会议论文详细信息
5th Annual International Conference on Material Science and Environmental Engineering
Experimental Study of Goaf Filling Materials Based on Red Mud
材料科学;生态环境科学
Mu, Mangen^1,2 ; Gao, Xiaozhen^1 ; Guo, Taoming^1 ; Hu, Xinping^1
Shanxi Institute of Technology, Yangquan, Shanxi, China^1
Department of Geological and Environmental Engineering, Development Zone, 1 Xueyuan Road, Yangquan City
045000, China^2
关键词: Control variable;    Dense structures;    Desulfurization gypsums;    Excitation system;    Hydration products;    Hydration reaction;    Material strength;    Technical specifications;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/301/1/012055/pdf
DOI  :  10.1088/1757-899X/301/1/012055
来源: IOP
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【 摘 要 】

Red mud as soild waste is difficult to treatment. Goaf filling materials can make a large use of red mud. By the experimental study,we find that the red mud, fly ash, ground slag and desulfida-tion gypsum can be used to make goaf filling materials based on the principle of alkali excitation and metalion stability.Through the control variable method, we find that the optimal proportion of goaf filling materials based on red mud is red mud 55%, fly ash 30%, cement 7.5%, fly ash 2.5%, desulfurization gypsum 5%, admixture 1%, and water solid ratio=1:1.2.The 28days final material strength was 2.0 MPa,which achives the technical specification requirements.Through the test of SEM, XRD and IR, it is indicated that the strength formation of goaf filling material based on red mud is from the unformed linking hydration products of amorphous alkali excitation system. With curing time from 3 to 7 days, the unformed linking hydration products grown a lot of vitreous hydration products. When hydration reaction basicly finished after 28 days, the hydration products have developed into a large volume of massive vitreous with an extremely dense structure. The Ca2SiO3mineral phase is significantly reduced, which is participate in hydration reactions. The decrease of Ca2SiO3indicates that the Si-O bond in the system have been ruptured and reorganized.

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