鄂尔多斯盆地中央古隆起区中寒武统鲕粒碳酸盐岩
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  • 英文篇名:Middle Cambrian oolitic carbonate rocks in the central ancient upwelling area,the Ordos Basin
  • 作者:徐波 ; 王宝清 ; 孙六一 ; 王红伟 ; 刘宝宪 ; 井向辉 ; 刘丽萍
  • 英文作者:Xu Bo;Wang Baoqing;Sun Liuyi;Wang Hongwei;Liu Baoxian;Jing Xianghui;Liu Liping;Xi'an Shiyou University;PetroChina Changqing Oilfield Company;National Engineering Laboratory for Exploration and Development of Low-Permeability Oil & Gas Fields;
  • 关键词:岩石学特征 ; 地球化学特征 ; 鲕粒碳酸盐岩 ; 中寒武统 ; 中央古隆起区 ; 鄂尔多斯盆地
  • 英文关键词:petrologic characteristics;;geochemical characteristics;;oolitic carbonate rock;;Middle Cambrian;;central ancient upwelling area;;Ordos Basin
  • 中文刊名:SYSD
  • 英文刊名:Petroleum Geology & Experiment
  • 机构:西安石油大学;中国石油长庆油田分公司;低渗透油气田勘探开发国家工程实验室;
  • 出版日期:2017-01-28
  • 出版单位:石油实验地质
  • 年:2017
  • 期:v.39
  • 基金:国家自然科学基金项目(51574194);; 国家科技重大专项(2016ZX05011-002)资助
  • 语种:中文;
  • 页:SYSD201701005
  • 页数:8
  • CN:01
  • ISSN:32-1151/TE
  • 分类号:28-35
摘要
鄂尔多斯盆地中央古隆起区中寒武统鲕粒碳酸盐岩沉积于碳酸盐斜坡中的小规模浅滩,其主要矿物成分为白云石和方解石。根据全岩样品分析结果,鲕粒碳酸盐岩的δ18OV-PDB值在-11.3‰~-4.9‰之间,平均-6.5‰;δ~(13)CV-PDB值在-1.7‰~0.3‰之间,平均-0.8‰。该碳酸盐岩沉积于浅水鲕粒滩,因受到淡水淋滤影响,之后又长期处于深埋环境,δ18O值明显偏低。由于成岩作用过程中受有机质影响很小,δ~(13)C值没有表现出异常。白云岩的δ18O值较石灰岩的高。显微激光采样分析结果表明,鲕粒较胶结物有较低的δ18O和δ~(13)C值。前者形成于动荡的浅水环境,形成后常受淡水的淋滤。胶结物大多形成于埋藏期,孔隙水具有海水性质,盐度较高,胶结物沉淀后,受淡水影响较小。由于经受了强烈的埋藏作用,鲕粒碳酸盐岩表现出的特征为Na和Sr含量低、Fe含量高—特高及Mn含量较高。白云石大多数为埋藏作用阶段高Mg含量卤水条件下交代而成,整体上有较低的有序度,MgCO_3含量高。在强烈的埋藏作用和胶结作用下,鲕粒碳酸盐岩现存孔隙度极低。
        Middle Cambrian oolitic carbonate rocks were deposited in small shoals of the ramp in a central ancient upwelling area in the Ordos Basin. The oolitic carbonate rocks mainly consist of calcites and dolomites. The δ~(18)O and δ~(13)C values range from-11.3‰ to-4.9‰ and from-1.7‰ to 0.3‰,averaging-6.5‰ and-0.8‰ V-PDB,respectively. Since they were deposited in oolitic shoals under meteoric leaching and experienced deep burial diagenesis,the δ~(18)O values of the oolitic carbonate rocks are obviously low. During diagenesis,the influence of organic materials was slight,leading to normal δ~(13)C values for the oolitic carbonate rocks. The δ~(18)O values of dolomites are higher than those of limestones. The results of analyses by laser-microsampling indicate that the δ~(18)O and δ~(13)C values of ooids are lower than those of the cements because the ooids formed in turbulent environments,and were leached by meteoric water after their formation. The cements precipitated in pore water with marine characteristics and high salinity,and were slightly influenced by meteoric water after their formation. The oolotic carbonate rocks are characterized with low Na and Sr,very high Fe,and medium Mn contents because of deep burial diagenesis.Most dolomites with low order degrees and high MgCO_3 contents generally formed through replacement in brine during the burial stage. Deep burial diagenesis and good development of cements resulted in the development of extremely low porosity in the oolitic carbonate rocks.
引文
[1]蒋小琼,管宏林,郑和荣,等.四川盆地普光气田飞仙关组白云岩储层成因探讨[J].石油实验地质,2014,36(3):332-336.Jiang Xiaoqiong,Guan Honglin,Zheng Herong,et al.Discussion on origin of dolomite reservoirs in Feixianguan Formation,Puguang Gas Field,Sichuan Basin[J].Petroleum Geology&Experiment,2014,36(3):332-336.
    [2]苏立萍,罗平,胡社荣,等.川东北罗家寨气田下三叠统飞仙关组鲕粒滩成岩作用[J].古地理学报,2004,6(2):182-190.Su Liping,Luo Ping,Hu Sherong,et al.Diagenesis of oolitic bank of the Feixianguan Formation of Lower Triassic in Luojiazhai Gas Field,northeastern Sichuan Province[J].Journal of Palaeogeography,2004,6(2):182-190.
    [3]杨俊杰.鄂尔多斯盆地构造盆地演化与油气分布规律[M].北京:石油工业出版社,2002.Yang Junjie.Tectonic evolution and oil-gas reservoirs distribution in Ordos Basin[M].Beijing:Petroleum Industry Press,2002.
    [4]Read J F.Carbonate platform facies models[J].AAPG Bulletin,1985,69(1):1-21.
    [5]Koch J T,Frank T D,Bulling T P.Stable-isotope chemostratigraphy as a tool to correlate complex Mississippian marine carbonate facies of the Anadarko shelf,Oklahoma and Kansas[J].AAPG Bulletin,2014,98(6):1071-1090.
    [6]付金华,王宝清,孙六一,等.鄂尔多斯盆地苏里格地区奥陶系马家沟组白云石化[J].石油实验地质,2011,33(3):266-273.Fu Jinhua,Wang Baoqing,Sun Liuyi,et al.Dolomitization of Ordovician Majiagou Formation in Sulige region,Ordos Basin[J].Petroleum Geology&Experiment,2011,33(3):266-273.
    [7]Lohmann K C,Walker J C G.The d18O record of Phanerozoic abiotic marine calcite cements[J].Geophysical Research Letters,1989,16(4):319-322.
    [8]杨华,王宝清,孙六一,等.鄂尔多斯盆地中奥陶统马家沟组碳酸盐岩碳、氧稳定同位素特征[J].天然气地球科学,2012,23(4):616-625.Yang Hua,Wang Baoqing,Sun Liuyi,et al.Characteristics of oxygen and carbon stable isotopes for Middle Ordovician Majiagou Formation carbonate rocks in the Ordos Basin[J].Natural Gas Geoscience,2012,23(4):616-625.
    [9]Gomez F J,Ogle N,Astini R A,et al.Paleoenvironmental and carbon-oxygen isotope record of Middle Cambrian carbonates(La Laja Formation)in the Argentine Precordillera[J].Journal of Sedimentary Research,2007,77(10):826-842.
    [10]Gross M G.Variations in the O18/O16and C13/C12ratios of diagenetically altered limestones in Bermuda Islands[J].The Journal of Geology,1964,72(2):170-194.
    [11]Land L S.The isotopic and trace element geochemistry of dolomite:The state of the art[C]//Zenger D H,Dunham J B,Ethington R L.Concepts and Models of Dolomitization.Tulsa:SEPM,1980:87-110.
    [12]Vasconcelos C,Mc Kenzie J A,Warthmann R,et al.Calibration of theδ18O paleothermometer for dolomite precipitated in microbial cultures and natural environments[J].Geology,2005,33(4):317-320.
    [13]Milliman J D,Müller G,Frstner U.Recent sedimentary carbonates:Part 1 marine carbonates[M].Berlin Heidelberg:SpringerVerlag,1974:375.
    [14]Banner J L.Application of the trace element and isotope geochemistry of strontium to studies of carbonate diagenesis[J].Sedimentology,1995,42(5):805-824.
    [15]Morse J W,Mackenzie T F.Geochemistry of sedimentary carbonates[M].Amsterdam:Elsevier,1990:706.
    [16]王宝清,王凤琴,魏新善,等.鄂尔多斯盆地东部太原组古岩溶特征[J].地质学报,2006,80(5):700-704.Wang Baoqing,Wang Fengqin,Wei Xinshan,et al.Characteristics of Paleokarst in the Taiyuan Formation from eastern Ordos Basin[J].Acta Geologica Sinica,2006,80(5):700-704.
    [17]Rao C P.Geochemistry of temperature-water carbonates,Tasmania,Australia[J].Marine Geology,1986,71(3/4):363-370.
    [18]Rao C P.Petrography,trace elements and oxygen and carbon isotopes of Gordon Group carbonates(Ordovician),Florentine Valley,Tasmania,Australia[J].Sedimentary Geology,1990,66(1/2):83-97.
    [19]Wang Baoqing,Al-Aasm I S.Karst-controlled diagenesis and reservoir development:Example from the Ordovician main-reservoir carbonate rocks on the eastern margin of the Ordos Basin,China[J].AAPG Bulletin,2002,89(9):1639-1658.
    [20]王宝清,章贵松.鄂尔多斯盆地苏里格地区奥陶系古岩溶储层成岩作用[J].石油实验地质,2006,28(6):518-522.Wang Baoqing,Zhang Guisong.Diagenesis of Ordovician paleokarst reservoir in the Sulige area,the Ordos Basin[J].Petroleum Geology&Experiment,2006,28(6):518-522.
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