Origin of hydrocarbon fluids and discussion of abnormal carbon isotopic compositions in the Lishui-Jiaojiang Sag, East China Sea Shelf Basin

被引:0
作者
Jingqi Xu
机构
[1] ShanghaiBranchofChinaNationalOffshoreOilCorporation(CNOOC)Co,Ltd
关键词
D O I
暂无
中图分类号
P618.13 [石油、天然气];
学科分类号
0709 ; 081803 ;
摘要
The hydrocarbon gases in the L1 gas field of the Lishui-Jiaojiang Sag have been commonly interpreted to be an accumulation of pure sapropelic-type thermogenic gas. In this study, chemical components, stable isotopic compositions, and light hydrocarbons were utilized to shed light on the origins of the hydrocarbon fluids in the L1gas pool. The hydrocarbon fluids in the L1 gas pool are proposed to be a mixture of three unique components:mid-maturity oil from the middle Paleocene coastal marine Lingfeng source rock, oil-associated(late oil window)gas generated from the lower Paleocene lacustrine Yueguifeng source rock, and primary microbial gas from the paralic deposits of the upper Paleocene Mingyuefeng source rock. Here, for the first time, the hydrocarbon gases in the L1 gas pool are diagnosed as mixed oil-associated sapropelic-type gas and microbial gas via four pieces of principal evidence:(1) The abnormal carbon isotopic distributions of all methane homologues from C1(CH4 or methane) to C5(C5H12 or pentane) shown in the Chung plot;(2) the diagnostic 13C-depleted C1 compared with the thermogenic sapropelic-type gas model, while δ13C2(C2H6 or ethane) and δ13C3(C3H8 or propane) both fit perfectly;(3) the excellent agreement of the calculated carbon isotopic compositions of the pure thermogenic gas with the results of the thermal simulated gas from the type-II1 kerogen-rich Yueguifeng source rock; and(4) the oil-associated gas inferred from various binary genetic diagrams with an abnormally elevated gas oil ratio. Overall,the natural gases of the L1 gas pool were quantified in this study to comprise approximately 13% microbial gas,nearly 48% oil-associated sapropelic-type gas, and 39% of nonhydrocarbon gas. The microbial gas is interpreted to have been codeposited and entrained in the humic-kerogen-rich Mingyuefeng Formation under favorable lowtemperature conditions during the late Paleocene-middle Eocene. The microbial gas subsequently leaked into the structurally and stratigraphically complex L1 trap with oil-associated sapropelic-type gas from the Yueguifeng source rock during the late Eocene-Oligocene uplifting event. A small amount of humic-kerogen-generated oil in the L1 gas pool is most likely to be derived from the underlying Lingfeng source rock. The detailed geological and geochemical considerations of source rocks are discussed to explain the accumulation history of hydrocarbon fluids in the L1 gas pool. This paper, therefore, represents an effort to increase the awareness of the pitfalls of various genetic diagrams, and an integrated geochemical and geological approach is required for hydrocarbonsource correlation.
引用
收藏
页码:76 / 88
页数:13
相关论文
共 37 条
[1]   东海盆地丽水凹陷油气成因、来源及充注过程 [J].
苏奥 ;
陈红汉 ;
曹来圣 ;
雷明珠 ;
王存武 ;
刘妍鷨 ;
李培军 .
石油勘探与开发, 2014, 41 (05) :523-532
[2]   东海盆地丽水凹陷原油地球化学特征及油源分析 [J].
葛和平 ;
陈晓东 ;
刁慧 ;
李键 ;
褚智慧 .
中国海上油气, 2012, 24 (04) :8-12+31
[3]   东海盆地丽水凹陷油气源对比与成藏史 [J].
孙玉梅 ;
席小应 .
石油勘探与开发, 2003, (06) :24-28
[4]   Improved understanding of the origin and accumulation of hydrocarbons from multiple source rocks in the Lishui Sag: Insights from statistical methods, gold tube pyrolysis and basin modeling [J].
Li, Yang ;
Zhang, Jinliang ;
Xu, Yaohui ;
Chen, Tao ;
Liu, Jinshui .
MARINE AND PETROLEUM GEOLOGY, 2021, 134
[5]  
New approaches to distinguish shale-sourced and coal-sourced gases in petroleum systems.[J].Milkov Alexei V..Organic Geochemistry.2021, prepublish
[6]  
CH 4 accumulation characteristics and relationship with deep CO 2 fluid in Lishui sag; East China Sea Basin.[J].Yahao Huang;Alexandre Tarantola;Wanjun Lu;Marie-Camille Caumon;Sheng He;Xinguo Zhuang;Detian Yan;Jacques Pironon;Wenjing Wang.Applied Geochemistry.2020, prepublish
[7]  
Stable carbon isotope systematics of methane; ethane and propane from low-permeability hydrocarbon reservoirs.[J].Jaime Cesar;Michael Nightingale;Veith Becker;Bernhard Mayer.Chemical Geology.2020,
[8]  
Organic geochemistry; distribution and hydrocarbon potential of source rocks in the Paleocene; Lishui Sag; East China Sea Shelf Basin.[J].Yang Li;Jinliang Zhang;Yang Liu;Wenlong Shen;Xiangchun Chang;Zhongqiang Sun;Guangchen Xu.Marine and Petroleum Geology.2019,
[9]  
Carbon and hydrogen isotopes of methane; ethane; and propane: A review of genetic identification of natural gas.[J].Quanyou Liu;Xiaoqi Wu;Xiaofeng Wang;Zhijun Jin;Dongya Zhu;Qingqiang Meng;Shipeng Huang;Jiayi Liu;Qi Fu.Earth-Science Reviews.2019,
[10]  
Cenozoic tectonic evolution of the East China Sea Shelf Basin and its coupling relationships with the Pacific Plate subduction.[J].Jintong Liang;Hongliang Wang.Journal of Asian Earth Sciences.2018,