Methane source linked to gas hydrate system at hydrate drilling areas of the South China Sea: Porewater geochemistry and numerical model constraints

被引:37
|
作者
Hu, Yu [1 ]
Luo, Min [1 ,2 ]
Chen, Linying [1 ]
Liang, Qianyong [3 ]
Feng, Dong [4 ,5 ]
Tao, Jun [3 ]
Yang, Shengxiong [3 ]
Chen, Duofu [1 ,5 ]
机构
[1] Shanghai Ocean Univ, Coll Marine Sci, Shanghai Engn Res Ctr Hadal Sci & Technol, Shanghai 201306, Peoples R China
[2] Qingdao Natl Lab Marine Sci & Technol, Lab Marine Geol, Qingdao 266061, Peoples R China
[3] Guangzhou Marine Geol Survey, MLR Key Lab Marine Mineral Resources, Guangzhou 510075, Guangdong, Peoples R China
[4] Chinese Acad Sci, South China Sea Inst Oceanol, CAS Key Lab Ocean & Marginal Sea Geol, Guangzhou 510301, Guangdong, Peoples R China
[5] Qingdao Natl Lab Marine Sci & Technol, Lab Marine Mineral Resources, Qingdao 266237, Peoples R China
关键词
Methane; Anaerobic oxidation of methane; Porewater; Gas hydrate; South China Sea; PORE-WATER GEOCHEMISTRY; NORTHEASTERN CONTINENTAL-SLOPE; RIVER MOUTH BASIN; ANAEROBIC OXIDATION; COLD-SEEP; AUTHIGENIC CARBONATES; SULFATE REDUCTION; MARINE-SEDIMENTS; ORGANIC-MATTER; FORMATION MECHANISM;
D O I
10.1016/j.jseaes.2018.04.028
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Methane of various origins is widespread in the sediments of continental margins, representing a key component of the carbon cycle in the ocean. Its occurrence in shallow marine sediments can be linked to the gas hydrate reservoir in the deep sedimentary column. However, this type of methane is difficult to track due to complex reactions occurred during its long distance migration. Porewater geochemical analyses of two similar to 7 m piston cores (D17-15 and W01-16) combined with a reaction-transport model were applied to quantify methane-related biogeochemical processes and to explore the linkage of shallow methane to gas hydrate reservoir in the hydrate drilling areas of Shenhu and Dongsha in the South China Sea (SCS). The model results revealed that anaerobic oxidation of methane (AOM) is the predominant biogeochemical process in both cores, consuming approximately 85% and 74% of sulfate in the modeled domain, respectively. The crossplot of dissolve inorganic carbon (DIC) accumulation versus sulfate depletion of the system suggests that methane consumed during the AOM is mainly originated from external methane sources rather than local methanogenesis. Using a delta C-13(DIC) mass balance calculation together with model-derived fractions of different DIC sources, we estimated that the delta C-13 value of the external methane in core D17-15 is -66.6%o, which is in accordance with the previous reported delta C-13 values of hydrate-bound methane in the area. These results suggest that methane consumed in shallow sediments in the hydrate drilling areas of the SCS is mainly originated from local gas hydrate reservoir. The proposed approach has the potential to be used to differentiate the sources of methane, which will provide constraints on dynamics of methane in gas hydrate-bearing marine sediments.
引用
收藏
页码:87 / 95
页数:9
相关论文
共 50 条
  • [21] Methane hydrate growth velocity in seepage system of Qiongdongnan Basin, South China Sea
    Guan Jin-An
    Fan Shuan-Shi
    Liang De-Qing
    Ning Fu-Long
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2009, 52 (03): : 765 - 775
  • [22] Geological controls on the gas hydrate system of Formosa Ridge, South China Sea
    Berndt, C.
    Crutchley, G.
    Klaucke, I.
    Jegen, M.
    Lebas, E.
    Muff, S.
    Lieser, K.
    Roth, T.
    Feseker, T.
    Chi, W. -C.
    Lin, S.
    Liu, C. -S.
    Chen, L.
    Hsu, H. -H.
    OCEANS 2014 - TAIPEI, 2014,
  • [24] Characterization of the sediments in a gas hydrate reservoir in the northern South China Sea: Implications for gas hydrate accumulation
    Bai, Chenyang
    Su, Pibo
    Su, Xin
    Cui, Hongpeng
    Shang, Wei
    Han, Shujun
    Zhang, Guangxue
    MARINE GEOLOGY, 2022, 453
  • [25] Geothermal analysis of boreholes in the Shenhu gas hydrate drilling area, northern South China Sea: Influence of mud diapirs on hydrate occurrence
    Wan, Zhifeng
    Xu, Xing
    Wang, Xianqing
    Xia, Bin
    Sun, Yuefeng
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2017, 158 : 424 - 432
  • [26] Porewater geochemical and lipid biomarker signatures for anaerobic methane oxidation in the hydrate-bearing system from the Taixinan Basin, the South China Sea
    Li, Yan
    Zhou, Qian-Zhi
    Xu, Xiang-Po
    Liu, Jin-Zhong
    Zhou, Guo-Yi
    Fang, Yun-Xin
    Wang, Jiang-Hai
    JOURNAL OF ASIAN EARTH SCIENCES, 2020, 203
  • [27] Poroelasticity of natural gas hydrate reservoirs in the South China Sea
    Zhou Chun-xu
    Zhang Shui-tao
    He Jia-yuan
    Dai Xiao-liang
    Li Li-jun
    Wang Lin-lin
    ROCK AND SOIL MECHANICS, 2022, 43 : 375 - 382
  • [28] Numerical Analyses on Controlling Factors for Hydrate Differential Accumulation in the Shenhu Drilling Area, South China Sea
    Shang, Songhua
    Xu, Tianfu
    Zhu, Zhenyu
    Tian, Hailong
    Bei, Keqi
    Liu, Wenna
    Zhu, Huixing
    ENERGY & FUELS, 2021, 35 (05) : 3925 - 3936
  • [29] Research on the anisotropy of gas hydrate reservoirs in South China Sea
    Xiangchun Wang
    Wuyunbateer Bai
    Yanpeng Zheng
    Marine Geophysical Research, 2020, 41
  • [30] Letter to editor on "The gas hydrate potential in the South China Sea"
    Jones, J. C.
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2014, 122 : 787 - 787