Experimental studies on the effects of thermal damage in coal-derived mudstones caused by high temperatures

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Yanjun Shen, Ziyi Li, Cheng Peng, Bohan Yang, Tianchi Ma
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Abstract

The study of the thermophysical properties of coal bed mudstone at high temperatures is important for the development of compartmentalized in-situ gasification of underground coal, geothermal mining, and other engineering applications. To this end, this study analyzes the changes in the compressive strength, mineral composition, and microstructure of coal-derived mudstone when exposed to high temperatures through the use of systematic tests such as uniaxial compression and wave velocity test as well as NMR, XRD, and SEM analyses. The influence of temperature on the compressive strength of mudstones was determined, and mechanisms governing the changes in the compressive strength and thermal damage in coal-based mudstone under high-temperature conditions were revealed. The results show that the compressive strength of coal-derived mudstone initially increases and then decreases with an increase in temperature. Between room temperature and 200℃, the mudstone is subjected to thermal expansion, the compactness of the sample is enhanced and the compressive strength is improved. Between 200–800℃, the porosity of the mudstone greatly increases greatly. In addition, the number of pores and the average pore size increases, and fractures in the mineral surfaces begin to open, expand, and interconnect, compressive strength began to deteriorate. Furthermore, the mineralogy of the mudstones changes under high-temperature conditions, primarily expressed in the decomposition of kaolinite and the formation of illite as the temperatures increase. In addition, quartz undergoes a polymorphic transition, resulting in changes to the angle between Si-O tetrahedra in quartz crystals change accompanied by significant volume expansion. In addition, the breaking of O-H bonds in kaolinite results in the collapse of its crystal structure, resulting in severe mineral damage and the deterioration of the compressive strength of the mudstone.

Abstract Image

关于高温对煤系泥岩造成热损伤的影响的实验研究
研究煤层泥岩在高温下的热物理性质,对于开发地下煤的分区原地气化、地热开采和其他工程应用非常重要。为此,本研究通过单轴压缩和波速测试等系统测试以及核磁共振、X 射线衍射和扫描电镜分析,分析了煤层泥岩在高温下的抗压强度、矿物成分和微观结构的变化。确定了温度对泥岩抗压强度的影响,揭示了高温条件下煤系泥岩抗压强度变化和热损伤的机理。结果表明,随着温度的升高,煤系泥岩的抗压强度先增大后减小。在室温至 200℃之间,泥岩受到热膨胀,样品的致密性增强,抗压强度提高。在 200-800℃ 之间,泥岩的孔隙率大大增加。此外,孔隙数量和平均孔径增大,矿物表面的裂缝开始张开、扩展并相互连接,抗压强度开始下降。此外,泥岩的矿物学在高温条件下也会发生变化,主要表现为随着温度的升高,高岭石分解,伊利石形成。此外,石英发生了多晶型转变,导致石英晶体中 Si-O 四面体之间的角度发生变化,并伴随着显著的体积膨胀。此外,高岭石中 O-H 键的断裂导致其晶体结构坍塌,造成严重的矿物破坏和泥岩抗压强度下降。
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来源期刊
Acta Geodaetica et Geophysica
Acta Geodaetica et Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.10
自引率
7.10%
发文量
26
期刊介绍: The journal publishes original research papers in the field of geodesy and geophysics under headings: aeronomy and space physics, electromagnetic studies, geodesy and gravimetry, geodynamics, geomathematics, rock physics, seismology, solid earth physics, history. Papers dealing with problems of the Carpathian region and its surroundings are preferred. Similarly, papers on topics traditionally covered by Hungarian geodesists and geophysicists (e.g. robust estimations, geoid, EM properties of the Earth’s crust, geomagnetic pulsations and seismological risk) are especially welcome.
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