| 注册
首页|期刊导航|煤矿安全|烟煤低温氧化过程中CO生成特性及溯源分析

烟煤低温氧化过程中CO生成特性及溯源分析

王月红 刘一武 白阳 薛涛

煤矿安全2026,Vol.57Issue(5):36-48,13.
煤矿安全2026,Vol.57Issue(5):36-48,13.DOI:10.13347/j.cnki.mkaq.20241748

烟煤低温氧化过程中CO生成特性及溯源分析

Characteristics and source tracing analysis of CO generation during low-temperature oxidation of bituminous coal

王月红 1刘一武 1白阳 1薛涛2

作者信息

  • 1. 华北理工大学 应急管理与安全工程学院,河北 唐山 063210||河北省矿业开发与安全技术重点实验室,河北 唐山 063210
  • 2. 开滦(集团)有限责任公司东欢坨矿业分公司,河北,唐山 064002
  • 折叠

摘要

Abstract

Carbon monoxide(CO),as a crucial indicator gas for predicting the early spontaneous combustion of coal,is mainly de-rived from the spontaneous combustion of residual coal in gobs.In North China,bituminous coal reserves are abundant,and due to their low metamorphism degree,such coal is more prone to spontaneous combustion and tends to oxidize to produce CO gas at low temperatures.For instance,in the gobs of some coal mines,even though there are no signs of coal spontaneous combustion,the CO concentration at the working face continuously exceeds the limit,which leads to misjudgments in the prediction and early warning of early coal spontaneous combustion.To address this problem,a combined method of experimental research and theoretical analysis was adopted.Crushing experiments were carried out on two types of bituminous coal with different metamorphism degrees(gas coal and coking coal)under nitrogen and air atmospheres to simulate the crushing process during working face mining,and analyze CO volume fraction and coal sample temperature changes.Furthermore,low-temperature water bath-gas chromatography experiments,low-temperature nitrogen adsorption experiments,and Fourier transform infrared spectroscopy(FTIR)experiments were conducted to analyze the abnormal sources and generation characteristics of CO from both macroscopic and microscopic perspectives.The res-ults show that:in an air atmosphere,the volume fractions of CO generated by the crushing of gas coal and coking coal both exhib-ited an exponential growth trend,reaching maximum values of 55.62×10-6 and 17.83×10-6,respectively,whereas in a nitrogen atmo-sphere,the volume fractions of CO generated by the crushing of both coals did not exceed 2×10-6;during the low-temperature water bath oxidation process,the maximum volume fractions of CO produced by gas coal and coking coal reached 2 295×10-6 and 527×10-6,respectively;the results of low-temperature nitrogen adsorption experiments indicated that during the low-temperature wa-ter bath process,the average pore diameter of gas coal increased from 11.381 nm to 17.586 nm,and the specific surface area in-creased by 35.8%(from 2.179 m2/g to 2.961 m2/g),the proportion of macropores in gas coal increased from 18%to 23%,and the proportion of micropores decreased from 12%to 3%;the average pore diameter of coking coal increased from 11.615 nm to 14.694 nm,and the specific surface area increased by 37.9%(from 2.803 m2/g to 2.867 m2/g),the proportion of macropores in coking coal increased from 12%to 20%,and the proportion of micropores decreased from 23%to 7%;Fourier transform infrared spectroscopy experiments further analyzed the oxidation reaction process of functional groups such as aliphatic hydrocarbons under low-temperat-ure conditions,revealing that CO is mainly derived from the thermal decomposition of carbonyl groups.

关键词

煤自燃/CO/低温氧化/煤体破碎/官能团/标志气体

Key words

coal spontaneous combustion/CO/low-temperature oxidation/coal crushing/functional group/indicator gas

分类

矿业与冶金

引用本文复制引用

王月红,刘一武,白阳,薛涛..烟煤低温氧化过程中CO生成特性及溯源分析[J].煤矿安全,2026,57(5):36-48,13.

基金项目

国家自然科学基金资助项目(51504077,51404086) (51504077,51404086)

河北省自然科学基金资助项目(E2022209101) (E2022209101)

煤矿安全

1003-496X

访问量0
|
下载量0
段落导航相关论文