Damage Time-Dependent Characteristics and Failure Mechanism of Limestone with Different Mineral Compositions Under Acid Hydro-Chemical Solution Erosion

IF 0.9 4区 材料科学 Science of Advanced Materials Pub Date : 2023-06-01 DOI:10.1166/sam.2023.4419
Y. Yan, W. Ding, Guojiang Liu, Hongyi Wang, Tengyu Ma
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Abstract

Taking two types of limestone with different mineral compositions as research objects, we conducted experiments on the mass, longitudinal wave velocity, ion concentration of solution, fracture morphology, and micromorphology of two types of limestone specimens eroded by acidic hydro-chemical solution. We investigated specimens’ damage time-dependent physical properties, dissolution, structure, discussing mineral composition effects and destruction. Results show that the mass loss rate of two types of limestone specimens eroded by acidic hydro-chemical solution increases with the increase of immersion time in a power function, and the longitudinal wave velocity decreases and then fluctuates in a small range. The specimen fracture degree increases with the increase of the immersion time, and the rock micro-structure changes from dense and uniform into loose and porous. The mass, the longitudinal wave velocity, the fracturing morphology, and damage to microscopic morphology of specimens increase with the increase of solution ion concentration. The acid rock reaction rate of limestone A is lower than that of limestone B, while the hydrolysis reaction rate is higher. The mass loss rate, the longitudinal wave velocity loss rate, the ion concentration, and the damage degree of the macro-and micro-structure of limestone A are higher than that of limestone B.
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不同矿物成分石灰石在酸性水化学溶液侵蚀下的损伤时效特征及破坏机制
以两种不同矿物成分的石灰石为研究对象,对两种石灰石试样在酸性水化学溶液侵蚀下的质量、纵波速度、溶液离子浓度、断口形貌和微观形貌进行了实验研究。我们研究了试样的损伤时间相关物理性质、溶解、结构,讨论了矿物成分的影响和破坏。结果表明,酸性水化学溶液侵蚀的两种石灰石试样的质量损失率随浸泡时间的增加呈幂函数关系,纵波速度先减小后在小范围内波动。试样的断裂程度随着浸泡时间的增加而增加,岩石微观结构由致密均匀变为疏松多孔。随着溶液离子浓度的增加,试样的质量、纵波速度、破裂形态和对微观形态的损伤都增加。石灰石A的酸性岩石反应速率低于石灰石B,而水解反应速率较高。石灰石A的质量损失率、纵波速度损失率、离子浓度以及宏观和微观结构的损伤程度均高于石灰石B。
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来源期刊
Science of Advanced Materials
Science of Advanced Materials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
11.10%
发文量
98
审稿时长
4.4 months
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