期刊文献+

含次生生物成因煤层气的碳同位素组成特征——以淮南煤田为例 被引量:11

CHARACTERISTICS OF CARBON ISOTOPE COMPOSITION FROM SECONDARY BIOGENIC GAS IN COALBED GASES——TAKING THE HUAINAN COAL FIELD AS AN EXAMPLE
下载PDF
导出
摘要 淮南煤田煤层气属于热成因和次生生物成因气的混合气。不同矿区和不同煤层中煤层气的δ13C1值有明显的不同,这主要是由于现今淮南煤田的煤层气藏中后期生成的次生生物气与残留在煤层中的热解气混合比例不同造成的。研究显示,淮南煤田煤层气的δ13C1值明显轻于我国热成因煤型气和世界主要地区煤层气的1δ3C1值,表现出了含次生生物成因煤层气的δ13C1值的变化特征;而δ13C2值明显与我国热成因煤型气和世界主要地区煤层气的δ13C2值处于同一分布范围,表现出了热成因气δ13C2值的特征。淮南煤田煤层气的1δ3CCO2值反映出煤层气中的CO2主要为煤热解而来,部分是次生生物气生成过程中,经过了微生物的还原作用而残留的CO2。 Coalbed gases in Huainan coal field is a gas mixture resulted from thermogenic methane and secondary biogenic gas.And the δ^13C1 value of coalbed gases is very different among different mines and coal beds.This is mainly because the difference of mixing proportion between the remaining pyrolysis gas from coalbed and the secondary biogenic gas from post-stage in Huainan coal field.Compared with Chinese thermogenic coalbed gases and others from the world's major regions by δ^13C1 and δ^13C2 values,it is showed that the δ^13C1 value from Huainan coal field is much smaller.The variational property of δ^13C1 value is characterized by containing secondary biogenic gas.However,the distribution of δ^13C2 value in Huainan coal field is obviously in same position with the one that from Chinese thermogenic coalbed gases and the world's major regions,and it is characterized by property of thermogenic methane.And from the δ^13CCO2 value of coalbed gases,we can inferred that CO2 in methane is mainly resulted from coal pyrolysis,and part of it is the remaining CO2 from microbial reduction occurring in the secondary biogenic gas generating process.
出处 《石油实验地质》 CAS CSCD 北大核心 2009年第6期622-626,共5页 Petroleum Geology & Experiment
基金 国家重点基础研究发展计划(973计划)项目(2002CB211701) 国家自然科学基金项目(40372065)共同资助
关键词 碳同位素组成 次生生物成因气 煤层气 淮南煤田 carbon isotope composition secondary biogenic gas coalbed gases Huainan coal field
  • 相关文献

参考文献24

  • 1Scott A R. Composition and origin of coalbed gases from selected basins in the United States[J].International Coalbed Meth ane Symposium Proceedings, 93. 207-222.
  • 2陶明信.煤层气地球化学研究现状与发展趋势[J].自然科学进展,2005,15(6):648-652. 被引量:41
  • 3Scott A R,Kaiser W R,Ayers W B, et al. Thermogenic and secondary biogenic gases, San Juan Basin[J]. AAPG Bulletin, 1994, 78(8) :1186-1209.
  • 4陶明信,王万春,解光新,李晶莹,王彦龙,张小军,张泓,史宝光,高波.中国部分煤田发现的次生生物成因煤层气[J].科学通报,2005,50(B10):14-18. 被引量:32
  • 5Rightmire C T, Eddy G E, Kirr J N. Coalbed methane resources of the United States[A]. In: AAPG Studies in Geology Series # 17, Ⅶ-Ⅷ [G]. Tulsa: AAPG, 1984. 1- 14.
  • 6Rice D D. Composition and Origins of Coalbed Gas[A]. In: Law B E,Rice D D, eds. AAPG Studies in Geology Series # 38 : Hydrocarbon from Coal[G]. Tulsa:AAPG, 1993.159 - 183.
  • 7Whiticar M J. Faber E , Sehoell M. Biogenic Methane Forma tion in Marine and Freshwater Environments: CO2 Reduction VS. Acetate Fermentation - Isotopic evidence[J].Geochimica et Cosmochimica Acta, 1986, 50:693-709.
  • 8Kotarba M J, Rice D D. Composition and origin of coalbed ga ses in the Lower Silesian, southwest Poland[J].Applied Geochemistry, 2001,16 : 895-910.
  • 9张新民,李建武,韩保山,董敏涛.淮南煤田煤层气藏划分及形成机制[J].科学通报,2005,50(B10):6-13. 被引量:22
  • 10张小军,陶明信,解光新,王彦龙,史宝光.淮南煤田次生生物成因气的比例及资源意义[J].沉积学报,2007,25(2):314-318. 被引量:23

二级参考文献106

共引文献735

同被引文献135

引证文献11

二级引证文献65

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部