|本期目录/Table of Contents|

[1]李传明,曾溅辉*,刘海涛,等.渤海湾盆地黄骅坳陷上古生界暗色泥岩地球化学特征及其发育机制[J].地球科学与环境学报,2023,45(02):306-321.[doi:10.19814/j.jese.2022.09044]
 LI Chuan-ming,ZENG Jian-hui*,LIU Hai-tao,et al.Geochemical Characteristics and Development Mechanism of Upper Paleozoic Dark Mudstone in Huanghua Depression of Bohai Bay Basin, China[J].Journal of Earth Sciences and Environment,2023,45(02):306-321.[doi:10.19814/j.jese.2022.09044]
点击复制

渤海湾盆地黄骅坳陷上古生界暗色泥岩地球化学特征及其发育机制(PDF)
分享到:

《地球科学与环境学报》[ISSN:1672-6561/CN:61-1423/P]

卷:
第45卷
期数:
2023年第02期
页码:
306-321
栏目:
沉积地质与油气勘探
出版日期:
2023-03-15

文章信息/Info

Title:
Geochemical Characteristics and Development Mechanism of Upper Paleozoic Dark Mudstone in Huanghua Depression of Bohai Bay Basin, China
文章编号:
1672-6561(2023)02-0306-16
作者:
李传明12曾溅辉12*刘海涛3李宏军4楼 达4崔 宇4董雄英4刘姝宁12
(1. 中国石油大学(北京)油气资源与探测国家重点实验室,北京 102249; 2. 中国石油大学(北京)地球科学学院,北京 102249; 3. 中国石油勘探开发研究院,北京 100083; 4. 中国石油大港油田公司勘探开发研究院,天津 300280)
Author(s):
LI Chuan-ming12 ZENG Jian-hui12* LIU Hai-tao3 LI Hong-jun4 LOU Da4 CUI Yu4 DONG Xiong-ying4 LIU Shu-ning12
(1. State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, China; 2. College of Geosciences, China University of Petroleum, Beijing 102249, China; 3. Research Institute of Petroleum Exploration and Development, PetroChina, Beijing 100083, China; 4. Research Institute of Exploration and Development, Dagang Oilfield Company, PetroChina, Tianjin 300280, China)
关键词:
暗色泥岩 发育环境 形成机制 上古生界 元素地球化学 有机地球化学 黄骅坳陷
Keywords:
dark mudstone development environment formation mechanism Upper Paleozoic elemental geochemistry organic geochemistry Huanghua depression
分类号:
P618.13
DOI:
10.19814/j.jese.2022.09044
文献标志码:
A
摘要:
上古生界暗色泥岩是渤海湾盆地黄骅坳陷主力烃源岩之一,具有重要的勘探价值。为进一步明确黄骅坳陷上古生界暗色泥岩有机质富集环境与形成机制,开展了岩石学、元素地球化学、有机地球化学分析。结果表明:渤海湾盆地黄骅坳陷上古生界暗色泥岩具有近源沉积特点,沉积时处于炎热潮湿向温暖湿润气候转换期,整体处于中高风化程度,沉积分选与再循环作用较弱,较好地保存了物源信息,且源岩为长英质岩石; 暗色泥岩从太原组沉积期到下石盒子组沉积期,有机质的富集不是由单一因素所控制的,而是氧化-还原条件、古生产力、古气候、沉积速率等多个要素共同控制与相互耦合的结果; 太原组沉积期,表层水具有较高的生产力和相对还原-硫化的水底环境,有利于有机质富集和保存; 山西组沉积期,在炎热潮湿的气候条件下表层水体也保持较高的初级生产力,同时较高的沉积速率有利于有机质的保存; 下石盒子组沉积期,温暖湿润的气候有利于有机质的富集,但较低的沉积速率导致有机质被黏土矿物以及其他无机矿物稀释,相对较难保存。
Abstract:
The dark mudstone of Upper Paleozoic, which is one of the main source rocks in Huanghua depression of Bohai Bay Basin, has important exploration value. In order to further clarify the environment and formation mechanism of organic matter accumulation from the dark mudstone of Upper Paleozoic in Huanghua depression, the petrological, element geochemical and organic geochemical analyses were carried out. The results show that the dark mudstones of Upper Paleozoic in Huanghua depression of Bohai Bay Basin are near source deposits, which are in the transition period from hot and humid to warm and moist climate; the parent rocks are mainly felsic rocks, which are generally in medium to high weathering degree; the sedimentation sorting and recycling are weak, so the source information is well preserved; the enrichment of organic matter of the dark mudstone of Upper Paleozoic in Huanghua depression from the sedimentary period of Taiyuan Formation to the sedimentary period of Lower Shihezi Formation is not controlled by a single factor, but is the result of the joint control and mutual coupling of many factors, such as oxidation-reduction conditions, paleo-productivity, paleo-climate, and sedimentation rate; during the sedimentary period of Taiyuan Formation, the surface water has higher productivity and a relatively reductive sulfurizing underwater environment, which is conducive to the enrichment and preservation of organic matter; during the sedimentation period of Shanxi Formation, the surface water body also maintains high primary productivity under hot and humid conditions, and the higher sedimentation rate is conducive to the preservation of organic matter; during the sedimentary period of Lower Shihezi Formation, the warm and humid climate is conducive to the enrichment of organic matter, but the low deposition rate results in the dilution of organic matter by clay minerals and other inorganic minerals, which is relatively difficult to be preserved.

参考文献/References:

[1] 殷鸿福.二叠系—三叠系研究的进展[J].地球科学进展,1994,9(2):1-10.
YIN Hong-fu.Advancements of Permian and Triassic Research[J].Advance in Earth Sciences,1994,9(2):1-10.
[2] 金玉玕,尚庆华,曹长群.二叠纪地层研究述评[J].地层学杂志,2000,24(2):99-108.
JIN Yu-gan,SHANG Qing-hua,CAO Chang-qun.A Review of Permian Stratigraphy[J].Journal of Stratigraphy,2000,24(2):99-108.
[3] 马 帅,王永诗,蒲秀刚,等.渤海湾盆地中—晚二叠世河流相沉积演化特征及砂体展布规律[J].油气地质与采收率,2021,28(4):1-11.
MA Shuai,WANG Yong-shi,PU Xiu-gang,et al.Se-dimentary Evolution and Sandstone Distribution of Middle-Late Permian Fluvial Facies in Bohai Bay Basin[J].Petroleum Geology and Recovery Efficiency,2021,28(4):1-11.
[4] 王振升,陈长伟,韩国猛,等.旋转掀斜斜坡区构造-沉积演化特征及油气地质意义:以渤海湾盆地歧口凹陷板桥斜坡为例[J].天然气地球科学,2017,28(11):1650-1656.
WANG Zhen-sheng,CHEN Chang-wei,HAN Guo-meng,et al.Rotate-tilt Slope Zone Structures-sedimentary Evolution and Petroleum Geologic Significance:A Case Study of Banqiao Slope of Qikou Sag,Bohai Bay Basin[J].Natural Gas Geoscience,2017,28(11):1650-1656.
[5] 李天宝.渤海湾盆地石炭—二叠纪沉积特征研究[D].青岛:中国石油大学,2018.
LI Tian-bao.Sedimentary Characteristics of the Carboniferous-Permian in the Bohai Bay Basin[D].Qingdao:China University of Petroleum,2018.
[6] 王志金.渤海湾盆地石炭—二叠纪层序地层学研究[D].青岛:中国石油大学,2018.
WANG Zhi-jin.Sequence Stratigraphy of Carboniferous-Permian in Bohai Bay Basin[D].Qingdao:China University of Petroleum,2018.
[7] 缪 欢,王延斌,何 川,等.渤海湾盆地埕北断阶带断裂发育特征及其控藏作用[J].岩性油气藏,2022,34(2):105-115.
MIAO Huan,WANG Yan-bin,HE Chuan,et al.Fault Development Characteristics and Reservoir Control in Chengbei Fault Step Zone,Bohai Bay Basin[J].Lithologic Reservoirs,2022,34(2):105-115.
[8] 侯中帅,陈世悦,桑树勋,等.渤海湾盆地上古生界泥岩地球化学特征[J].煤炭学报,2020,45(4):1457-1472.
HOU Zhong-shuai,CHEN Shi-yue,SANG Shu-xun,et al.Geochemical Characteristics of Upper Paleozoic Mudstone in Bohai Bay Basin[J].Journal of China Coal Society,2020,45(4):1457-1472.
[9] 缪 欢,王延斌,国建英,等.吐哈盆地中二叠统桃东沟群烃源岩测井评价[J].石油物探,2022,61(4):733-742,760.
MIAO Huan,WANG Yan-bin,GUO Jian-ying,et al.Evaluation of Middle Permian Source Rocks of the Taodonggou Group in the Turpan Hami Basin[J].Geophysical Prospecting for Petroleum,2022,61(4):733-742,760.
[10] 缪 欢,王延斌,麻振涛,等.考虑自然电位的广义Δlog R模型及其在预测总有机碳含量的应用[J].矿业科学学报,2022,7(4):417-426.
MIAO Huan,WANG Yan-bin,MA Zhen-tao,et al.Generalized Δlog R Model with Spontaneous Potential and Its Application in Predicting Total Organ Carbon Content[J].Journal of Mining Science and Technology,2022,7(4):417-426.
[11] 陈治军,文志刚,刘护创,等.二连盆地伊和乌苏凹陷烃源岩地球化学特征与生烃潜力[J].中国石油大学学报(自然科学版),2022,46(1):34-43.
CHEN Zhi-jun,WEN Zhi-gang,LIU Hu-chuang,et al.Geochemical Characteristics and Hydrocarbon Gene-ration Potential of Source Rocks in Yihewusu Sag,Erlian Basin[J].Journal of China University of Petroleum(Edition of Natural Science),2022,46(1):34-43.
[12] MIAO H,WANG Y B,ZHAO S H,et al.Geochemi-stry and Organic Petrology of Middle Permian Source Rocks in Taibei Sag,Turpan-Hami Basin,China:Implication for Organic Matter Enrichment[J].ACS Omega,2021,6(47):31578-31594.
[13] 郑宇龙,牟传龙,王秀平.四川盆地南缘五峰组—龙马溪组沉积地球化学及有机质富集模式:以叙永地区田林剖面为例[J].地球科学与环境学报,2019,41(5):541-560.
ZHENG Yu-long,MOU Chuan-long,WANG Xiu-ping.Sedimentary Geochemistry and Patterns of Organic Matter Enrichment of Wufeng-Longmaxi Formations in the Southern Margin of Sichuan Basin,China:A Case Study of Tianlin Profile in Xuyong Area[J].Journal of Earth Sciences and Environment,2019,41(5):541-560.
[14] 佟殿君,任建业,史双双,等.黄骅坳陷新生代关键性构造运动面的确定及盆地演化过程[J].油气地质与采收率,2010,17(2):9-13,111.
TONG Dian-jun,REN Jian-ye,SHI Shuang-shuang,et al.Determination of Cenozoic Key Tectonic Movement Planes and Basin Evolution in Huanghua Depression[J].Petroleum Geology and Recovery Efficiency,2010,17(2):9-13,111.
[15] 杨润泽,赵贤正,李宏军,等.黄骅坳陷上古生界烃源灶排烃特征及供烃模式[J].中国矿业大学学报,2020,49(2):367-380.
YANG Run-ze,ZHAO Xian-zheng,LI Hong-jun,et al.Hydrocarbon Expulsion Characteristics and Hydrocarbon Supply Model of the Upper Paleozoic Source Kitchen in Huanghua Depression[J].Journal of China University of Mining & Technology,2020,49(2):367-380.
[16] 付立新,楼 达,李宏军,等.印支—燕山运动对大港探区古潜山形成的控制作用[J].石油学报.2016,37(增2):19-30.
FU Li-xin,LOU Da,LI Hong-jun,et al.Control Ef-fect of Indosinian-Yanshan Movement on the Formation of Buried Hill in Dagang Exploration Area[J].Acta Petrolei Sinica,2016,37(S2):19-30.
[17] GB/T 18602—2012,岩石热解分析[S].
GB/T 18602—2012,Rock Pyrolysis Analysis[S].
[18] ALGEO T J,MAYNARD J B.Trace-element Behavi-or and Redox Facies in Core Shales of Upper Pennsylvanian Kansas-type Cyclothems[J].Chemical Geology,2004,206(3/4):289-318.
[19] CALVERT S E,PEDERSEN T F.Geochemistry of Recent Oxic and Anoxic Marine Sediments:Implications for the Geological Record[J].Marine Geology,1993,113(1/2):67-88.
[20] 安正泽,张仁彪,陈甲才,等.贵州省松桃县道坨超大型锰矿床的发现及其成因探讨[J].矿床地质,2014,33(4):870-884.
AN Zheng-ze,ZHANG Ren-biao,CHEN Jia-cai,et al.Geological and Geochemical Characteristics of Daotuo Superlarge Manganese Ore Deposit in Songtao County of Guizhou Province:Constraint on Formation Mechanism of Mn-carbonate Ores[J].Mineral Deposits,2014,33(4):870-884.
[21] ZHU G Y,ZHANG Z Y,ZHOU X X,et al.The Com-plexity,Secondary Geochemical Process,Genetic Mechanism and Distribution Prediction of Deep Marine Oil and Gas in the Tarim Basin,China[J].Earth-science Reviews,2019,198:102930.
[22] 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(1/2/3/4):111-129.
[23] TAYLOR S R,MCLENNAN S M.The Continental Crust:Its Composition and Evolution[M].Oxford:Blackwell,1985.
[24] 朱正杰,张斌臣,唐清敏,等.城口地区早寒武世黑色岩系铂族元素地球化学特征与来源[J].矿物学报,2017,37(4):495-506.
ZHU Zheng-jie,ZHANG Bin-chen,TANG Qing-min,et al.Sources and Geochemistry of Platinum Group Elements(PGE)in the Early Cambrian Black Rock Series in Chengkou District,Northern Dabashan,Southwestern China[J].Acta Mineralogica Sinica,2017,37(4):495-506.
[25] MCLENNAN S M,TAYLOR S R.Sedimentary Ro-cks and Crustal Evolution:Tectonic Setting and Secular Trends[J].The Journal of Geology,1991,99(1):1-21.
[26] STEINER M,LI G X,QIAN Y,et al.Neoproterozoic to Early Cambrian Small Shelly Fossil Assemblages and a Revised Biostratigraphic Correlation of the Yangtze Platform(China)[J].Palaeogeography,Pa-laeoclimatology,Palaeoecology,2007,254(1/2):67-99.
[27] HAYASHI K I,FUJISAWA H,HOLLAND H D,et al.Geochemistry of ~1.9 Ga Sedimentary Rocks from Northeastern Labrador,Canada[J].Geochimica et Cosmochimica Acta,1997,61(19):4115-4137.
[28] XU L G,LEHMMANN B,MAO J W,et al.Re-Os Age of Polymetallic Ni-Mo-PGE-Au Mineralization in Early Cambrian Black Shales of South China:A Reassessment[J].Economic Geology,2011,106(3):511-522.
[29] 张建军,牟传龙,何明友,等.准噶尔盆地顶山地区乌伦古河组砂岩元素地球化学特征及其地质意义[J].矿物岩石地球化学通报,2017,36(6):1026-1033.
ZHANG Jian-jun,MOU Chuan-long,HE Ming-you,et al.Geochemical Characteristics and Their Geologi-cal Signification of Wulunguhe Formation in Dingshan Area, Junggar Basin[J].Bulletin of Mineralogy,Petrology and Geochemistry,2017,36(6):1026-1033.
[30] 李 翔,刘招君,孙平昌,等.松辽盆地东南隆起区青山口组一段泥页岩地球化学特征及地质意义[J].世界地质,2014,33(4):746-757,767.
LI Xiang,LIU Zhao-jun,SUN Ping-chang,et al.Geochemical Characteristics and Geological Implications of Mud Shale from the 1st Member of Qingshankou Formation of Southeastern Uplifted Area in Songliao Basin[J].Global Geology,2014,33(4):746-757,767.
[31] GUO Q J,SHIELDS G A,LIU C Q,et al.Trace Element Chemostratigraphy of Two Ediacaran-Cambrian Successions in South China:Implications for Orga-nosedimentary Metal Enrichment and Silicification in the Early Cambrian[J].Palaeogeography,Palaeoclimatology,Palaeoecology,2007,254(1/2):194-216.
[32] HOFFMAN P F,KAUFMAN A J,HALVERSON G P,et al.A Neoproterozoic Snowball Earth[J].Science,1998,281:1342-1346.
[33] FLOYD P A,LEVERIDGE B E.Tectonic Environment of the Devonian Gramscatho Basin,South Cornwall:Framework Mode and Geochemical Evidence from Turbiditic Sandstones[J].Journal of the Geolo-gical Society,1987,144(4):531-542.
[34] 李增学,李守春,魏久传.事件性海侵与聚积规律:鲁西晚石炭世富煤单元的形成[J].岩相古地理,1995,15(1):1-9.
LI Zeng-xue,LI Shou-chun,WEI Jiu-chuan.Episodic Transgressions and Coal Accumulation:An Example from the Late Carboniferous Coal-rich Units in the Western Shandong Coalfields[J].Sedimentary Facies and Palaeogeography,1995,15(1):1-9.
[35] 张鹏飞,邵龙义,代世峰,等.华北地台晚古生代海侵模式雏议[J].古地理学报,2001,3(1):15-24.
ZHANG Peng-fei,SHAO Long-yi,DAI Shi-feng,et al.Discussions on the Transgression Model of the Late Palaeozoic in the North China Platform[J].Journal of Palaeogeography,2001,3(1):15-24.
[36] 李增学,魏久传,韩美莲,等.海侵事件成煤作用:一种新的聚煤模式[J].地球科学进展,2001,16(1):120-124.
LI Zeng-xue,WEI Jiu-chuan,HAN Mei-lian,et al.Coal Formation in Transgressive Events:A New Pattern of Coal Accumulation[J].Advances in Earth Science,2001,16(1):120-124.
[37] 吕大炜,李增学,刘海燕,等.华北晚古生代海平面变化及其层序地层响应[J].中国地质,2009,36(5):1079-1086.
LV Da-wei,LI Zeng-xue,LIU Hai-yan,et al.The Sea-level Change and Its Response to the Late Paleozoic Sequence Stratigraphy in North China[J].Geology in China,2009,36(5):1079-1086.
[38] 吕大炜,李增学,刘海燕.华北板块晚古生代海侵事件古地理研究[J].湖南科技大学学报(自然科学版),2009,24(3):16-22.
LV Da-wei,LI Zeng-xue,LIU Hai-yan.The Study of Transgressive ‘Event' Paleogeography About the Late Paleozoic of North China[J].Journal of Hunan University of Science & Technology(Natural Science Edition),2009,24(3):16-22.
[39] 孟苗苗,康志宏,樊太亮,等.痕量元素和碳氧同位素在塔里木盆地西南缘棋盘组沉积环境研究中的应用[J].成都理工大学学报(自然科学版),2016,43(1):77-85.
MENG Miao-miao,KANG Zhi-hong,FAN Tai-liang,et al.Application of Trace Elements and Carbon-oxygen Isotopes on the Research of Sedimentary Environment of the Qipan Formation in the Southwest Margin of Tarim Basin,China[J].Journal of Chengdu University of Technology(Science & Technology Edition),2016,43(1):77-85.
[40] 明承栋,侯读杰,赵省民,等.内蒙古东部索伦地区中二叠世哲斯组古环境与海平面相对升降的地球化学记录[J].地质学报,2015,89(8):1484-1494.
MING Cheng-dong,HOU Du-jie,ZHAO Sheng-min,et al.The Geochemistry Records of Paleoenvironment and Sea-level Relative Movement of Middle Permian Zhesi Formation in Eastern Inner Mongolia[J].Acta Geologica Sinica,2015,89(8):1484-1494.
[41] 毛婉慧.川东北华蓥山地区龙潭组烃源岩有机地球化学特征和有机相划分[D].武汉:中国地质大学,2011.
MAO Wan-hui.The Characteristics of the Organic Geochermisity and Organic Facies of Source Rock in Longtan Formation from Huaying Mountain,Northeastern of Sichuan Province[D].Wuhan:China University of Geosciences,2011.
[42] 张金亮,张 鑫.塔里木盆地志留系古海洋沉积环境的地球化学元素特征[J].中国海洋大学报,2006,36(2):200-208.
ZHANG Jin-liang,ZHANG Xin.The Element Geochemical Features of Ancient Oceanic Sedimentary Environments in the Silurian Period in the Tarim Basin[J].Periodical of Ocean University of China,2006,36(2):200-208.
[43] 齐 靓,余文超,杜远生,等.黔东南华纪铁丝坳期—大塘坡期古气候的演变:来自CIA的证据[J].地质科技情报,2015,34(6):47-57.
QI Liang,YU Wen-chao,DU Yuan-sheng,et al.Paleoclimate Evolution of the Cryogenian Tiesi'ao Formation-Datangpo Formation in Eastern Guizhou Pro-vince:Evidence from the Chemical Index of Alteration[J].Geological Science and Technology Information,2015,34(6):47-57.
[44] BOCK B,MCLENNAN S M,HANSON G N.Geochemistry and Provenance of the Middle Ordovician Austin Glen Member(Normanskill Formation)and the Taconian Orogeny in New England[J].Sedimentology,1998,45(4):635-655.
[45] NESBITT H W,YOUNG G M.Early Proterozoic Climates and Plate Motions Inferred from Major Element Chemistry of Lutites[J].Nature,1982,299:715-717.
[46] 赵 坤,李婷婷,朱光有,等.中国华南渝东北城口地区下寒武统烃源岩发育环境与形成机制[J].沉积学报,2020,38(5):1111-1122.
ZHAO Kun,LI Ting-ting,ZHU Guang-you,et al.Development Environment and Formation Mechanism of Lower Cambrian Source Rocks in the Chengkou Area,Northeast Chongqing,South China[J].Acta Sedimentologica Sinica,2020,38(5):1111-1122.
[47] FEDO C M,WAYNE NESBITT H,YOUNG G M.Unraveling the Effects of Potassium Metasomatism in Sedimentary Rocks and Paleosols,with Implications for Paleoweathering Conditions and Provenance[J].Geology,1995,23(10):921-924.
[48] ALGEO T J,LYONS T W,BLAKEY R C,et al.Hydrographic Conditions of the Devono-Carboniferous North American Seaway Inferred from Sedimentary Mo-TOC Relationships[J].Palaeogeography,Palaeoclimatology,Palaeoecology,2007,256(3/4):204-230.
[49] DEMAISON G J,MOORE G T.Anoxic Environmen-ts and Oil Source Bed Genesis[J].Organic Geochemi-stry,1980,2(1):9-31.

相似文献/References:

[1]白斌,刘哲,周立发,等.惠安堡—马家滩地区二叠系煤系烃源岩[J].地球科学与环境学报,2007,29(02):154.
 BA I Bin,LIU Zhe,ZHOU Li-fa,et al.Permian System Coal Hydrocarborn Source Rocks in Huianbu-Majiatan Areas[J].Journal of Earth Sciences and Environment,2007,29(02):154.
[2]郝运轻,边雪梅,王德坪,等.东营凹陷王46井孔二段暗色泥岩沉积环境[J].地球科学与环境学报,2006,28(03):45.
 HAO Yun-qing,BIAN Xue-mei,WANG De-ping,et al.Sedimentary Environment of Dark Mudstone Member of Kongdian Formation From Well Wang 46 ,Dongying Sag[J].Journal of Earth Sciences and Environment,2006,28(02):45.

备注/Memo

备注/Memo:
收稿日期:2022-09-16; 修回日期:2022-11-20
基金项目:国家自然科学基金项目(41972147)
作者简介:李传明(1993-),男,江苏连云港人,工学博士研究生,E-mail:lichuanming0322@163.com。
*通讯作者:曾溅辉(1962-),男,江西新干人,教授,博士研究生导师,工学博士,E-mail:zjh3581@163.com。
更新日期/Last Update: 2023-05-20