全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
煤炭工程  2013 

乏风流速与燃烧温度之间关系的实验研究

DOI: 10.11799/ce201308096, PP. 126-128

Keywords: 矿井乏风,极低浓度,高温氧化,高温炉膛

Full-Text   Cite this paper   Add to My Lib

Abstract:

通过配置浓度为0.75%的极低浓度甲烷来模拟矿井乏风,使0.75%浓度的甲烷以不同的速度通过不同温度高温炉膛,收集炉膛排除的气体,并对收集气体进行测试,以得到矿井乏风高温氧化的条件和规律。实验通过调整进入炉膛的乏风流速和炉膛温度以得到乏风在不同流速不同温度下的氧化情况。结果表明,相同浓度的乏风以不同流速通过高温炉膛时,其流动速度越大其完全氧化所需要的炉膛温度越高;其流动速度越小其开始氧化所需的温度越低;

References

[1]  Wang yi-kun,liu yin-he,che de-fu。Study on characteristics of ventilatum air methane
[2]  mines [J]. Industrial Safety and Dust Control,2002,28(3): 3-5.
[3]  478.
[4]  Lv yuan,jiang fan,xiao yunhan。Experimental study of coal mine ventilation air methane
[5]  Mattus R. The world’s large scale VAM power plant[A].2nd Annual Methane to Markets
[6]  Partnership Meeting[C].Buenos Aires,2007.
[7]  Zhou Xian. Experiment study of coal mine ventilation air methane oxidation[D]. Beijing:
[8]  Institute of Engineering Thermophysics Chinese Academy of Sciences, 2008
[9]  王鑫阳.矿井乏风回收利用技术研究[D].辽宁:辽宁工程技术大学,2008(06).
[10]  陈宜亮,马晓钟,魏化兴.煤矿通风瓦斯氧化技术及氧化热利用方式[J].中国煤层气,2007,4(4):27-30.
[11]  Chen Yiliang,Ma Xiaozhong,Wei Huaxing. Methane oxidation technology for VAM and mode of
[12]  Wang yi-kun,liu yin-he,che de-fu。Study on characteristics of ventilatum air methane
[13]  utilization of oxidation heat[J]. China Coalbed Methane, 2007,4(4):27-30.
[14]  processing system[J].Journal of Engineering Thermophysics,2011,32(1):169-172.
[15]  thermal reverse - flow reactor[J]. Journal of China Coal Society,2009,34(11):1 475-1
[16]  478.
[17]  陈宜亮,马晓钟,魏化兴.煤矿通风瓦斯氧化技术及氧化热利用方式[J].中国煤层气,2007,4(4):27-30.
[18]  Lv yuan,jiang fan,xiao yunhan。Experimental study of coal mine ventilation air methane
[19]  Chen Yiliang,Ma Xiaozhong,Wei Huaxing. Methane oxidation technology for VAM and mode of
[20]  Zheng Bin,Liu Yongqi,Liu Ruixiang, et al. Oxidation of coal mine ventilation airmethane in
[21]  oxidization[J]Journal of China Coal Society,2011,36(6):973-977.
[22]  Mattus R. The world’s large scale VAM power plant[A].2nd Annual Methane to Markets
[23]  吕元,姜凡,肖云汉.煤矿通风瓦斯甲烷热氧化装置实验研究[J].煤炭学报,2011,36(6):973-977.
[24]  Partnership Meeting[C].Buenos Aires,2007.
[25]  周娴. 煤矿乏风低浓度甲烷氧化处理实验研究[D]. 北京:中国科学院工程热物理研究所,2008.
[26]  oxidization[J]Journal of China Coal Society,2011,36(6):973-977.
[27]  Zhou Xian. Experiment study of coal mine ventilation air methane oxidation[D]. Beijing:
[28]  Institute of Engineering Thermophysics Chinese Academy of Sciences, 2008
[29]  周娴. 煤矿乏风低浓度甲烷氧化处理实验研究[D]. 北京:中国科学院工程热物理研究所,2008.
[30]  methane with concentration less than 1%[J]. Coal Technology,2008,(9):1-2.
[31]  Wang Xinyang,Du Jin. Present situation and prospect of oxidation technology about mine
[32]  ventilation air methane treatment technology[J]. Clean Coal Technology,2009,15(4):91-94.
[33]  Liu Wen-ge,Hu Yu-hong. Utilization technology of coal mines ventilation air methane: the
[34]  Ning Chenghao,Chen Guifeng. Status analysis of emission and utilization of coal mine methane
[35]  刘永启,陈香春,高振强,李宗立.抽放瓦斯与乏风混合器的性能研究[J]. 煤炭学报,2011,36(7):1145-1149.
[36]  for drained coal mine methane and ventilation air methane[J]. Journal of China Coal Society
[37]  张昌建,耿 林,袁常升,孟劭锋.浅谈掺烧煤层气(瓦斯)燃煤锅炉的改造设计[J]. 煤炭工程,2011(1):17-19.
[38]  王一坤,刘银河,车得福.通风瓦斯处理系统燃烧特性研究[J].工程热物理学报,2011,32(1):169~172.
[39]  processing system[J].Journal of Engineering Thermophysics,2011,32(1):169-172.
[40]  王一坤,刘银河,车得福.通风瓦斯处理系统燃烧特性研究[J].工程热物理学报,2011,32(1):169~172.
[41]  Zheng Bin,Liu Yongqi,Liu Ruixiang, et al. Oxidation of coal mine ventilation airmethane in
[42]  王鑫阳.矿井乏风回收利用技术研究[D].辽宁:辽宁工程技术大学,2008(06).
[43]  郑斌,刘永启,刘瑞祥,等.煤矿乏风的蓄热逆流氧化[J].煤炭学报,2009,34(11):1475-1478.
[44]  mines [J]. Industrial Safety and Dust Control,2002,28(3): 3-5.
[45]  transformation of the coal-fired boiler design[J]. Coal Engineering,2011(1):17-19.
[46]  张昌建,耿 林,袁常升,孟劭锋.浅谈掺烧煤层气(瓦斯)燃煤锅炉的改造设计[J]. 煤炭工程,2011(1):17-19.
[47]  参考文献:
[48]  Wang Xinyang,Du Jin. Present situation and prospect of oxidation technology about mine
[49]  周娴,姜凡,吕元,等.煤矿通风瓦斯处理技术的比较和应用前景[J]. 洁净煤技术,2009,15(4): 91-94.
[50]  Cui Guorong. Domestic and foreign coal bed methane development and utilization of the status
[51]  Zhou Xian, Jiang Fan,Lü Yuan,et al. Comparison and application prospects of coal mine
[52]  王鑫阳,杜金.浓度低于1%的矿井瓦斯氧化技术现状及前景[J].煤炭技术,2008(9):1-2.
[53]  quo [J]. Land and Resources Information,2005,(11):22-26
[54]  methane with concentration less than 1%[J]. Coal Technology,2008,(9):1-2.
[55]  周娴,姜凡,吕元,等.煤矿通风瓦斯处理技术的比较和应用前景[J]. 洁净煤技术,2009,15(4): 91-94.
[56]  刘文革,胡予红. 煤矿通风瓦斯利用技术现状及其潜力[J].中国煤炭, 2003,29(11):10-12.
[57]  刘文革,胡予红. 煤矿通风瓦斯利用技术现状及其潜力[J].中国煤炭, 2003,29(11):10-12.
[58]  present status and potential[J]. China Coal,2003,29(1): 10-12.
[59]  宁成浩,陈贵峰. 我国煤矿低浓度瓦斯排放及利用现状分析[J]. 能源环境保护, 2005,19(4):1-4.
[60]  present status and potential[J]. China Coal,2003,29(1): 10-12.
[61]  Ning Chenghao,Chen Guifeng. Status analysis of emission and utilization of coal mine methane
[62]  of low concentration in China[J]. Energy and Environmental Protection,2005,19(4): 1-4.
[63]  刘永启,陈香春,高振强,李宗立.抽放瓦斯与乏风混合器的性能研究[J]. 煤炭学报,2011,36(7):1145-1149.
[64]  LIU Yong-qi,CHEN Xiang-chun,GAO Zhen-qiang,LI Zong-li.Studying on performance of the mixer
[65]  LIU Yong-qi,CHEN Xiang-chun,GAO Zhen-qiang,LI Zong-li.Studying on performance of the mixer
[66]  for drained coal mine methane and ventilation air methane[J]. Journal of China Coal Society
[67]  20 11,36(7): 1145-1149.
[68]  牛国庆. 矿井回风流中低浓度瓦斯利用现状及前[J]. 工业安全与环保,2002,28(3):3-5.
[69]  Niu Guoqing. Prospect and utilization status of low concentration gas in vitiated air at
[70]  牛国庆. 矿井回风流中低浓度瓦斯利用现状及前[J]. 工业安全与环保,2002,28(3):3-5.
[71]  ZHANG Changjian,GENG Lin,YUAN Changsheng,MENG Zhaofeng.On Burning coal bed methane (gas) the
[72]  Niu Guoqing. Prospect and utilization status of low concentration gas in vitiated air at
[73]  ZHANG Changjian,GENG Lin,YUAN Changsheng,MENG Zhaofeng.On Burning coal bed methane (gas) the
[74]  崔荣国.国内外煤层气开发利用现状[J].国土资源情报,2005(11):22-26.
[75]  ventilation air methane treatment technology[J]. Clean Coal Technology,2009,15(4):91-94.
[76]  Zhou Xian, Jiang Fan,Lü Yuan,et al. Comparison and application prospects of coal mine
[77]  Liu Wen-ge,Hu Yu-hong. Utilization technology of coal mines ventilation air methane: the
[78]  宁成浩,陈贵峰. 我国煤矿低浓度瓦斯排放及利用现状分析[J]. 能源环境保护, 2005,19(4):1-4.
[79]  of low concentration in China[J]. Energy and Environmental Protection,2005,19(4): 1-4.
[80]  20 11,36(7): 1145-1149.
[81]  transformation of the coal-fired boiler design[J]. Coal Engineering,2011(1):17-19.
[82]  郑斌,刘永启,刘瑞祥,等.煤矿乏风的蓄热逆流氧化[J].煤炭学报,2009,34(11):1475-1478.
[83]  吕元,姜凡,肖云汉.煤矿通风瓦斯甲烷热氧化装置实验研究[J].煤炭学报,2011,36(6):973-977.
[84]  utilization of oxidation heat[J]. China Coalbed Methane, 2007,4(4):27-30.
[85]  thermal reverse - flow reactor[J]. Journal of China Coal Society,2009,34(11):1 475-1

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133