geopolymer

机译:利用石英尾矿填料制备地聚合物的实验研究。

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Quartz mill tailings are produced in a huge amount per year in China. Therefore, now there is an urgent demand for utilization of the quartz mill. In the present research, the quartz mill tailings were used as a filler for metakaolin-based geopolymer to restraint the shrinkage and improve mechanical property. This work studied the influence of quartz mill tailings on the properties of geopolymer prepared by alkali-activated metakaolin. Performance of geopolymer incorporated with quartz mill tailings were addressed in terms of workability, compressive and flexural strength, and drying shrinkage at different ages. Further, X-ray Diffraction, Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FTIR) and Mercury Intrusion Porosimetry (MIP) were applied to investigate the relevant microstructure. The results indicated that addition of quartz mill tailings increased the viscosity of the paste, and meanwhile decreased the flowability of geopolymer. Up to 20% of the tailings can replaces metakaolin to prepare geopolymer without a negative effect on the mechanical property. Up to 30% of quartz mill tailings had a role to decrease the drying shrinkage. Besides, weight loss ratio of geopolymer decreased gradually with increasing dosage of the quartz mill tailings. Addition of the quartz mill tailings did not change the mineral composition of alkali-activated metakaolin, and meanwhile the amorphous or semi-crystalline phase has been found. MIP and FTIR results showed that moderate addition of quartz mill tailings optimized the microstructure of geopolymer. Therefore, quartz mill tailings can replace metakaolin up to 20% to prepare geopolymer.
机译:中国每年生产大量的石英磨尾矿。因此,现在迫切需要利用石英磨。在本研究中,将石英磨尾矿用作偏高岭土基聚合物的填料,以抑制收缩并改善机械性能。这项工作研究了石英磨尾矿对碱活化偏高岭土制备的地聚合物的性能的影响。从可加工性,抗压强度和抗折强度以及不同年龄下的干燥收缩率方面考虑了掺入石英磨尾矿的地质聚合物的性能。此外,X射线衍射,扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR)和汞侵入孔隙率法(MIP)被用于研究相关的微观结构。结果表明,添加石英磨尾矿会增加浆料的粘度,同时降低地质聚合物的流动性。多达20%的尾矿可以代替偏高岭土制备地聚合物,而对机械性能没有负面影响。多达30%的石英磨尾矿具有减少干燥收缩的作用。此外,随着石英磨尾矿用量的增加,地聚合物的失重率逐渐降低。添加石英磨尾矿并没有改变碱活化偏高岭土的矿物成分,同时发现了非晶态或半结晶相。 MIP和FTIR结果表明适度添加石英磨尾矿可优化地质聚合物的微观结构。因此,石英磨尾矿可以替代高达20%的偏高岭土来制备地质聚合物。

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