期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
褐煤矿区弱胶结砂岩巷道支护技术研究 被引量:4
1
作者 范明建 秦旭卫 +2 位作者 林健 韩永富 张辉 《煤炭科学技术》 CAS 北大核心 2014年第4期5-8,共4页
为解决褐煤矿区弱胶结砂岩巷道变形量大的难题,在地质力学测试、黏土矿物成分分析、可锚性试验研究的基础上,提出了强力承压拱、全断面及时支护、全长预应力锚固、强力护表及预应力有效扩散等巷道支护措施,实现了对褐煤矿区弱胶结砂岩... 为解决褐煤矿区弱胶结砂岩巷道变形量大的难题,在地质力学测试、黏土矿物成分分析、可锚性试验研究的基础上,提出了强力承压拱、全断面及时支护、全长预应力锚固、强力护表及预应力有效扩散等巷道支护措施,实现了对褐煤矿区弱胶结砂岩巷道强力锚网索一次支护。结果表明:高预紧力强力锚杆支护系统取消了架棚支护,降低了支护成本,减轻了劳动强度,巷道整体收敛率控制在3%以内;巷道两帮最大移近量为55 mm,顶底板最大移近量为38 mm。 展开更多
关键词 弱胶结砂岩 褐煤矿区 高预紧力全长锚固 围岩稳定性
下载PDF
Effect of temperature and stress on molecular structure and carbon monoxide generation of lignite from Kailuan mining area 被引量:2
2
作者 Xiao Cangyan Wei Chongtao +1 位作者 Guo Li Wen Shen Jian 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第3期437-441,共5页
In order to analyze the origin of carbon monoxide(CO) in coal seams, stress–strain experiments under temperature of 50, 150 and 250 °C were conducted using lignite from Kailuan mining area. Fourier transform inf... In order to analyze the origin of carbon monoxide(CO) in coal seams, stress–strain experiments under temperature of 50, 150 and 250 °C were conducted using lignite from Kailuan mining area. Fourier transform infrared spectroscopy and elemental analysis were carried out before and after deformation of the samples. The results indicated that CO generated at 150 and 250 °C; the gas component was mostly oxygen(O_2), with small amount of carbon dioxide(CO_2), methane(CH_4) and hydrogen(H_2). At 50 °C, O_2 and a little CO_2 were observed and no CO was found. The carbon content of the coal samples increased slightly after deformation, and the oxygen content, H/C ratio, and O/C ratio decreased. The molecular structure of coal displayed different evolution characteristics at various temperatures. At 50 and 150 °C, the falling off of side chains, broken of ether bond and directional realignment of the aliphatic chains resulting in the formation of long chains were the main performance of coal molecular structure evolution. While at 250 °C, the side chains fell off and short chains formed. Furthermore, at both 150 and 250 °C, condensed degree of aromatic ring increased. Under the action of temperature and pressure, CO forms in two ways.The first is that ether bond breaks, oxygen and carbon atoms combine together and forms CO, or O_2 forming in the broken of ether–oxygen bond leads to the oxidation of free radicals and resulting in the formation of CO. And the second is that CO derives from falling off of C=O group. 展开更多
关键词 Lignite Molecular structure Carbon monoxide generation Deformation Temperature
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部