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Comparison of red mud and coal gangue blended geopolymers synthesized through thermal activation and mechanical grinding preactivation

机译:热活化和机械研磨预活化合成的赤泥和煤石共混地质聚合物的比较

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摘要

Two binary geopolymers were prepared from the mixture of low-calcium bayer red mud and kaolinite-based coal gangue. The geopolymers were synthesized using two affordable and feasible methods mainly differed in preactivation and curing processes. The influence of the mix ratio of raw material and alkali activator on the compressive strength properties of two series geopolymers was investigated, and the optimal specimens of which were then determined. Furthermore, a comparative research on the mineral composition, crystal structure and microstructure of the superior geopolymers was performed through XRD, TG-DTA, and SEM-EDXS. Results revealed that GR8G2 was the optimum sample for the series geopolymer I and CR9G1 for geopolymer II. The compressive strength of all samples ranges from 15.05 to 30.25 MPa, the geopolymer synthesized from mechanical grinding preactivation displayed better developed strength. Mineral composition and microstructure studies indicated that both the final products are consist of amorphous silica-alumina-based geopolymer gels and some impurity fillers. This study showed that the two geopolymer synthesis methods for red mud and coal gangue were feasible, and the geopolymers may be applied as a new building material. Further studies are necessary to determine the optimal application parameters. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由低钙拜耳赤泥和高岭石基煤石的混合物制备了两种二元地质聚合物。使用两种可负担得起且可行的方法合成了地质聚合物,主要区别在于预活化和固化过程。研究了原料和碱活化剂的混合比对两种系列地质聚合物抗压强度性能的影响,并确定了最佳试样。此外,还通过XRD,TG-DTA和SEM-EDXS对优质地质聚合物的矿物组成,晶体结构和微观结构进行了比较研究。结果表明,GR8G2是系列I的最佳样品,CR9G1是II的最佳样品。所有样品的抗压强度为15.05至30.25 MPa,通过机械研磨预活化合成的地聚合物显示出更好的显影强度。矿物组成和微观结构研究表明,两种最终产品均由无定形二氧化硅-氧化铝基地质聚合物凝胶和一些杂质填料组成。研究表明,赤泥和煤石两种地聚合物合成方法是可行的,地聚合物可以作为一种新型建筑材料。为了确定最佳的应用参数,还需要进一步的研究。 (C)2017 Elsevier Ltd.保留所有权利。

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