用户名: 密码: 验证码:
中下寒武统海相地层地球化学特征及油气地质意义——以塔里木盆地柯坪地区为例
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Geochemical characteristics and geological significance for petroleum of the Middle-Lower Cambrian marine strata:A case study of Keping area in the Tarim basin
  • 作者:范青青 ; 卢双舫 ; 李文浩 ; 潘文庆 ; 张宝收 ; 张钰莹 ; 谭昭昭
  • 英文作者:FAN Qingqing;LU Shuangfang;LI Wenhao;PAN Wenqing;ZHANG Baoshou;ZHANG Yuying;TAN Zhaozhao;School of Geosciences,China University of Petroleum;PetroChina Tarim Oilfield Company;
  • 关键词:塔里木盆地 ; 中下寒武统 ; 氧化还原 ; 沉积环境 ; 碳同位素
  • 英文关键词:Tarim basin;;Middle-Lower Cambrian;;redox;;sedimentary environment;;carbon isotope
  • 中文刊名:ZGKD
  • 英文刊名:Journal of China University of Mining & Technology
  • 机构:中国石油大学(华东)地球科学与技术学院;中国石油塔里木油田分公司;
  • 出版日期:2018-09-03 17:40
  • 出版单位:中国矿业大学学报
  • 年:2019
  • 期:v.48;No.227
  • 基金:国家科技重大专项(2016ZX05004-004,2016ZX05061)
  • 语种:中文;
  • 页:ZGKD201902016
  • 页数:18
  • CN:02
  • ISSN:32-1152/TD
  • 分类号:152-169
摘要
为了进一步研究塔里木盆地寒武系海相地层垂相上的沉积环境演化特征和油气地质条件,本文以塔西北柯坪地区肖尔布拉克剖面中、下寒武统为研究对象,通过镜下观察、主量元素、微量元素、稀土元素以及碳氧同位素测试分析,探讨了该套地层的地球化学特征、沉积环境以及油气地质意义,并为地层对比提供依据以及在全球背景下碳同位素负漂移的原因进行分析,认为塔里木盆地寒武系油气生、储、盖层的发育受控于沉积环境的演化.研究结果表明:1)氧化还原指标Th/U,Ni/Co,δU等指示寒武系玉尔吐斯组、肖尔布拉克组、沙依里克组为缺氧的沉积环境,吾松格尔组为氧化环境,阿瓦塔格组指示强烈的氧化环境,其氧化还原环境受海平面变化的控制;2)玉尔吐斯组存在明显δEu正异常,δEu值高达61.60,并且大量富集Ba和Zn元素,结合主量元素协变图,认为受到热液作用的影响,热液作用携带的大量营养元素促进生物勃发,有利于有机质生成;而缺氧的沉积环境有利于有机质的保存,玉尔吐斯组有机质的富集主要受控于氧化还原条件;3)中-下寒武统分界线处存在着明显的δ~(13)C负漂移("ROECE"事件),δ~(13)C的漂移幅度为9.21‰,结合微量元素分析,认为是发生全球性海平面上升过程中,底层δ~(13)C亏损的缺氧水体上涌导致,研究区的δ~(13)C负漂移可与全球其他地区的"ROECE"事件进行对比,可作为地层对比的依据;4)玉尔吐斯组形成于缺氧的盆地-斜坡环境,富集大量有机质,是优质的烃源岩层;肖尔布拉克组发育于高能的台地边缘斜坡环境,其中-上段的微生物碳酸盐岩是良好的储集层;阿瓦塔格组形成于强烈氧化的蒸发环境,膏岩层发育,可作为有效的盖层;玉尔吐斯组的优质烃源岩、肖尔布拉克组的微生物碳酸盐岩以及阿瓦塔格组的膏岩层构成一套良好的生储盖组合,具有优越的成藏条件,是深层油气勘探的有利区带.
        To study the evolution characteristics of the vertical depositional environment and petroleum geological condition of Cambrian marine strata in Tarim basin in further,this paper focused on the Middle-Lower Cambrian strata in the Xiaoerbulake section of the Keping area in the northwest of Tarim basin.Based on the analysis of microscopic observation,major elements,trace elements,rare earth elements,carbon and oxygen isotopes,the geochemical characteristics,sedimentary environment and the geological significance of the studied strata were discussed,moreover,the analyzing basis of stratigraphic correlation and the negative drift of carbon isotopes under the global background were provided.It is concluded that the development of hydrocarbon source rocks,reservoir and cap rocks is controlled by sedimentary environment evolution.The results show that:1)Redox indexes such as Th/U,Ni/Co,U indicate that the Yuertusi,Xiaoerbulake and Shayilike formations in the Cambrian are rich in redox sensitive elements,which deposit under anoxic sedimentary environment.While Wusonggeer formation is formed in oxidation environment,and Awatage formation is deposited in a strong oxidizing environment,and its redox environment is controlled by eustatic sea level change.2)An obvious positive Eu anomaly,with the value of up to 61.60,can be found in Yuertusi formation,meanwhile,some elements such as Ba,Zn are enriched.Combined with major elements covariation diagram,it is suggested that hydrothermal activity might influence the deposition in this stage.A large number of nutrient elements carried by hydrothermal activities promote biological prosperity and are beneficial to the generation of organic matter.The anoxic sedimentary environment in Yuertusi formation is favorable for the preservation of organic matter.The enrichment of organic matter is mainly controlled by redox conditions.3)A significant δ~(13)C negative drift of 9.21‰is observed at the boundary of the Middle-Lower Cambrian("ROECE"event).The trace elements and carbon isotopic data suggest that the reason leading to the negative δ~(13)C drift might be the upwelling of anoxic water with δ~(13)C deficit in the bottom,during the global sea level rising.The δ~(13)C negative drift in the study area can be compared with the"ROECE"in other areas of the world,which can be used as an evidence for stratigraphic correlation.4)The Yuertusi formation is composed of high-quality source rocks with abundant organic matter and formed in an anoxic basin-slope environment which is conducive to the preservation of organic matter.The Xiaoerbulake formation is developed in a platform marginal slope environment with high energy,in which the bio-carbonates in the upper section is favorable porous reservoir.The uppermost strata Awatage formation is deposited in strongly oxidized evaporation situation,where gypsum layers are developed and can be regarded as effective cap rocks.The high-quality source rocks in the Yuertusi formation,the reservoir of bio-carbonate rocks in the Xiaoerbulake formation and the gypsum rocks in the Awatage formation constitute a set of effective source-reservoir-cap assemblage,which forms the favorable zone for deep oil and gas exploration.
引文
[1]杜金虎,潘文庆.塔里木盆地寒武系盐下白云岩油气成藏条件与勘探方向[J].石油勘探与开发,2016,43(3):327-339.DU Jinhu,PAN Wenqing.Accumulation conditions and play targets of oil and gas in the Cambriansubsalt dolomite,Tarim basin,NW China[J].Petroleum Exploration and Development,2016,43(3):327-339.
    [2]陈强路,杨鑫,储呈林,等.塔里木盆地寒武系烃源岩沉积环境再认识[J].石油与天然气地质,2015,36(6):880-887.CHEN Qianglu,YANG Xin,CHU Chenglin,et al.Recognition of depositional environment of Cambrian source rocks in Tarim basin[J].Oil&Gas Geology,2015,36(6):880-887.
    [3]杨福林,云露,王铁冠,等.塔里木盆地寒武系源岩地化特征及与典型海相原油对比[J].石油与天然气地质,2017,38(5):851-861.YANG Fulin,YUN Lu,WANG Tieguan,et al.Geochemical characteristics of the Cambrian source rocks in the Tarim basin and oil-source correlation with typical marine crude oil[J].Oil&Gas Geology,2017,38(5):851-861.
    [4]张光亚,刘伟,张磊,等.塔里木克拉通寒武纪-奥陶纪原型盆地、岩相古地理与油气[J].地学前缘,2015,22(3):269-276.ZHANG Guangya,LIU Wei,ZHANG Lei,et al.Cambrian-Ordovician prototypic basin,paleogeography and petroleum of Tarim craton[J].Earth Science Frontiers,2015,22(3):269-276.
    [5]肖朝晖,王招明,姜仁旗,等.塔里木盆地寒武系碳酸盐岩层序地层特征[J].石油与天然气地质,2011,32(1):1-10.XIAO Zhaohui,WANG Zhaoming,JIANG Renqi,et al.Sequence stratigraphic features of the Cambrian carbonate rocks in the Tarim basin[J].Oil&Gas Geology,2011,32(1):1-10.
    [6]冯增昭,鲍志东,吴茂炳,等.塔里木地区寒武纪岩相古地理[J].古地理学报,2006,8(4):427-439.FENG Zengzhao,BAO Zhidong,WU Maobing,et al.Lithofacies palaeogeography of the Cambrian in Tarim area[J].Frontiers of Earth Science in China,2006,8(4):427-439.
    [7]于炳松,陈建强,林畅松.塔里木地台北部寒武纪-奥陶纪层序地层及其与扬子地台和华北地台的对比[J].中国科学(地球科学),2001,31(1):17-26.YU Bingsong,CHEN Jianqiang,LIN Changsong.The Cambrian-Ordovician sequence stratigraphy on the northern Tarim platform and its correlation with Yangtze platform and the north China platform[J].Science China Earth Sciences,2001,31(1):17-26.
    [8]MONTANEZ I,P,OSLEGER,D.A,et al.Evolution of the Sr and C isotope composition of Cambrian oceans[J].Gsa Today,2000,10(5):1-5.
    [9]ROMANEK C S,GROSSMAN E L,MORSE J W.Carbon isotopic fractionation in synthetic aragonite and calcite:Effects of temperature and precipitation rate[J].Geochimica Et Cosmochimica Acta,1992,56(1):419-430.
    [10]ZHU M Y,BABCOCK L E,PENG S C.Advances in Cambrian stratigraphy and paleontology:Integrating correlation techniques,paleobiology,taphonomy and paleoenvironmental reconstruction[J].Palaeoworld,2006,15(3):217-222.
    [11]BRASIER M D,SUKHOV S S.The falling amplitude of carbon isotopic oscillations through the Lowe[J].Revue Canadienne Des Sciences De La Terre,1998,35(35):353-373.
    [12]ZHU M Y,ZHANG J M,et al.Evolution of C isotopes in the Cambrian of China:implications for Cambrian subdivision and trilobite mass extinctions[J].Geobios,2004,37(2):287-301.
    [13]王小林,胡文瑄,李庆,等.塔里木盆地蓬莱坝剖面寒武系第二-第三统界线处碳同位素负异常及其地质意义[J].地质论评,2011,57(1):16-23.WANG Xiaolin,HU Wenxuan,LI Qing,et al.Negative carbon isotope excursion on the Cambrian Series2-Series 3boundary for Penglaiba section in Tarim basin and its significances[J].Geological Review,2011,57(1):16-23.
    [14]CHANG C,HU W,WANG X,et al.Carbon isotope stratigraphy of the lower to middle Cambrian on the eastern Yangtze Platform,South China[J].Palaeogeography Palaeoclimatology Palaeoecology,2017,479:90-101.
    [15]GUO Q,STRAUSS H,LIU C,et al.A negative carbon isotope excursion defines the boundary from Cambrian Series 2to Cambrian Series 3on the Yangtze Platform,south China[J].Palaeogeography Palaeoclimatology Palaeoecology,2010,288(4):118-118.
    [16]ZHANG W,SHI X,JIANG G,et al.Mass-occurrence of oncoids at the Cambrian Series 2-Series 3transition:Implications for microbial resurgence following an Early Cambrian extinction[J].Gondwana Research,2015,28(1):432-450.
    [17]FAGGETTER L E,WIGNALL P B,PRUSS S B,et al.Trilobite extinctions,facies changes and the RO-ECE carbon isotope excursion at the Cambrian Series 2-3boundary,Great basin,western USA[J].Palaeogeography Palaeoclimatology Palaeoecology,2017,478:53-66.
    [18]何登发,贾承造,李德生,等.塔里木多旋回叠合盆地的形成与演化[J].石油与天然气地质,2005,26(1):64-77.HE Dengfa,JIA Chengzao,LI Desheng,et al.Formation and evolution of polycyclic superimposed Tarim basin[J].Oil&Gas Geology,2005,26(1):64-77.
    [19]张光亚,赵文智,王红军,等.塔里木盆地多旋回构造演化与复合含油气系统[J].石油与天然气地质,2007,28(5):653-663.ZHANG Guangya,ZHAO Wenzhi,WANGHongjun,et al.Multicycle tectonic evolution and composite petroleum systems in the Tarim basin[J].Oil&Gas Geology,2007,28(5):653-663.
    [20]张臣,郑多明,李江海.柯坪断隆古生代的构造属性及其演化特征[J].石油与天然气地质,2001,22(4):314-318.ZHANG Chen,ZHENG Duoming,LI Jianghai.Attribute of Paleozoic structures and its evolution characteristics in Keping fault-uplift[J].Oil&Gas Geology,2001,22(4):314-318.
    [21]WOTTE T,LVARO J J,SHIELDS G A,et al.C-,O-and Sr-isotope stratigraphy across the LowerMiddle Cambrian transition of the Cantabrian zone(Spain)and the Montagne Noire(France),west Gondwana[J].Palaeogeography Palaeoclimatology Palaeoecology,2007,256(1/2):47-70.
    [22]胡文瑄,朱井泉,王小林,等.塔里木盆地柯坪地区寒武系微生物白云岩特征、成因及意义[J].石油与天然气地质,2014,35(6):860-869.HU Wenxuan,ZHU Jingquan,WANG Xiaolin,et al.Characteristics,origin and geological implications of the Cambrian microbial dolomite in Keping area,Tarim basin[J].Oil&Gas Geology,2014,35(6):860-869.
    [23]汪宗欣,吕修祥,钱文文.寒武系海相碳酸盐岩元素地球化学特征及其油气地质意义:以塔里木盆地柯坪地区肖尔布拉克组为例[J].天然气地球科学,2017,28(7):1085-1095.WANG Zongxin,LXiuxiang,QIAN wenwen,et al.Geochemical characteristics of the Cambrian marine carbonate elements and its petroleum geological significance:Case study of Xiaoerbulake formation in Keping area of Tairm basin[J].Natural Gas Geoscience,2017,28(7):1085-1095.
    [24]PIPER D Z,PERKINS R B.A modern vs.Permian black shale:the hydrography,primary productivity,and water-column chemistry of deposition[J].Chemical Geology,2004,206(3/4):177-197.
    [25]RIQUIER L,TRIBOVILLARD N,AVERBUCH O,et al.The Late Frasnian Kellwasser horizons of the Harz Mountains(Germany):Two oxygen-deficient periods resulting from different mechanisms[J].Chemical Geology,2006,233(1/2):137-155.
    [26]YOUNG G M.Some aspects of the geochemistry,provenance and palaeoclimatology of the Torridonian of NW Scotland[J].Journal of the Geological Society,1999,156(6):1097-1111.
    [27]LAWRENCE M G,GREIG A,COLLERSON K D,et al.Rare earth element and yttrium variability in south east Queensland Waterways[J].Aquatic Geochemistry,2006,12(1):39-72.
    [28]胡文瑄,陈琪,王小林,等.白云岩储层形成演化过程中不同流体作用的稀土元素判别模式[J].石油与天然气地质,2010,31(6):810-818.HU Wenxuan,CHEN Qi,WANG Xiaolin,et al.REE models for the discrimination of fluids in the formation and evolution of dolomite reservoirs[J].Oil&Gas Geology,2010,31(6):810-818.
    [29]黄擎宇,胡素云,潘文庆,等.台内微生物丘沉积特征及其对储层发育的控制:以塔里木盆地柯坪-巴楚地区下寒武统肖尔布拉克组为例[J].天然气工业,2016,36(6):21-29.HUANG Qingyu,HU Suyun,PAN Wenqing,et al.Sedimentary characteristics of intra-platform microbial mounds and their controlling effects on the development of reservoirs:A case study of the Lower Cambrian Xiaoerbulake Fm in the Keping-Bachu area,Tarim basin[J].Natural Gas Industry,2016,36(6):21-29.
    [30]宋金民,罗平,杨式升,等.塔里木盆地下寒武统微生物碳酸盐岩储集层特征[J].石油勘探与开发,2014,41(4):404-413.SONG Jinmin,LUO Ping,YANG Shisheng,et al.Reservoirs of Lower Cambrian microbial carbonates,Tarim basin,NW China[J].Petroleum Exploration and Development,2014,41(4):449-459.
    [31]杨宗玉,罗平,刘波,等.塔里木盆地阿克苏地区下寒武统玉尔吐斯组硅质岩分类及成因[J].地学前缘,2017,24(5):245-264.YANG Zongyu,LUO Ping,LIU Bo,et al.Analysis of petrological characteristics and origin of siliceous rocks during the earliest Cambrian Yurtus formation in the Aksu area of the Tarim basin in northwest China[J].Earth Science Frontiers,2017,24(5):245-264.
    [32]杨宗玉,罗平,刘波,等.早寒武世早期热液沉积特征:以塔里木盆地西北缘玉尔吐斯组底部硅质岩系为例[J/OL].地球科学,(2018-06-22)[2018-06-26]http://kns.cnki.net/kcms/detail/42.1874.P.20170307.0912.002.html.YANG Zongyu,LUO Ping,LIU Boet al.The Depositional characteristics of earliest Cambrian hydrothermal fluid:a case study of siliceous rocks from Yurtus formation in the Aksu area of Tarim basin,northwest China[J/OL].Earth Science,(2018-06-22)[2018-06-26]http://kns.cnki.net/kcms/detail/42.1874.P.20170307.0912.002.html.
    [33]张琴,梁峰,王红岩,等.页岩元素地球化学特征及古环境意义:以渝东南地区五峰-龙马溪组为例[J].中国矿业大学学报,2018,47(2):380-390.ZHANG Qin,LIANG Feng,WANG Hongyan,et al.Elements geochemistry and paleo sedimentary significance:A case study of the Wufeng-Longmaxi shale in southeast Chongqing[J].Journal of China University of Mining&Technology,2018,47(2):380-390.
    [34]常华进,储雪蕾,冯连君,等.氧化还原敏感微量元素对古海洋沉积环境的指示意义[J].地质论评,2009,55(1):91-99.CHANG Huajing,CHU Xuelei,FENG Lianjun,et al.Redox sensitive trace elements as paleoenvironments proxies[J].Geological Review,2009,55(1):91-99.
    [35]韦恒叶.古海洋生产力与氧化还原指标:元素地球化学综述[J].沉积与特提斯地质,2012,32(2):76-88.WEI Hengye.Productivity and redox proxies of palaeo-oceans:An overview of elementary geochemistry[J].Sedimentary Geology&Tethyan Geology,2012,32(2):76-88.
    [36]WIGNALL P B,TWITCHETT R J.Oceanic anoxia and the End Permian Mass Extinction[J].Science,1996,272(5265):1155.
    [37]吴朝东,杨承运,陈其英.湘西黑色岩系地球化学特征和成因意义[J].岩石矿物学杂志,1999(1):26-39.WU Chaodong,YANG chengyun,CHEN Qiying.The origin and geochemical characteristics of Upper Sinain_Lower Cambrian black shales in western Hunan[J].Acta Petrrologica Et Mineralogica,1999(1):26-39.
    [38]JONES B,MANNING D A C.Comparison of geochemical indices used for the interpretation of palaeoredox conditions in ancient mudstones[J].Chemical Geology,1994,111(111):111-129.
    [39]MURRAY R W,BRINK M R B T,GERLACH DC,et al.Rare earth,major,and trace element composition of Monterey and DSDP chert and associated host sediment:Assessing the influence of chemical fractionation during diagenesis[J].Geochimica Et Cosmochimica Acta,1992,56(7):2657-2671.
    [40]WEBB G E,KAMBER B S.Rare earth elements in Holocene reefal microbialites:a new shallow seawater proxy[J].Geochimica Et Cosmochimica Acta,2000,64(9):1557-1565.
    [41]陈践发,孙省利,刘文汇,等.塔里木盆地下寒武统底部富有机质层段地球化学特征及成因探讨[J].中国科学(D辑),2004,(增刊1):107-113.CHEN,Jianfa,SUN Shengli,LIU Wenhui et al.Geochemical characteristics of organic matter-rich strata of lower Cambrian in Tarim basin and its origin[J].Science China(Sreies D),2004,47(Sup 1):125-132.
    [42]TRIBOVILARD N,ALGEO T J,LYONS T,et al.Trace metals as paleoredox and paleoproductivity proxies:An update[J].Chemical Geology,2006,232(1):12-32.
    [43]KAUFMAN A J,JACOBSEN S B,KNOLL A H.The Vendian record of Sr and C isotopic variations in seawater:Implications for tectonics and paleoclimate[J].Earth&Planetary Science Letters,1993,120(3/4):409-430.
    [44]KAUFMAN A J,KNOLL A H.Neoproterozoic variations in the C-isotopic composition of seawater:stratigraphic and biogeochemical implications[J].Precambrian Research,1995,73(1/4):27-49.
    [45]郑剑锋,沈安江,刘永福,等.多参数综合识别塔里木盆地下古生界白云岩成因[J].石油学报,2012,33(增刊2):145-153.ZHENG Jianfeng,SHEN Anjiang,LIU Yongfu et al.Multi-parameter comprehensive identification of the genesis of Lower Paleozoic dolomite in Tarim basin,China[J].Acta Petrolei Sinica,2012,33(Sup2):145-153.
    [46]JACOBSEN S B,KAUFMAN A J.The Sr,C and Oisotopic evolution of Neoproterozoic seawater[J].Chemical Geology,1999,161(1/3):37-57.
    [47]JARVIS I,GALE A S,JENKYNS H C,et al.Secular variation in Late Cretaceous carbon isotopes:a newδ13 C carbonate reference curve for the Cenomanian-Campanian(99.6-70.6 Ma)[J].Geological Magazine,2006,143(5):561-608.
    [48]KUMP L R.Interpreting carbon-isotope excursions:Strangelove oceans[J].Geology,1991,19(4):299-302.
    [49]KUMP L R,ARTHUR M A.Interpreting carbon-isotope excursions:carbonates and organic matter[J].Chemical Geology,1999,168(1/3):181-198.
    [50]KIMURA H,MATSUMOTO R,KAKUWA Y,et al.The Vendian-Cambrianδ13 C record,North Iran:evidence for overturning of the ocean before the Cambrian Explosion[J].Earth&Planetary Science Letters,1997,147(1):1-7.
    [51]SCHRODER S,GROTZINGER J P.Evidence for anoxia at the Ediacaran-Cambrian boundary:The record of redox-sensitive trace elements and rare earth elements in Oman[J].Journal of the Geological Society,2007,164(1):175-187.
    [52]KRULL E.S.,RETALLACK G.J.,CAMPBELLH.J.,et al.δ13Corg chemostratigraphy of the Permian‐Triassic boundary in the Maitai Group,New Zealand:Evidence for high-latitudinal methane release[J].New Zealand Journal of Geology&Geophysics,2000,43(1):21-32.
    [53]樊茹,邓胜徽,张学磊.寒武系碳同位素漂移事件的全球对比性分析[J].中国科学(地球科学),2011,41(12):1829-1839.FAN Ru,DENG Shenghui,ZHANG Xuelei.Significant carbon isotope excursions in the Cambrian and their implications for global correlations[J].Science China Earth Sciences,2011,54(11):1686-1695.
    [54]杨瑞东,王世杰,杨瑞东,等.贵州台江中、下寒武统界线附近碳同位素负异常的生物和地层意义[J].中国科学(地球科学),2002,32(6):500-506.YANG Ruidong,WANG Shijie,YANG Ruidong et al.Negative abnormal signals of carbon isotope near the Lower-Middle Cambrian boundary in Taijiang,Guizhou Province:The biologic and stratigraphic significances[J].Science China Earth Sciences,2002,32(6):500-506.
    [55]HOUGH M L,SHIELDS G A,EVINS L Z,et al.Amajor sulphur isotope event at c.510Ma:apossible anoxia-extinction-volcanism connection during the Early-Middle Cambrian transition?[J].Terra Nova,2006,18(4):257-263.
    [56]王招明,谢会文,陈永权,等.塔里木盆地中深1井寒武系盐下白云岩原生油气藏的发现与勘探意义[J].中国石油勘探,2014,19(2):1-13.WANG Zhaoming,XIE Huiwen,CHEN Yongquan,et al.Discovery and exploration of Cambrian subsalt dolomite original hydrocarbon reservoir at Zhongshen-1Well in Tarim basin[J].China Petroleum Exploration,2014,19(2):1-13.
    [57]倪新锋,黄理力,陈永权,等.塔中地区深层寒武系盐下白云岩储层特征及主控因素[J].石油与天然气地质,2017,38(3):489-498.NI Xinfeng,HUANG Lili,CHEN Yongquan,et al.Characteristics and main controlling factors of the Cambrian pre-salt dolomite reservoirs in Tazhong block,Tarim basin[J].Oil&Gas Geology,2017,38(3):489-498.
    [58]张水昌,张宝民,边立曾,等.中国海相烃源岩发育控制因素[J].地学前缘,2005,12(3):39-48.ZHANG Shuichang,ZHANG Baomin,BIAN Lizeng,et al.Development constraints of marine source rocks in China[J].Earth Science Frontiers,2005,12(3):39-48.
    [59]陈践发,张水昌,孙省利,等.海相碳酸盐岩优质烃源岩发育的主要影响因素[J].地质学报,2006,80(3):467-472.CHEN Jianfa,ZHANG Shuichang,SUN Shengli,et al.Main factors influencing marine carbonate source rock formation[J].Acta Geologica Sinica,2006,80(3):467-472.
    [60]李艳芳,邵德勇,吕海刚,等.四川盆地五峰组-龙马溪组海相页岩元素地球化学特征与有机质富集的关系[J].石油学报,2015,36(12):1470-1483.LI Yanfang,SHAO Deyong,LHaigang,et al.Arelationship between elemental geochemical characteristics and organic matter enrichment in marine shale of Wufeng formation-Longmaxi formation,Sichuan basin[J].Acta Petrolei Sinica,2015,36(12):1470-1483.
    [61]YU B,DONG H,WIDOM E,et al.Geochemistry of basal Cambrian black shales and cherts from the northern Tarim basin,northwest China:Implications for depositional setting and tectonic history[J].Journal of Asian Earth Sciences,2009,34(3):418-436.
    [62]朱光有,陈斐然,陈志勇,等.塔里木盆地寒武系玉尔吐斯组优质烃源岩的发现及其基本特征[J].天然气地球科学,2016,27(1):8-21.ZHU Guangyou,CHEN Feiran,CHEN Zhiyong,et al.Discovery and basic characteristics of the highquality source rocks of the Cambrian Yuertusi formation in Tarim basin[J].Natural Gas Geoscience,2016,1(1):21-33.
    [63]熊冉,周进高,倪新锋,等.塔里木盆地下寒武统玉尔吐斯组烃源岩分布预测及油气勘探的意义[J].天然气工业,2015,35(10):49-56.XIONG Ran,ZHOU Jingao,NI Xinfeng,et al.Distribution prediction of Lower Cambrian Yuertusi formation source rocks and its significance to oil and gas exploration in the Tarim basin[J].Natural Gas Industry,2015,35(10):49-56.
    [64]沈俊,施张燕,冯庆来.古海洋生产力地球化学指标的研究[J].地质科技情报,2011,30(2):69-77.SHEN Jun,SHI Zhangyan,FENG Qinglai.Review on geochemical proxies in paleo-productivity studies[J].Geological Science&Technology Information,2011,30(2):69-77.
    [65]杨宗玉,罗平,刘波,等.塔里木盆地阿克苏地区下寒武统玉尔吐斯组两套黑色岩系的差异及成因[J].岩石学报,2017,33(6):1893-1918.YANG Zongyu,LUO Ping,LIU Bo,et al.The difference and sedimentation of two black rock series from Yurtus formation during the earliest Cambrian in the Aksu area of Tarim basin,northwest China[J].Acta Petrologica Sinica,2017,33(6):1893-1918.
    [66]樊奇,樊太亮,李一凡,等.塔里木地台北缘早寒武世古海洋氧化-还原环境与优质海相烃源岩发育模式[J/OL].地球科学,(2018-06-19)[2018-06-26]http://kns.cnki.net/kcms/detail/42.1874.P.20180615.1045.018.html.FAN Qi,FAN Tailiang,LI Yifan,et al.Paleo-marine redox conditions and development pattern of highquality marine source rocks of the Early Cambrian,the northern Tarim platform[J/OL].Earth Science,(2018-06-19)[2018-06-26]http://kns.cnki.net/kcms/detail/42.1874.P.20180615.1045.018.html.
    [67]邓世彪,关平,庞磊,等.塔里木盆地柯坪地区肖尔布拉克组优质微生物碳酸盐岩储层成因[J/OL].沉积学报,(2018-04-12)[2018-06-26]https://doi.org/10.14027/j.issn.1000-0550.2018.084DENG Shibiao,GUAN ping,PANG Lei et al.Genesis of excellent Xiaoerbulak microbial carbonate reservoir in the Kalpin area of Tarim basin[J/OL].Acta Sedimentologica Sinica,(2018-04-12)[2018-06-26]https://doi.org/10.14027/j.issn.1000-0550.2018.084.
    [68]李朋威,罗平,宋金民,等.微生物碳酸盐岩储层特征与主控因素:以塔里木盆地西北缘上震旦统-下寒武统为例[J].石油学报,2015,36(9):1074-1089.LI Pengwei,LUO Ping,SONG Jinmin,et al.Characteristics and main controlling factors of microbial carbonate reservoirs:A case study of Upper SinianLower Cambrian in the northwestern margin of Tarim basin[J].Acta Petrolei Sinica,2015,36(9):1074-1089.
    [69]沈安江,郑剑锋,陈永权,等.塔里木盆地中下寒武统白云岩储集层特征、成因及分布[J].石油勘探与开发,2016,43(3):340-349.SHEN Anjiang,ZHENG Jianfeng,CHENYongquan,et al.Characteristics,origin and distribution of dolomite reservoirs in Lower-Middle Cambrian,Tarim basin,NW China[J].Petroleum Exploration&Development,2016,43(3):375-385.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700