期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
煤氧化过程中气体的形成特征与煤自燃指标气体选择 被引量:59
1
作者 何萍 王飞宇 +1 位作者 唐修义 钱国胤 《煤炭学报》 EI CAS CSCD 北大核心 1994年第6期635-643,共9页
利用氧化模拟实验和色谱分析,结合煤岩学分析,对不同性质煤样在氧化模拟实验过程中生成气体的组成和数量进行了详细分析,提出生成气体的组成和数量在内因上主要取决于煤温、煤阶和显微组分组成3个主要因素。将煤自燃指标气体分为三... 利用氧化模拟实验和色谱分析,结合煤岩学分析,对不同性质煤样在氧化模拟实验过程中生成气体的组成和数量进行了详细分析,提出生成气体的组成和数量在内因上主要取决于煤温、煤阶和显微组分组成3个主要因素。将煤自燃指标气体分为三类,建立各类指标气体与煤温、煤阶、煤岩类型之间的数量关系。煤自燃指标气体产率随煤温上升基本上呈指数上升,但煤自燃指标气体产率与煤温相关关系曲线型式受控于煤阶和显微组分组成。不同煤阶煤应采用不同类型的煤自燃指标气体,第一类指标气体主要适用于低变质褐煤和长焰煤阶段,而第二、第三类指标气体主要适用于高、中挥发分烟煤阶段,根据指标气体与煤温相关关系以及指标气体的选择原则,分析了平庄古山矿和枣庄柴里矿煤自燃指标气体应用实践。 展开更多
关键词 自燃指标气体 煤氧化 模拟实验 煤温
在线阅读 下载PDF
综放工作面煤层自燃综合治理技术 被引量:9
2
作者 李春生 张道树 王华胜 《煤炭科学技术》 CAS 北大核心 2010年第11期74-77,89,共5页
为了解决佳新能源公司综放工作面自然发火防治问题,在对1501综放工作面自然发火危险性分析的基础上,对14和15号煤层的煤样进行了升温氧化试验,确定了一氧化碳和乙烯为该矿的煤层自燃指标气体;采用在采空区注氮CFD模拟、理论计算等方法,... 为了解决佳新能源公司综放工作面自然发火防治问题,在对1501综放工作面自然发火危险性分析的基础上,对14和15号煤层的煤样进行了升温氧化试验,确定了一氧化碳和乙烯为该矿的煤层自燃指标气体;采用在采空区注氮CFD模拟、理论计算等方法,进行采空区注氮技术研究。试验结果表明:以注氮为主,工作面上下端头密闭编织袋堵漏、工作面架间喷洒阻化剂等为辅的综合防治技术措施,可以成功治理1501综放工作面采空区自然发火危险,使工作面回风巷的CO体积分数由原来的0.008 0%降到0.001 5%,上隅角CO体积分数由0.010 0%降到0.004 0%。 展开更多
关键词 综放工作面 自然发火 注氮 自燃指标气体 一氧化碳 乙烯
在线阅读 下载PDF
氧化煤自燃特性实验研究 被引量:38
3
作者 赵兴国 戴广龙 《中国安全生产科学技术》 CAS CSCD 北大核心 2020年第6期55-60,共6页
为解决大柳塔煤矿活鸡兔井12下208综放工作面采空区存在大量氧化煤的遗煤自燃预测问题,对原煤及不同程度的氧化煤进行程序升温实验,分析研究低温氧化特性的变化规律,根据灰色理论对自燃标志气体进行优选。结果表明:原煤与氧化煤的临界... 为解决大柳塔煤矿活鸡兔井12下208综放工作面采空区存在大量氧化煤的遗煤自燃预测问题,对原煤及不同程度的氧化煤进行程序升温实验,分析研究低温氧化特性的变化规律,根据灰色理论对自燃标志气体进行优选。结果表明:原煤与氧化煤的临界温度与干裂温度相差不明显,分别在40~50℃与110~120℃之间;根据临界温度、干裂温度及其指数增长点将煤低温氧化过程分为缓慢自热(50~<90℃)、加速自热(90~<120℃)、热解裂变(120~<160℃)和热解加速(160~<200℃)4个阶段。在缓慢自热阶段以G2(0.01~<0.039)和R1(0.0015~<0.0077)为指标;在加速自热阶段以R1(0.0077~<0.0195)和G3(0.0009~<0.0037)为指标;在热解裂变阶段以烯烷比(0~<0.484)和G3(0.0037~<0.0374)为指标;在热解加速阶段以R1(0.0468~<0.0726)和烯烷比(0.484~<0.992)为指标气体。实验结果对采空区遗煤的自燃防治具有一定的指导作用。 展开更多
关键词 氧化煤 自燃 自燃特性指标气体 灰色关联
在线阅读 下载PDF
Application of a novel detection approach based on non-dispersive infrared theory to the in-situ analysis on indicator gases from underground coal fire 被引量:13
4
作者 TIAN Fu-chao LIANG Yun-tao +2 位作者 ZHU Hong-qing CHEN Ming-yi WANG Jin-cheng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1840-1855,共16页
Coal mine fires,which can cause heavy casualties,environmental damages and a waste of coal resources,have become a worldwide problem.Aiming at overcoming the drawbacks,such as a low analysis efficiency,poor stability ... Coal mine fires,which can cause heavy casualties,environmental damages and a waste of coal resources,have become a worldwide problem.Aiming at overcoming the drawbacks,such as a low analysis efficiency,poor stability and large monitoring error,of the existing underground coal fire monitoring technology,a novel monitoring system based on non-dispersive infrared(NDIR)spectroscopy is developed.In this study,first,the measurement principle of NDIR sensor,the gas concentration calculation and its temperature compensation algorithms were expounded.Next,taking CO and CH_(4) as examples,the liner correlation coefficients of absorbance and the temperature correction factors of the two indicator gases were calculated,and then the errors of concentration measurement for CO,CO_(2),CH_(4) and C_(2)H_(4) were further analyzed.The results disclose that the designed NDIR sensors can satisfy the requirements of industrial standards for monitoring the indicator gases for coal fire hazards.For the established NDIR-based monitoring system,the NDIRbased spectrum analyzer and its auxiliary equipment boast intrinsically safe and explosion-proof performances and can achieve real-time and in-situ detection of indicator gases when installed close to the coal fire risk area underground.Furthermore,a field application of the NDIR-based monitoring system in a coal mine shows that the NDIR-based spectrum analyzer has a permissible difference from the chromatography in measuring the concentrations of various indicator gases.Besides,the advantages of high accuracy,quick analysis and excellent security of the NDIR-based monitoring system have promoted its application in many coal mines. 展开更多
关键词 indicator gas coal spontaneous combustion infrared spectrometry bundle tube monitoring intrinsically safe
在线阅读 下载PDF
Experiment study of optimization on prediction index gases of coal spontaneous combustion 被引量:5
5
作者 NIU Hui-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2321-2328,共8页
The coal of Anyuan Mine has the characteristic of easy spontaneous combustion. Conventional method is difficult to predict it. Coal samples from this mine were tested in laboratory. The data obtained from laboratory d... The coal of Anyuan Mine has the characteristic of easy spontaneous combustion. Conventional method is difficult to predict it. Coal samples from this mine were tested in laboratory. The data obtained from laboratory determination were initialized for the value which was defined as "K". The ratio of each index gas and value of "K", and the ratio of combination index gases and value of "K", were analyzed simultaneously. The research results show that for this coal mine, if there is carbon monoxide in the gas sample, the phenomenon of oxidation and temperature rising for coal exists in this mine; if there is C_2H_4 in the gas sample, the temperature of coal perhaps exceeds 130 °C. If the coal temperature is between 35 °C and 130 °C, prediction and forecast for coal spontaneous combustion depend on the value of Φ(CO)/K mainly; if the temperature of coal is between 130 °C and 300 °C, prediction and forecast for coal spontaneous combustion depend on the value of Φ(C_2H_6)/Φ(C_2H_2) and Φ(C_2H_6)/K. The research results provide experimental basis for the prediction of coal spontaneous combustion in Anyuan coal mine, and have better guidance on safe production of this coal mine. 展开更多
关键词 COAL spontaneous combustion index gases PREDICTION INITIALIZATION
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部