2017 Vol. 37, No. 6
Article Contents

LI Jin, WANG Shuhong, YAN Wen. SEABED MUD VOLCANO AND ITS BEARING ON OIL-GAS AND GAS HYDRATE[J]. Marine Geology & Quaternary Geology, 2017, 37(6): 204-214. doi: 10.16562/j.cnki.0256-1492.2017.06.022
Citation: LI Jin, WANG Shuhong, YAN Wen. SEABED MUD VOLCANO AND ITS BEARING ON OIL-GAS AND GAS HYDRATE[J]. Marine Geology & Quaternary Geology, 2017, 37(6): 204-214. doi: 10.16562/j.cnki.0256-1492.2017.06.022

SEABED MUD VOLCANO AND ITS BEARING ON OIL-GAS AND GAS HYDRATE

More Information
  • Mud volcanoes have gradually become a world research focus for geosciences in the past decades, with the progress of marine exploration technology. Mud volcanoes in the world are mainly distributed in the Mediterranean-Caspian-Himalayan active belt and the Pacific activity belt, dominated by tectonic activities. Although the distribution of mud volcanoes is limited in the world, the research of it is of significance. The eruptive materials of the mud volcano may carry great amount of information of the interior Earth. Mud volcano is also bound up with the formation, migration and accumulation of deep oil and gas in terms of structural trapping, thermodynamic mechanism and developmental horizons. Moreover, there is high content of methane in the gas erupted together with the mud. On one hand, It will bring affect to marine water and atmospheric environment, and on the other hand, it will collect the gas in the seabed sediments to form gas hydrate. There are large amount of submarine mud volcanoes existed in the South China Sea. To intensively study those mud volcanoes in the South China Sea is important not only in exploring the migration and evolution of Earth interior material, but also the exploration and development of the oil and gas hydrate in the South China Sea basins.

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  • [1] 赵汗青, 吴时国, 徐宁, 等.东海与泥底辟构造有关的天然气水合物初探[J].现代地质, 2006, 20(1):115-122. doi: 10.3969/j.issn.1000-8527.2006.01.014

    CrossRef Google Scholar

    ZHAO Hanqing, WU Shiguo, XU Ning, et al.The elementary research of gas hydrate associated with mud diapir structure in the East China Sea[J]. Geoscience, 2006, 20(1): 115-122. doi: 10.3969/j.issn.1000-8527.2006.01.014

    CrossRef Google Scholar

    [2] 张伟.南海北部主要盆地泥底辟/泥火山发育演化与油气及天然气水合物成矿成藏[D].中国科学院研究生院(广州地球化学研究所)博士学位论文, 2016.http://cdmd.cnki.com.cn/Article/CDMD-80165-1016188301.htm

    Google Scholar

    ZHANG Wei. Research on the development and evolution of mud diapir/mud volcano and their relationship with migration and accumulation of petroleum and natrural gas-hydrate in Major Basins, Northern South China Sea[D]. Doctor Dissertation of University of Chinese Academy of Sciences (Guangzhou Institute of Geochemistry), 2016.

    Google Scholar

    [3] 孟祥君, 张训华, 韩波, 等.海底泥火山地球物理特征[J].海洋地质前沿, 2012, 28(12): 6-9, 45.

    Google Scholar

    MENG Xiangjun, ZHANG Xunhua, HAN Bo, et al. The geophysical characteristics of submarine mud volcano[J]. Marine Geology Frontiers, 2012, 28(12): 6-9, 45.

    Google Scholar

    [4] 张伟, 何家雄, 卢振权, 等.琼东南盆地疑似泥底辟与天然气水合物成矿成藏关系初探[J].天然气地球科学, 2015, 26(11): 2185-2197. doi: 10.11764/j.issn.1672-1926.2015.11.2185

    CrossRef Google Scholar

    ZHANG Wei, HE Jiaxiong, LU Zhenquan, et al. Preliminary study of the relationship between the suspected mud diapir and natural gas hydrate in the Qiongdongnan basin, northern South China Sea[J]. Natural Gas Geoscience, 2015, 26(11): 2185-2197. doi: 10.11764/j.issn.1672-1926.2015.11.2185

    CrossRef Google Scholar

    [5] 何家雄, 祝有海, 翁荣南, 等.南海北部边缘盆地泥底辟及泥火山特征及其与油气运聚关系[J].地球科学-中国地质大学学报, 2010, 35(1): 75-86.

    Google Scholar

    HE Jiaxiong, ZHU Youhai, WENG Rongnan, et al. Characters of north-west mud diapirs volcanoes in South China Sea and relationship between them and accumulation and migration of oil and gas[J]. Earth Science-Journal of China University of Geosciences, 2010, 35(1): 75-86.

    Google Scholar

    [6] 黄华谷, 邸鹏飞, 陈多福.泥火山的全球分布和研究进展[J].矿物岩石地球化学通报, 2011, 30(2): 189-197. doi: 10.3969/j.issn.1007-2802.2011.02.010

    CrossRef Google Scholar

    HUANG Huagu, DI Pengfei, CHEN Duofu. Global distribution and research progress of mud volcanoes[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 2011, 30(2): 189-197. doi: 10.3969/j.issn.1007-2802.2011.02.010

    CrossRef Google Scholar

    [7] Kopf A J. Significance of mud volcanism[J]. Reviews of Geophysics, 2002, 40(2): 1005 doi: 10.1029/2000RG000093

    CrossRef Google Scholar

    [8] 梁杰, 龚建明, 陈建文.泥火山与天然气水合物[J].海洋地质动态, 2006, 22(12): 20-23. doi: 10.3969/j.issn.1009-2722.2006.12.006

    CrossRef Google Scholar

    LIANG Jie, GONG Jianming, CHEN Jianwen. Mud volcanoes and natural gas hydrate[J]. Marine Geology Letters, 2006, 22(12): 20-23. doi: 10.3969/j.issn.1009-2722.2006.12.006

    CrossRef Google Scholar

    [9] Milkov A V. Worldwide distribution of submarine mud volcanoes and associated gas hydrates[J]. Marine Geology, 2000, 167(1-2): 29-42. doi: 10.1016/S0025-3227(00)00022-0

    CrossRef Google Scholar

    [10] 朱婷婷, 陆现彩, 祝幼华, 等.台湾西南部乌山顶泥火山的成因机制初探[J].岩石矿物学杂志, 2009, 28(5): 465-472. doi: 10.3969/j.issn.1000-6524.2009.05.006

    CrossRef Google Scholar

    ZHU Tingting, LU Xiancai, ZHU Youhua, et al. A preliminary genetic study of the Wushanding mud volcano in southwestern Taiwan[J]. Acta Petrologica et Mineralogica, 2009, 28(5): 465-472. doi: 10.3969/j.issn.1000-6524.2009.05.006

    CrossRef Google Scholar

    [11] Martinelli G, Panahi B. Mud Volcanoes, Geodynamics and Seismicity[M]. Dordrecht, The Netherlands: Springer, 2005.

    Google Scholar

    [12] Dimitrov L I. Mud volcanoes-the most important pathway for degassing deeply buried sediments[J]. Earth-Science Reviews, 2002, 59(1-4): 49-76. doi: 10.1016/S0012-8252(02)00069-7

    CrossRef Google Scholar

    [13] Graue K. Mud volcanoes in deepwater nigeria[J]. Marine and Petroleum Geology, 2000, 17(8): 959-974. doi: 10.1016/S0264-8172(00)00016-7

    CrossRef Google Scholar

    [14] Huguen C, Mascle J, Woodside J, et al. Mud volcanoes and mud domes of the central Mediterranean ridge: near-bottom and in situ observations[J]. Deep Sea Research Part I: Oceanographic Research Papers, 2005, 52(10): 1911-1931. doi: 10.1016/j.dsr.2005.05.006

    CrossRef Google Scholar

    [15] Limonov A F, Woodside J M, Cita M B, et al. The Mediterranean ridge and related mud diapirism: a background[J]. Marine Geology, 1996, 132(1-4): 7-19. doi: 10.1016/0025-3227(96)00150-8

    CrossRef Google Scholar

    [16] Kopf A, Robertson A H F, Volkmann N. Origin of mud breccia from the Mediterranean Ridge accretionary complex based on evidence of the maturity of organic matter and related petrographic and regional tectonic evidence[J]. Marine Geology, 2000, 166(1-4): 65-82. doi: 10.1016/S0025-3227(00)00009-8

    CrossRef Google Scholar

    [17] Brown K, Westbrook G K. Mud diapirism and subcretion in the Barbados Ridge accretionary complex: the role of fluids in accretionary processes[J]. Tectonics, 1998, 7(3): 613-640.

    Google Scholar

    [18] Somoza L, Díaz-del-Río V, León R, et al. Seabed morphology and hydrocarbon seepage in the Gulf of Cádiz mud volcano area: acoustic imagery, multibeam and ultra-high resolution seismic data[J]. Marine Geology, 2003, 195(1-4): 153-176. doi: 10.1016/S0025-3227(02)00686-2

    CrossRef Google Scholar

    [19] León R, Somoza L, Medialdea T, et al. Sea-floor features related to hydrocarbon seeps in deepwater carbonate-mud mounds of the Gulf of Cádiz: from mud flows to carbonate precipitates[J]. Geo-Marine Letters, 2007, 27(2-4): 237-247. doi: 10.1007/s00367-007-0074-2

    CrossRef Google Scholar

    [20] Kobayashi K, Ashi J, Boulegue J, et al. Deep-tow survey in the KAIKO-Nankai cold seepage areas[J]. Earth and Planetary Science Letters, 1992, 109(3-4): 347-354. doi: 10.1016/0012-821X(92)90097-F

    CrossRef Google Scholar

    [21] Limonov A F, van Weering T C E, Kenyon N H, et al. Seabed morphology and gas venting in the Black Sea mudvolcano area: observations with the MAK-1 deep-tow sidescan sonar and bottom profiler[J]. Marine Geology, 1997, 137(1-2): 121-136. doi: 10.1016/S0025-3227(96)00083-7

    CrossRef Google Scholar

    [22] Krastel S, Spiess V, Ivanov M, et al. Acoustic investigations of mud volcanoes in the Sorokin Trough, Black Sea[J]. Geo-Marine Letters, 2003, 23(3-4): 230-238. doi: 10.1007/s00367-003-0143-0

    CrossRef Google Scholar

    [23] Gamberi F, Marzia R. Mud diapirs, mud volcanoes and fluid flow in the rear of the Calabrian Arc Orogenic Wedge (southeastern Tyrrhenian sea)[J]. Basin Research, 2010, 22(4): 452-464. doi: 10.1111/j.1365-2117.2010.00473.x

    CrossRef Google Scholar

    [24] Talukder A R, Comas M C, Soto J I. Pliocene to recent mud diapirism and related mud volcanoes in the Alboran Sea (Western Mediterranean)[J]. Geological Society, London, Special Publications, 2003, 216(1): 443-459. doi: 10.1144/GSL.SP.2003.216.01.29

    CrossRef Google Scholar

    [25] Péerez-belzuz F, Alonso B, Ercilla G. History of mud diapirism and trigger mechanisms in the Western Alboran Sea[J]. Tectonophysics, 1997, 282(1-4): 399-422. doi: 10.1016/S0040-1951(97)00226-6

    CrossRef Google Scholar

    [26] Sauter E J, Muyakshin S I, Charlou J L, et al. Methane discharge from a deep-sea submarine mud volcano into the upper water column by gas hydrate-coated methane bubbles[J]. Earth and Planetary Science Letters, 2006, 243(3-4): 354-365. doi: 10.1016/j.epsl.2006.01.041

    CrossRef Google Scholar

    [27] Dimitrov L I. Mud volcanoes-a significant source of atmospheric methane[J]. Geo-Marine Letters, 2003, 23(3-4): 155-161. doi: 10.1007/s00367-003-0140-3

    CrossRef Google Scholar

    [28] Chao H C, You C F, Wang B S, et al. Boron isotopic composition of mud volcano fluids: implications for fluid migration in shallow subduction zones[J]. Earth and Planetary Science Letters, 2011, 305(1-2): 32-44. doi: 10.1016/j.epsl.2011.02.033

    CrossRef Google Scholar

    [29] Omoregie E O, Niemann H, Mastalerz V, et al. Microbial methane oxidation and sulfate reduction at cold seeps of the deep Eastern Mediterranean Sea[J]. Marine Geology, 2009, 261(1-4): 114-127. doi: 10.1016/j.margeo.2009.02.001

    CrossRef Google Scholar

    [30] Hensen C, Wallmann K, Schmidt M, et al. Fluid expulsion related to mud extrusion off Costa Rica-a window to the subducting slab[J]. Geology, 2004, 32(3): 201-204. doi: 10.1130/G20119.1

    CrossRef Google Scholar

    [31] Accaino F, Bratus A, Conti S, et al. Fluid seepage in mud volcanoes of the northern Apennines: an integrated geophysical and geological study[J]. Journal of Applied Geophysics, 2007, 63(2): 90-101. doi: 10.1016/j.jappgeo.2007.06.002

    CrossRef Google Scholar

    [32] Vanneste H, Kastner M, James R H, et al. Authigenic carbonates from the Darwin Mud Volcano, Gulf of Cadiz: a record of palaeo-seepage of hydrocarbon bearing fluids[J]. Chemical Geology, 2012, 300-301: 24-39. doi: 10.1016/j.chemgeo.2012.01.006

    CrossRef Google Scholar

    [33] Aloisi G, Pierre C, Rouchy J M, et al. Methane-related authigenic carbonates of eastern Mediterranean Sea mud volcanoes and their possible relation to gas hydrate destabilisation[J]. Earth and Planetary Science Letters, 2000, 184(1): 321-338. doi: 10.1016/S0012-821X(00)00322-8

    CrossRef Google Scholar

    [34] Mazzini A, Svensen H, Planke S, et al. When mud volcanoes sleep: Insight from seep geochemistry at the Dashgil mud volcano, Azerbaijan[J]. Marine and Petroleum Geology, 2009, 26(9): 1704-1715. doi: 10.1016/j.marpetgeo.2008.11.003

    CrossRef Google Scholar

    [35] Bonini M, Tassi F, Feyzullayev A A, et al. Deep gases discharged from mud volcanoes of Azerbaijan: new geochemical evidence[J]. Marine and Petroleum Geology, 2013, 43: 450-463. doi: 10.1016/j.marpetgeo.2012.12.003

    CrossRef Google Scholar

    [36] Zemskaya T I, Pogodaeva T V, Shubenkova O V, et al. Geochemical and microbiological characteristics of sediments near the Malenky mud volcano (Lake Baikal, Russia), with evidence of Archaea intermediate between the marine anaerobic methanotrophs ANME-2 and ANME-3[J]. Geo-Marine Letters, 2010, 30(3-4): 411-425. doi: 10.1007/s00367-010-0199-6

    CrossRef Google Scholar

    [37] Fryer P, Lockwood J P, Becker N, et al. Significance of serpentine mud volcanism in convergent margins[J]. Special Paper-Geological Society of America, 2000, 349: 35-51.

    Google Scholar

    [38] 张明峰, 王先彬, 妥进才, 等.蛇纹石化作用的气体形成研究进展[J].地球科学与环境学报, 2016, 38(1): 11-20. doi: 10.3969/j.issn.1672-6561.2016.01.002

    CrossRef Google Scholar

    ZHANG Mingfeng, WANG Xianbin, TUO Jincai, et al. Review on gas formation of serpentinization[J]. Journal of Earth Sciences and Environment, 2016, 38(1): 11-20. doi: 10.3969/j.issn.1672-6561.2016.01.002

    CrossRef Google Scholar

    [39] 王先彬, 卓胜广, 张明峰, 等.蛇绿岩中蛇纹石化作用, 分子氢和前生命/生命有机质-寻觅过去生命证据[C]//中国矿物岩石地球化学学会第15届学术年会论文摘要集(2).长春: 中国矿物岩石地球化学学会, 2015: 2.

    Google Scholar

    WANG Xianbin, ZHUO Shengguang, ZHANG Mingfeng, et al. Serpentine petrophysization, molecular hydrogen and pre-life/life organic matter in ophiolite-looking for evidence of past life[C]//Chinese society for Mineralogy, Petrology Geochemistry, Collection of Abstract Papers of the 15th Academic Conference(2). Changchun: Chinese Society for Mineralogy, Petrology Geochemistry, 2015: 2.

    Google Scholar

    [40] 王先彬.蛇纹石化作用与地球生命起源/演化的痕迹[J].矿物岩石地球化学通报, 2016, 35(2): 205-211. doi: 10.3969/j.issn.1007-2802.2016.02.001

    CrossRef Google Scholar

    WANG Xianbin. Serpentinization and the traces of origin and evolution of life in the earth[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 2016, 35(2): 205-211. doi: 10.3969/j.issn.1007-2802.2016.02.001

    CrossRef Google Scholar

    [41] 王先彬, 张明峰, 卓胜广, 等.蛇纹石化橄榄岩的有机化合物与生物成因性探索[J].矿物岩石地球化学通报, 2016, 35(2): 222-230. doi: 10.3969/j.issn.1007-2802.2016.02.003

    CrossRef Google Scholar

    WANG Xianbin, ZHANG Mingfeng, ZHUO Shengguang, et al. The organic compounds in the serpentinized peridotite and their biogenesis[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 2016, 35(2): 222-230. doi: 10.3969/j.issn.1007-2802.2016.02.003

    CrossRef Google Scholar

    [42] 王道, 李茂玮, 李锰, 等.新疆独山子泥火山喷发的初步研究[J].地震地质, 1997, 19(1): 14-16.

    Google Scholar

    WANG Dao, LI Maowei, LI Men, et al. A preliminary study on eruption of the mud volcano in Dushanzi, Xinjiang[J]. Seismology and Geology, 1997, 19(1): 14-16.

    Google Scholar

    [43] 胡东生, 张华京.青藏高原可可西里地区玛章错钦湖畔苟纠麦尕沟的泥火山机理雏议[J].干旱区地理, 1998, 21(3): 13-18.

    Google Scholar

    HU Dongsheng, ZHANG Huajing. A preliminary study on the mud volcanic mechanism of Goujiumaiga gully in Kekexili region, Qinghai-Xizang Plateau[J]. Arid Land Geography, 1998, 21(3): 13-18.

    Google Scholar

    [44] 李锰, 王道, 李茂伟, 等.新疆独山子泥火山喷发特征的研究[J].内陆地震, 1996, 10(4): 359-362.

    Google Scholar

    LI Meng, WANG Dao, LI Maowei, et al. A research on eruption characteristics of Dushanzi mud volcano in Xinjiang[J]. Inland Earthquake, 1996, 10(4): 359-362.

    Google Scholar

    [45] 方银霞, 高金耀, 黎明碧, 等.冲绳海槽天然气水合物与地质构造的关系[J].海洋地质与第四纪地质, 2005, 25(1): 85-91.

    Google Scholar

    FANG Yinxia, GAO Jinyao, LI Mingbi, et al. Relation between gas hydrate and geologic structures in the Okinawa trough[J]. Marine Geology & Quaternary Geology, 2005, 25(1): 85-91.

    Google Scholar

    [46] 范卫平, 郑雷清, 龚建华, 等.泥火山的形成及其与油气的关系[J].吐哈油气, 2007(1): 43-47.

    Google Scholar

    FAN Weipin, ZHENG Leiqing, GONG Jianhua, et al. Forming of mud volcano and relation with hydrocarbon[J]. Tuha oil & Gas, 2007(1): 43-47.

    Google Scholar

    [47] 沙志彬, 张光学, 梁金强, 等.泥火山--天然气水合物存在的活证据[J].南海地质研究, 2005(1): 48-56.

    Google Scholar

    SHA Zhibin, ZHANG Guangxue, LIANG Jinqiang, et al. Mud volcano-one live evidence of the existence of gas hydrates[J]. Gresearch of Eological South China Sea, 2005(1): 48-56.

    Google Scholar

    [48] 沙志彬, 王宏斌, 张光学, 等.底辟构造与天然气水合物的成矿关系[J].地学前缘, 2005, 12(3): 283-288. doi: 10.3321/j.issn:1005-2321.2005.03.032

    CrossRef Google Scholar

    SHA Zhibin, WANG Hongbin, ZHANG Guangxue, et al. The relationships between diapir structure and gas hydrate mineralization[J]. Earth Science Frontiers, 2005, 12(3): 283-288. doi: 10.3321/j.issn:1005-2321.2005.03.032

    CrossRef Google Scholar

    [49] 何家雄, 崔洁, 翁荣南, 等.台湾南部泥火山与伴生气地质地球化学特征及其油气地质意义[J].天然气地球科学, 2012, 23(2): 319-326.

    Google Scholar

    HE Jiaxiong, CUI Jie, WENG Rongnan, et al. Geology of Mud volcanoes and geochemistry of associated gas in southern Taiwan and Its significance to petroleum geology[J]. Natural Gas Geoscience, 2012, 23(2): 319-326.

    Google Scholar

    [50] 陈胜红, 贺振华, 何家雄, 等.南海东北部边缘台西南盆地泥火山特征及其与油气运聚关系[J].天然气地球科学, 2009, 20(6): 872-878.

    Google Scholar

    CHENG Shenghong, HE Zhenhua, HE Jiaxiong, et al. The characters of the mud volcanoes in the north-east marginal of the South China Sea and the relationship with the accumulation and migration of oil and gas[J]. Natural Gas Geoscience, 2009, 20(6): 872-878.

    Google Scholar

    [51] 何家雄, 祝有海, 马文宏, 等.火山、泥火山/泥底辟及含气陷阱与油气运聚关系[J].中国地质, 2010, 37(6): 1720-1732. doi: 10.3969/j.issn.1000-3657.2010.06.018

    CrossRef Google Scholar

    HE Jiaxiong, ZHU Youhai, MA Wenhong, et al. Volcanoes, mud volcanoes/mud diapers and gas traps and their relationship with oil and gas[J]. Geology in China, 2010, 37(6): 1720-1732. doi: 10.3969/j.issn.1000-3657.2010.06.018

    CrossRef Google Scholar

    [52] 谢蕾, 王家生, 吴能友, 等.南海北部神狐海域浅表层沉积物中自生黄铁矿及其泥火山指示意义[J].中国科学:地球科学, 2013, 43(3): 351-359.

    Google Scholar

    XIE Lei, WANG Jiasheng, WU Nengyou, et al. Characteristics of authigenic pyrites in shallow core sediments in the Shenhu area of the northern South China Sea: implications for a possible mud volcano environment[J]. Science China Earth Sciences, 2013, 56(4): 541-548.

    Google Scholar

    [53] Yin P, Berné S, Vagner P, et al. Mud volcanoes at the shelf margin of the East China Sea[J]. Marine Geology, 2003, 194(3-4): 135-149. doi: 10.1016/S0025-3227(02)00678-3

    CrossRef Google Scholar

    [54] Yang T F. Recent progress in the application of gas geochemistry: examples from Taiwan and the 9th International Gas Geochemistry Conference[J]. Geofluids, 2008, 8(4): 219-229. doi: 10.1111/j.1468-8123.2008.00232.x

    CrossRef Google Scholar

    [55] Chow J J, Chang S K, Yu H S. GPR reflection characteristics and depositional models of mud volcanic sediments-Wushanting mud volcano field, southwestern Taiwan[J]. Journal of Applied Geophysics, 2006, 60(3-4): 179-200. doi: 10.1016/j.jappgeo.2006.03.001

    CrossRef Google Scholar

    [56] Chen S C, Hsu S K, Wang Y S, et al. Distribution and characters of the mud diapirs and mud volcanoes off southwest Taiwan[J]. Journal of Asian Earth Sciences, 2014, 92: 201-214. doi: 10.1016/j.jseaes.2013.10.009

    CrossRef Google Scholar

    [57] Sun C H, Chang S C, Kuo C L, et al. Origins of Taiwan's mud volcanoes: evidence from geochemistry[J]. Journal of Asian Earth Sciences, 2010, 37(2): 105-116. doi: 10.1016/j.jseaes.2009.02.007

    CrossRef Google Scholar

    [58] Hong W L, Etiope G, Yang T F, et al. Methane flux from miniseepage in mud volcanoes of SW Taiwan: Comparison with the data from Italy, Romania, and Azerbaijan[J]. Journal of Asian Earth Sciences, 2013, 65: 3-12. doi: 10.1016/j.jseaes.2012.02.005

    CrossRef Google Scholar

    [59] 赵旭, 阎贫, 王彦林, 等.东沙西南海区泥火山的分布及其物质来源层位[J].热带海洋学报, 2016, 35(5): 88-96.

    Google Scholar

    ZHAO Xu, YAN Pin, WANG Yanlin, et al. The distribution and provenance strata of mud volcanoes in the waters southwest of the Dongsha Islands[J]. Journal of Tropical Oceanography, 2016, 35(5): 88-96.

    Google Scholar

    [60] 陈森, 阎贫, 王彦林.东沙群岛西南泥火山区Chirp浅剖数据的海底物性反演[J].地球科学, 2016, 41(3): 425-432.

    Google Scholar

    CHEN Sen, YAN Pin, WANG Yanlin. Inversion of the physical properties of the seabed using chirp sub-bottom data in mud volcanoes field of the southwest of Dongsha island[J]. Earth Science, 2016, 41(3): 425-432.

    Google Scholar

    [61] 阎贫, 王彦林, 郑红波, 等.东沙群岛西南海区泥火山的地球物理特征[J].海洋学报, 2014, 36(7): 142-148. doi: 10.3969/j.issn.0253-4193.2014.07.016

    CrossRef Google Scholar

    YAN Pin, WANG Yanlin, ZHENG Hongbo, et al. Geophysical features of mud volcanoes in the waters southwest of the Dongsha Islands[J]. Acta Oceanologica Sinica, 2014, 36(7): 142-148. doi: 10.3969/j.issn.0253-4193.2014.07.016

    CrossRef Google Scholar

    [62] Wang S H, Yan W, Magalh?es H V, et al. Calcium isotope fractionation and its controlling factors over authigenic carbonates in the cold seeps of the northern South China Sea[J]. Chinese Science Bulletin, 2012, 57(11): 1325-1332. doi: 10.1007/s11434-012-4990-9

    CrossRef Google Scholar

    [63] Milkov A V, Sassen R, Apanasovich T V, et al. Global gas flux from mud volcanoes: a significant source of fossil methane in the atmosphere and the ocean[J]. Geophysical Research Letters, 2003, 30(2): 1037.

    Google Scholar

    [64] Alizadeh A, Guliyev I S, Kadirov F A, et al. Geosciences of Azerbaijan: Volume I: Geology[M]. Switzerland: Springer, 1-246.

    Google Scholar

    [65] Kopf A J. Significance of mud volcanism[J]. Reviews of Geophysics, 2002, 40(2): 1005. doi: 10.1029/2000RG000093

    CrossRef Google Scholar

    [66] Yusifov M, Rabinowitz P D. Classification of mud volcanoes in the south Caspian basin, offshore Azerbaijan[J]. Marine and Petroleum Geology, 2004, 21(8): 965-975. doi: 10.1016/j.marpetgeo.2004.06.002

    CrossRef Google Scholar

    [67] Campbell K A, Farmer J D, Des Marais D. Ancient hydrocarbon seeps from the Mesozoic convergent margin of California: carbonate geochemistry, fluids and palaeoenvironments[J]. Geofluids, 2002, 2(2): 63-94. doi: 10.1046/j.1468-8123.2002.00022.x

    CrossRef Google Scholar

    [68] Curtis A C, Wheat C G, Fryer P, et al. Mariana forearc serpentinite mud volcanoes harbor novel communities of extremophilic Archaea[J]. Geomicrobiology Journal, 2013, 30(5): 430-441. doi: 10.1080/01490451.2012.705226

    CrossRef Google Scholar

    [69] Suess E. Marine cold seeps and their manifestations: geological control, biogeochemical criteria and environmental conditions[J]. International Journal of Earth Sciences, 2014, 103(7): 1889-1916. doi: 10.1007/s00531-014-1010-0

    CrossRef Google Scholar

    [70] 王先彬, 欧阳自远, 卓胜广, 等.蛇纹石化作用、非生物成因有机化合物与深部生命[J].中国科学:地球科学, 2014, 44(6): 1096-1106.

    Google Scholar

    WANG Xianbin, OUYANG Ziyuan, ZHUO Shengguang, et al. Serpentinization, abiogenic organic compounds, and deep life[J]. Science China Earth Sciences, 2014, 44(6): 1096-1106.

    Google Scholar

    [71] 高小其, 梁卉, 王海涛, 等.北天山地区泥火山的地球化学成因[J].地震地质, 2015, 37(4): 1215-1224. doi: 10.3969/j.issn.0253-4967.2015.04.021

    CrossRef Google Scholar

    GAO Xiaoqi, LIANG Hui, WANG Haitao, et al. Origin of the mud volcano in northern Tianshan constrained by geochemical investigation[J]. Seismology and Geology, 2015, 37(4): 1215-1224. doi: 10.3969/j.issn.0253-4967.2015.04.021

    CrossRef Google Scholar

    [72] 解超明, 李才, 李林庆, 等.藏北羌塘中部首次发现泥火山[J].地质通报, 2009, 28(9): 1319-1324. doi: 10.3969/j.issn.1671-2552.2009.09.021

    CrossRef Google Scholar

    XIE Chaoming, LI Cai, LI Linqing, et al. First discovery of mud volcanoes in central Qiangtang, northern Tibet, China[J]. Geological Bulletin of China, 2009, 28(9): 1319-1324. doi: 10.3969/j.issn.1671-2552.2009.09.021

    CrossRef Google Scholar

    [73] 陈秉范.四川盆地式泥火山的发现[J].地质论评, 1946, 11(S1): 65-70.

    Google Scholar

    CHENG Bingfan. Discovery of mud volcano in Sichuan Basin[J]. Geological Review, 1946, 11(S1): 65-70.

    Google Scholar

    [74] 陈忠, 杨华平, 黄奇瑜, 等.南海东沙西南海域冷泉碳酸盐岩特征及其意义[J].现代地质, 2008, 22(3): 382-389. doi: 10.3969/j.issn.1000-8527.2008.03.006

    CrossRef Google Scholar

    CHEN Zhong, YANG Huaping, HUANG Qiyu, et al. Diagenetic environment and implication of seep carbonate precipitations from the southwestern Dongsha Area, South China Sea[J]. Geoscience, 2008, 22(3): 382-389. doi: 10.3969/j.issn.1000-8527.2008.03.006

    CrossRef Google Scholar

    [75] 刘金龙, 王淑红, 颜文.海洋天然气水合物与深水油气共生关系探讨[J].热带海洋学报, 2015, 34(2): 39-51. doi: 10.3969/j.issn.1009-5470.2015.02.006

    CrossRef Google Scholar

    LIU Jinlong, WANG Shuhong, YAN Wen. Research on coexistence between marine gas hydrate and deepwater oil[J]. Journal of Tropical Oceanography, 2015, 34(2): 39-51. doi: 10.3969/j.issn.1009-5470.2015.02.006

    CrossRef Google Scholar

    [76] Mastalerz V, de Lange G J, D?hlmann A, et al. Active venting at the Isis mud volcano, offshore Egypt: origin and migration of hydrocarbons[J]. Chemical Geology, 2007, 246(1-2): 87-106. doi: 10.1016/j.chemgeo.2007.09.005

    CrossRef Google Scholar

    [77] 段海岗, 陈开远, 史卜庆.南里海盆地泥火山构造及其对油气成藏的影响[J].石油与天然气地质, 2007, 28(3): 337-344. doi: 10.3321/j.issn:0253-9985.2007.03.006

    CrossRef Google Scholar

    DUAN Haigang, CHEN Kaiyuan, SHI Buqing. Mud volcano structure in South Caspian Basin and its impact upon hydrocarbon accumulation[J]. Oil & Gas Geology, 2007, 28(3): 337-344. doi: 10.3321/j.issn:0253-9985.2007.03.006

    CrossRef Google Scholar

    [78] 刘杰, 孙美静, 苏明, 等.海底泥火山特征及其与天然气水合物的成矿关系[J].海洋地质前沿, 2015, 31(8): 53-61.

    Google Scholar

    LIU Jie, SUN Meijing, SU Ming, et al. Submarine mud volcano and its relationship with gas hydrate[J]. Marine Geology Frontiers, 2015, 31(8): 53-61.

    Google Scholar

    [79] Bohrmann G, Ivanov M, Foucher J P, et al. Mud volcanoes and gas hydrates in the black sea: new data from Dvurechenskii and odessa mud volcanoes[J]. Geo-Marine Letters, 2003, 23(3-4): 239-249. doi: 10.1007/s00367-003-0157-7

    CrossRef Google Scholar

    [80] 王家生, 高钰涯, 李清, 等.沉积物粒度对水合物形成的制约:来自IODP 311航次证据[J].地球科学进展, 2007, 22(7): 659-665. doi: 10.3321/j.issn:1001-8166.2007.07.001

    CrossRef Google Scholar

    WANG Jiasheng, GAO Yuya, LI Qing, et al. Grain size constraint on gas hydrate occurrence: evidence from sediment size during IODP 311[J]. Advances in Earth Science, 2007, 22(7): 659-665. doi: 10.3321/j.issn:1001-8166.2007.07.001

    CrossRef Google Scholar

    [81] Torres M E, Tréhu A M, Cespedes N, et al. Methane hydrate formation in turbidite sediments of northern Cascadia, IODP Expedition 311[J]. Earth and Planetary Science Letters, 2008, 271(1-4): 170-180. doi: 10.1016/j.epsl.2008.03.061

    CrossRef Google Scholar

    [82] Ginsburg G, Soloviev V, Matveeva T, et al. Sediment grain-size control on gas hydrate presence, site 994, 995, and 997[C]//Proceedings of the Ocean Drilling Program. Science Letter. Ocean Drilling Program, 2000.

    Google Scholar

    [83] 吴能友, 梁金强, 王宏斌, 等.海洋天然气水合物成藏系统研究进展[J].现代地质, 2008, 22(3): 356-362. doi: 10.3969/j.issn.1000-8527.2008.03.003

    CrossRef Google Scholar

    WU Nengyou, LIANG Jinqiang, WANG Hongbin, et al. Marine gas hydrate system: state of the art[J]. Geoscience, 2008, 22(3): 356-362. doi: 10.3969/j.issn.1000-8527.2008.03.003

    CrossRef Google Scholar

    [84] 宋海斌, 张岭, 江为为, 等.海洋天然气水合物的地球物理研究(Ⅲ): 似海底反射[J].地球物理学进展, 2003, 18(2): 182-187.http://www.cnki.com.cn/Article/CJFDTotal-DQWJ200303027.htm

    Google Scholar

    SONG Haibin, ZHANG Ling, JIANG Weiwei, et al. Geophysical researches on marine gas hydrates (Ⅲ): bottom simulating reflections[M]. Progress in Geophysics, 2003, 18(2): 182-187.

    Google Scholar

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