岩性油气藏 ›› 2021, Vol. 33 ›› Issue (5): 22–33.doi: 10.12108/yxyqc.20210503

• 油气地质 • 上一篇    下一篇

酒西盆地红柳峡地区下白垩统烃源岩孢粉相与沉积古环境特征

马博1,2,3, 吉利明1,2,3, 张明震1,2, 金培红1,2, 苑伯超4, 龙礼文5   

  1. 1. 中国科学院西北生态环境资源研究院, 兰州 730000;
    2. 现代古生物学和地层学国家重点实验室(中国科学院南京地质古生物研究所), 南京 210008;
    3. 中国科学院大学, 北京 100049;
    4. 中国石油玉门油田分公司 勘探开发研究院, 甘肃 酒泉 735019;
    5. 中国石油勘探开发研究院 西北分院, 兰州 730020
  • 收稿日期:2021-02-03 修回日期:2021-04-03 出版日期:2021-10-01 发布日期:2021-09-30
  • 第一作者:马博(1995-),男,中国科学院西北生态环境资源研究院在读博士研究生,研究方向为油气地质与地球化学。地址:(730000)甘肃省兰州市城关区东岗西路382号。Email:mabo17@mails.ucas.ac.cn
  • 通信作者: 吉利明(1963-),男,博士,研究员,博士生导师,主要从事油气地球化学与微体古生物学研究工作。Email:jilimin@lzb.ac.cn。
  • 基金资助:
    国家自然科学基金“酒西盆地早白垩世湖生浮游藻类及其与烃源岩发育和热流体活动的关系”(编号:41672137)和现代古生物学和地层学国家重点实验室基金“酒西盆地下白垩统热水烃源岩分子生物标志物特征”(编号:183111)联合资助

Palynofacies and sedimentary paleoenvironment of Lower Cretaceous source rocks in Hongliuxia area,Jiuxi Basin

MA Bo1,2,3, JI Liming1,2,3, ZHANG Mingzhen1,2, JIN Peihong1,2, YUAN Bochao4, LONG Liwen5   

  1. 1. Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China;
    2. State Key Laboratory of Paleobiology and Stratigraphy(Nanjing Institute of Geology and Paleontology, Chinese Academy of Sciences), Nanjing 210008, China;
    3. University of Chinese Academy of Sciences, Beijing 100049, China;
    4. Research Institute of Exploration and Development, PetroChina Yumen Oilfield Company, Jiuquan 735019, Gansu, China;
    5. PetroChina Research Institute of Petroleum Exploration and Development-Northwest, Lanzhou 730020, China
  • Received:2021-02-03 Revised:2021-04-03 Online:2021-10-01 Published:2021-09-30

摘要: 对酒西盆地下白垩统烃源岩的生烃潜力缺乏系统认识,并对其沉积古环境的认识也存在争议。通过对红柳峡地区下沟组烃源岩的孢粉相和元素地球化学的系统分析,研究烃源岩有机质母质来源、生烃潜力及其沉积古环境特征。结果表明红柳峡地区下沟组发育孢粉相A(植物碎屑-无定形组合),B(无定形组合)和C(植物碎屑组合)3类孢粉相,并且以孢粉相C为主;孢粉有机质整体以陆源高等植物来源的植物碎屑为优势成分,有机质类型主要为Ⅲ型,显示较差的生油潜力,其中下段和上段中的部分层位无定形含量较高,有机质为Ⅱ2型,具有一定的生油潜力;下沟组沉积期为半潮湿-潮湿的气候,且具有晚期逐渐变潮湿的趋势,主要为氧化且生产力较低的微咸水-咸水环境,仅下段和上段中的部分层段表现为较深水的贫氧-缺氧沉积环境;红柳峡地区下沟组以近源冲积扇-三角洲和滨浅湖亚相沉积为主,其中早期和晚期沉积期水体稳定,发育部分较好的烃源岩,中期则发育近源氧化的三角洲-滨浅湖亚相沉积和较差的烃源岩。

关键词: 元素地球化学, 古环境, 孢粉相, 烃源岩, 下沟组, 红柳峡地区, 酒西盆地

Abstract: It is lacking on understanding of the hydrocarbon generation potential of the Lower Cretaceous source rocks in Jiuxi Basin, and it is also controversial on understanding of their sedimentary paleoenvironment. Based on the systematic analysis of palynofacies and element geochemistry of Xiagou Formation in Hongliuxia area, the source of organic matter, hydrocarbon generation potential and sedimentary paleoenvironment characteristics of source rocks were studied. The results show that three types of palynofacies, A(phytoclasts-amorphous assemblages), B(amorphous assemblages) and C(phytoclasts assemblages), are developed in Xiagou Formation in Hongliuxia area, and the palynofacies C is dominant. Phytoclasts from terrestrial higher plants dominate the palynological organic matter and the organic matter is mainly type Ⅲ, which shows poor oil-generating potential. The amorphous organic matter contents in some intervals of the lower and upper members are relatively high and the organic matter is type Ⅱ2, with some oil-generating potential. The element geochemical parameters indicate a semihumid-humid climate with a tendency of gradually humid in the late stage, and a mainly brackish-saline and oxic water environment with low productivity during the deposition of Xiagou Formation, and only some intervals in the lower and upper members were deposited in a suboxic-anoxic deep-water environment. The Xiagou Formation in Hongliuxia area is mainly composed of proximal alluvial fan-delta and shore shallow lake subfacies. In the early and late sedimentary period, the water body is stable, and some good source rocks were developed, otherwise, in the middle sedimentary period, proximal oxidation delta shore shallow lake subfacies and poor source rocks were developed.

Key words: element geochemistry, paleoenvironment, palynofacies, source rocks, Xiagou Formation, Hongliuxia area, Jiuxi Basin

中图分类号: 

  • TE121.3
[1] 吴青鹏, 吕锡敏, 陈娟, 等.酒泉盆地营尔凹陷下白垩统下沟组沉积特征及勘探方向.岩性油气藏, 2020, 32(5):54-62. WU Q P, LYU X M, CHEN J, et al. Sedimentary characteristics and exploration potentials of Lower Cretaceous Xiagou Formation in Ying'er Sag, Jiuquan Basin. Lithologic Reservoirs, 2020, 32(5):54-62.
[2] 张世铭, 张小军, 郑联勇, 等.酒西盆地老君庙构造白杨河组间泉子段储层孔隙结构特征.岩性油气藏, 2018, 30(5):40-50. ZHANG S M, ZHANG X J, ZHENG L Y, et al. Reservoir pore structures of Jianquanzi member in Laojunmiao structure,Jiuxi Basin. Lithologic Reservoirs, 2018, 30(5):40-50.
[3] 陈建平, 魏军, 倪云燕, 等.酒泉盆地酒西坳陷主力烃源岩分布及对油气勘探的启示.石油学报, 2018, 39(11):1223-1240. CHEN J P, WEI J, NI Y Y, et al. Determination of main source rocks in the Jiuxi Depression of Jiuquan Basin and its implications for oil and gas exploration. Acta Petrolei Sinica, 2018, 39(11):1223-1240.
[4] CHEN Q L, DENG Y L, WEI J, et al. Types,distribution and play targets of Lower Cretaceous tight oil in Jiuquan Basin, NW China. Petroleum Exploration and Development, 2018, 45(2):227-238.
[5] 吴伟, 邵广辉, 杜鹏飞, 等.基于电成像资料的裂缝有效性评价和储集层品质分类:以鸭儿峡油田白垩系为例.岩性油气藏, 2019, 31(6):102-108. WU W, SHAO G H, DU P F, et al. Fracture effectiveness evaluation and reservoir quality classification based on electrical imaging data:A case study of Cretaceous in Ya'erxia Oilfield. Lithologic Reservoirs, 2019, 31(6):102-108.
[6] 涂建琪, 陈建平, 张大江, 等.湖相碳酸盐岩烃源岩有机显微组分分类及其岩石学特征:以酒西盆地为例.岩石学报, 2012, 28(3):917-926. TU J Q, CHEN J P, ZHANG D J, et al. A petrographic classification of macerals in lacustrine carbonate source rocks and their organic petrological characteristics:A case study on Jiuxi Basin, NW China. Acta Petrologica Sinica, 2012, 28(3):917-926.
[7] ZHANG C C, WANG H, CHEN S, et al. Lacustrine basin fills in an Early Cretaceous half-graben,Jiuquan Basin,NW China:Controlling factors and implications for source rock depositional processes and heterogeneity. Journal of Earth Science, 2019, 30(1):166-183.
[8] 文华国, 郑荣才, 叶泰然, 等.酒西盆地青西凹陷下白垩统沉积特征与有利勘探区预测.沉积与特提斯地质, 2005, 25(4):71-77. WEN H G, ZHENG R C, YE T R, et al. Sedimentary characteristics of the Lower Cretaceous strata and prediction of the favorable exploration areas in the Qingxi Depression,Jiuxi Basin, Gansu. Sedimentary Geology and Tethyan Geology, 2005, 25(4):71-77.
[9] 陈建军.酒西坳陷的生烃条件与油气源研究.成都:西南石油学院, 2004. CHEN J J. Research on the conditions of hydrocarbon-generating and the correlation of oil and source rock from the Jiuxi Depression. Chengdu:Southwest Petroleum University, 2004.
[10] 薛沛霖, 旷红伟, 柳永清, 等.甘肃酒泉西部地区下白垩统下沟组-中沟组沉积相特征与早白垩世盆地演化.地质通报, 2013, 32(2/3):476-487. XUE P L, KUANG H W, LIU Y Q, et al. Sedimentary facies of the Early Cretaceous Xiagou Formation and Zhonggou Formation and basin evolution in western Jiuquan, Gansu province. Geological Bulletin of China, 2013, 32(2/3):476-487.
[11] 彭楠, 旷红伟, 柳永清.北祁连-酒西地区早白垩世盆地沉积特征与古地理演化.地学前缘, 2011, 18(4):77-87. PENG N, KUANG H W, LIU Y Q, et al. Sedimentary evolution and palaeogeography of the Early Cretaceous basins from the northern Qilian Mountains to Jiuxi areas. Earth Science Frontiers, 2011, 18(4):77-87.
[12] 王崇孝, 马国福, 周在华.酒泉盆地中、新生代构造演化及沉积充填特征.石油勘探与开发, 2005, 32(1):33-36. WANG C X, MA G F, ZHOU Z H. Structure evolution and sedimentary filling of Jiuquan Basin in Mesozoic-Cenozoic period, NE China. Petroleum Exploration and Development, 2005, 32(1):33-36.
[13] CHEN G, GANG W Z, WANG N, et al. Geochemical characterization of the Xiagou Formation carbonate-bearing mudstone in southwestern Jiuquan Basin,China:Implications for paleoenvironment reconstruction and the origin of organic matter. Australian Journal of Earth Sciences, 2017, 65(1):121-134.
[14] JIN P H, JI L M, MA B, et al. Early Cretaceous palynology and paleoclimate of the Hanxia-Hongliuxia area, Jiuxi Basin,China. Review of Palaeobotany and Palynology, 2020, 281:1-12.
[15] WEN H G, ZHENG R C, QING H R, et al. Primary dolostone related to the Cretaceous lacustrine hydrothermal sedimentation in Qingxi sag,Jiuquan Basin on the northern Tibetan Plateau. Science China-Earth Sciences, 2013, 56(12):2080-2093.
[16] 苑伯超, 肖文华, 魏浩元, 等.酒泉盆地鸭儿峡地区白垩系下沟组K1g13沉积相及有利储层预测.岩性油气藏, 2017, 29(3):52-65. YUAN B C, XIAO W H, WEI H Y, et al. Sedimentary facies and favorable reservoir prediction of Cretaceous Xiagou Formation K1g13 in Ya'erxia area,Jiuquan Basin. Lithologic Reservoirs, 2017, 29(3):52-65.
[17] 张闻亭, 龙礼文, 肖文华, 等.酒泉盆地青西凹陷窟窿山构造带下沟组沉积特征及储层预测. 岩性油气藏, 2021, 33(1):186-197. ZHANG W T, LONG L W, XIAO W H, et al. Sedimentary characteristics and reservoir prediction of Xiagou Formation in Kulongshan structural belt, Qingxi Sag, Jiuquan Basin. Lithologic Reservoirs, 2021, 33(1):186-197.
[18] 马博, 吉利明, 张明震, 等.酒西盆地下白垩统赤金堡组烃源岩孢粉相特征及其石油地质意义.石油学报, 2020, 41(11):1376-1387. MA B, JI L M, ZHANG M Z, et al. Palynofacies characteristics of source rocks of Lower Cretaceous Chijinbao Formation in Jiuxi Basin and their petroleum geological significance. Acta Petrolei Sinica, 2020, 41(11):1376-1387.
[19] 苑伯超, 肖文华, 魏浩元, 等.酒泉盆地鸭儿峡地区白垩系下沟组砂砾岩储层特征及主控因素.岩性油气藏, 2018, 30(3):61-70. YUAN B C, XIAO W H, WEI H Y, et al. Characteristics and controlling factors of glutenite reservoir of Cretaceous Xiagou Formation in Ya'erxia area,Jiuquan Basin. Lithologic Reservoirs, 2018, 30(3):61-70.
[20] 陈建平, 陈建军, 倪云燕, 等.酒泉盆地酒西坳陷油气成藏控制因素与有利勘探方向.石油学报, 2019, 40(11):1311-1330. CHEN J P, CHEN J J, NI Y Y, et al. Controlling factors of petroleum accumulation and favorable exploration area in the Jiuxi Depression,Jiuquan Basin. Acta Petrolei Sinica, 2019, 40(11):1311-1330.
[21] 国家标准化管理委员会.GB/T 19144-2010沉积岩中干酪根分离方法.北京:中国标准出版社, 2010. Standardization Administration. GB/T 19144-2010 Isolation method for kerogen from sedimentary rock. Beijing:Standards Press of China, 2010.
[22] TYSON R V. Sedimentary organic matter:Organic facies and palynofacies. London:Chapman and Hall, 1995.
[23] 国家能源局.SY/T 5125-2014透射光-荧光干酪根显微组分鉴定及类型划分方法.北京:石油工业出版社, 2015. National Energy Administration. SY/T 5125-2014 Method of identification microscopically the macerals of kerogen and indivision the kerogen type by transmitted-light and fluorescence. Beijing:Petroleum Industry Press, 2015.
[24] ERCEGOVAC M, KOSTIĆ A. Organic facies and palynofacies:Nomenclature,classification and applicability for petroleum source rock evaluation. International Journal of Coal Geology, 2006, 68:70-78.
[25] 李建国, BATTEN D J. 孢粉相:原理及方法. 古生物学报, 2005, 44(1):138-156. LI J G, BATTEN D J. Palynofacies:Principles and methods. Acta Palaeontologica Sinica, 2005, 44(1):138-156.
[26] ZHANG M Z, JI L M, WU Y D, et al. Palynofacies and geochemical analysis of the Triassic Yanchang Formation,Ordos Basin:Implications for hydrocarbon generation potential and the paleoenvironment of continental source rocks. International Journal of Coal Geology, 2015, 152:159-176.
[27] TRIBOVILLARD N, ALGEO T J, LYONS T, et al. Trace metals as paleoredox and paleoproductivity proxies:An update. Chemical Geology, 2006, 232(12):12-32.
[28] MORADI A V, SARI A, AKKAYA P. Geochemistry of the Miocene oil shale(Hancili Formation)in the Cankiri-Corum Basin, Central Turkey:Implications for Paleoclimate conditions, sourcearea weathering,provenance and tectonic setting. Sedimentary Geology, 2016, 341:289-303.
[29] ALGEO T J, MAYNARD J B. Trace-element behavior and redox facies in core shales of Upper Pennsylvanian Kansas-type cyclothems, 2004, 206(3/4):289-318.
[30] 张天福, 孙立新, 张云, 等.鄂尔多斯盆地北缘侏罗纪延安组、直罗组泥岩微量、稀土元素地球化学特征及其古沉积环境意义.地质学报, 2016, 90(12):3454-3472. ZHANG T F, SUN L X, ZHANG Y, et al. Geochemical characteristics of the Jurassic Yan'an and Zhiluo Formations in the Northern margin of Ordos Basin and their paleoenvironmental implications. Acta Geologica Sinica, 2016, 90(12):3454-3472.
[31] TAO S, XU Y B, TANG D Z, et al. Geochemistry of the Shitoumei oil shale in the Santanghu Basin, Northwest China:Implications for paleoclimate conditions, weathering, provenance and tectonic setting. International Journal of Coal Geology, 2017, 184:42-56.
[32] DONER Z, KUMRAL M, DEMIREL I H, et al. Geochemical characteristics of the Silurian shales from the central Taurides, southern Turkey:Organic matter accumulation,preservation and depositional environment modeling. Marine and Petroleum Geology, 2019, 102:155-175.
[33] HE C, JI L M, SU A, et al. Source-rock evaluation and depositional environment of black shales in the Triassic Yanchang Formation, southern Ordos Basin,north-central China. Journal of Petroleum Science and Engineering, 2019, 173:899-911.
[34] 付金华, 李士祥, 徐黎明, 等.鄂尔多斯盆地三叠系延长组长7段古沉积环境恢复及意义. 石油勘探与开发, 2018, 45(6):936-946. FU J H, LI S X, XU L M, et al. Paleo-sedimentary environmental restoration and its significance of Chang 7 member of Triassic Yanchang Formation in Ordos Basin,NW China. Petroleum Exploration and Development, 2018, 45(6):936-946.
[35] REHEIS M C. Influence of climate and eolian dust on the majorelement chemistry and clay mineralogy of soils in the northern Bighorn Basin, USA. Catena, 1990, 17(3):219-248.
[36] 孟佳蕊.甘肃玉门红柳峡地区早白垩世孢粉组合及其古气候意义.北京:中国地质大学(北京), 2018. MENG J R. The Early Cretaceous sporo-pollen assemblages and their paleoclimate significance in the Hongliuxia area, Yumen city, Gansu province. Beijing:China University of Geosciences (Beijing), 2018.
[37] 李明涛, 李黎明, 梁志荣.宁夏同心地区古近纪-新近纪沉积岩地球化学特征及意义. 矿物岩石地球化学通报, 2020, 39(2):304-318. LI M T, LI L M, LIANG Z R. Geochemical characteristics and their significances of the Paleogene-Neogene sedimentary rocks in the Tongxin area,Ningxia,China. Bulletin of Mineralogy, Petrology and Geochemistry, 2020, 39(2):304-318.
[38] 胡艳霞.甘肃玉门红柳峡早白垩世下沟组的介形类.微体古生物学报, 2004, 21(4):439-455. HU Y X. Early Cretaceous ostracods from the Xiagou Formation of Hongliuxia in the Yumen area,Gansu of NW China. Acta Micropalaeontologica Sinica, 2004, 21(4):439-455.
[39] JONES B, MANNING D A C. Comparison of geochemical indices used for the interpretation of palaeoredox conditions in ancient mudstones. Chemical Geology, 1994, 111(1/4):111-129.
[40] ALGEO T J, INGALL E. Sedimentary Corg:P ratios,paleocean ventilation, and Phanerozoic atmospheric pO2. Palaeogeography, Palaeoclimatology, Palaeoecology, 2007, 256(3/4):130-155.
[41] LYONS T W, SEVERMANN S. A critical look at iron paleoredox proxies:New insights from modern euxinic marine basins. Geochimica et Cosmochimica Acta, 2006, 70(23):5698-5722.
[42] LUO Q Y, ZHONG N N, ZHU L, et al. Correlation of burial organic carbon and paleoproductivity in the Mesoproterozoic Hongshuizhuang Formation,northern North China. Chinese Science Bulletin, 2013, 58(11):1299-1309.
[43] WEDEPOHL K H. Environmental influences on the chemical composition of shales and clays. Physics & Chemistry of the Earth, 1971, 8:305-333.
[44] ARSAIRAI B, WANNAKOMOL A, FENG Q L, et al. Paleoproductivity and paleoredox condition of the Huai Hin Lat Formation in northeastern Thailand. Journal of Earth Science, 2016, 27(3):350-364.
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