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充填膏体胶凝材料体系的演化及硫酸盐矿坑水侵蚀对充填膏体性能的影响规律

Evolution of a Filling Paste Cementitious System and Impact Patterns of Sulfate Mine Water Erosion on Filling Paste Performance.

作者信息

Lu Yao, Wang Changxiang, Zhou Yongqiang, Mou Wenqiang, Jiang Ning

机构信息

College of Safety Science and Engineering, Anhui University of Science and Technology, Huainan 232000, China.

College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

出版信息

ACS Omega. 2024 Apr 3;9(15):17344-17353. doi: 10.1021/acsomega.3c10513. eCollection 2024 Apr 16.

Abstract

To assess the impact of sulfate mine water on filling material performance, an accelerated sulfate erosion process was used to analyze the effects of various erosion concentrations, aging periods, and cation types on the macroscopic properties of the filling paste. These properties encompassed apparent phenomena, mass changes, and alterations in the uniaxial compressive strength. Observations revealed sulfate erosion, causing the formation of white substances and salt crystals on specimen surfaces. Initially, all solution-eroded specimens exhibited increased mass and strength. Over time, specimens in 5 and 10% MgSO solutions displayed the first signs of decline, while variations in other solutions were relatively small. Increasing the erosion concentration led to greater variations in mass and strength during the initial erosion phase. Specimens in 5 and 10% MgSO solutions initially peaked in mass and compressive strength, followed by a decline, while other filling paste specimens continued slow increases. Under equivalent conditions, the MgSO solution exhibited stronger erosion than the NaSO solution. Composite erosion by NaSO and MgSO involved initial strengthening and gel pore filling, intermediate expansion and crystallization, and late-stage substantial degradation, with MgSO exhibiting a more pronounced and complex impact. Gray relational analysis ranked factors affecting mass and uniaxial compressive strength variations as erosion concentration > erosion ion type > erosion aging period. Correlation degrees for factors influencing mass variations were 0.8822, 0.8714, and 0.4754, while for factors influencing uniaxial compressive strength variations, the correlation degrees were 0.8336, 0.7943, and 0.6125, respectively.

摘要

为评估硫酸矿井水对充填材料性能的影响,采用加速硫酸盐侵蚀过程,分析不同侵蚀浓度、老化时间和阳离子类型对充填膏体宏观性能的影响。这些性能包括表观现象、质量变化和单轴抗压强度的改变。观察发现硫酸盐侵蚀导致试样表面形成白色物质和盐晶体。最初,所有经溶液侵蚀的试样质量和强度均增加。随着时间的推移,5%和10%硫酸镁溶液中的试样最先出现下降迹象,而其他溶液中的变化相对较小。在初始侵蚀阶段,侵蚀浓度增加导致质量和强度变化更大。5%和10%硫酸镁溶液中的试样质量和抗压强度最初达到峰值,随后下降,而其他充填膏体试样则持续缓慢增加。在同等条件下,硫酸镁溶液的侵蚀作用比硫酸钠溶液更强。硫酸钠和硫酸镁的复合侵蚀包括初始强化和凝胶孔隙填充、中间膨胀和结晶以及后期的大幅降解,其中硫酸镁的影响更为显著和复杂。灰色关联分析将影响质量和单轴抗压强度变化的因素排序为侵蚀浓度>侵蚀离子类型>侵蚀老化时间。影响质量变化的因素的关联度分别为0.8822、0.8714和0.4754,而影响单轴抗压强度变化的因素的关联度分别为0.8336、0.7943和0.6125。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cba3/11024973/02e2a868346c/ao3c10513_0001.jpg

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