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氧化煤矸石二次氧化行为及微观特征研究

Study on the secondary oxidation behavior and microscopic characteristics of oxidized coal gangue.

作者信息

Wang Chenguang, Xin Haihui, Wang Deming, Qi Zhangfan, Zhang Kang, Zhang Wei, Hou Zhenhai

机构信息

School of Safety Engineering, China University of Mining & Technology, Xuzhou, 221116, Jiangsu, China.

出版信息

Environ Sci Pollut Res Int. 2024 May;31(23):33867-33884. doi: 10.1007/s11356-024-33466-9. Epub 2024 May 1.

Abstract

Spontaneous combustion of coal gangue (CG) hills has caused varieties of secondary disasters that seriously endanger the ecological environment of the world. The emission law of index gases and their oxidation kinetics during the secondary oxidation process of CG with different ranks of oxidation were studied by using the temperature programmed device and online mass spectrometer (MS). Fourier transform infrared spectroscopy (FTIR) was used to reveal the changes of the CG internal active functional groups. The results showed that the energy required for the combustion of CG with low rank of pre-oxidation was significantly lower than that of the raw sample. However, as the oxidation rank increased, due to amounts of volatile components were released in the process of oxidation reaction, the CG in the combustion process of the emission of index gases and its oxygen consumption rate gradually reduced; the rapid oxidation stage shifted to the direction of the high temperature. In this study, the risk of spontaneous combustion of CG after oxidation at 80 ℃ under 3% oxygen concentration was the strongest. The results of this paper are of great guiding significance for exploring the spontaneous combustion characteristics of CG hills and their prevention by traditional covering method.

摘要

煤矸石山自燃引发了各种次生灾害,严重危及全球生态环境。利用程序升温装置和在线质谱仪(MS)研究了不同氧化程度的煤矸石二次氧化过程中指标气体的排放规律及其氧化动力学。采用傅里叶变换红外光谱(FTIR)揭示煤矸石内部活性官能团的变化。结果表明,预氧化程度低的煤矸石燃烧所需能量明显低于原样。然而,随着氧化程度的增加,由于氧化反应过程中释放出大量挥发性成分,煤矸石在燃烧过程中指标气体的排放量及其耗氧率逐渐降低;快速氧化阶段向高温方向移动。本研究中,煤矸石在80℃、3%氧气浓度下氧化后自燃风险最强。本文研究结果对探究煤矸石山自燃特性及其传统覆盖防治方法具有重要指导意义。

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