The KT-Ⅰ interval carbonate unit of the Upper Carboniferours is composed of a shallow marine carbonate rock with some evaporate strata,which is dolomitized in the Coastal Caspian Sea Basin,Aktyubinsk,Kazakstan.The fine-crystalline dolostone(mud-dominated)with vug porosity is the most important oil reservoir in the KT-Ⅰ interval carbonate unit. Study shows that the KT-Ⅰ interval dolomite is characterized by micrite, silt or fine crystals with subhedral or anhedral form, ordering index of 0.336~0.504, and slight enrichment of calcium. The dolomite contains stable isotopic oxygen composition of -1.06‰~+2.45‰ PDB(average,+0.4‰),which is positive to sea water(Carboniferous), and carbon composition of +3.36‰~+5.94‰ PDB which is approximate to sea water.Its stable isotopic strontium composition is 0.708 265~0.708 750, which is approximate to that of sea water or evaporative sea water.The trace element content of 92.57 μg/g(average) for Mn,and 447.52 μg/g (average)for Fe of the KT-Ⅰ interval dolostone,are lower than Mn and Fe content in the burial dolostone,while the trace element content of Na,K and Sr are more than those in the replaceable limestone.The above data about the KT-Ⅰ interval dolostone show that the dolomitization was formed in the near surface evaporative condition,which is characterized by seepage-reflux.
About author: Shi Xin,born in 1977,engineer, is a Ph.D.candidate of Southwest Petroleum University.Now he majors in mineral resource prospecting and exploration.E-mail: shixin123123123@126.com.
Cite this article:
Shi Xin,Cheng Xubin,Wang Juan et al. Geochemical characteristics of the Carboniferours KT-Ⅰ interval dolostone in eastern margin of coastal Caspian Sea Basin[J]. JOURNAL OF PALAEOGEOGRAPHY, 2012, 14(6): 777-786.
Shi Xin,Cheng Xubin,Wang Juan et al. Geochemical characteristics of the Carboniferours KT-Ⅰ interval dolostone in eastern margin of coastal Caspian Sea Basin[J]. JOPC, 2012, 14(6): 777-786.
方甲中,吴林刚,高岗,等.2008.滨里海盆地碳酸盐岩储集层沉积相与类型——以让纳若尔油田石炭系KT-Ⅱ含油层系为例[J].石油勘探与开发,35(4):498-508. 黄思静.1990.海相碳酸盐矿物的阴极发光性与其成岩蚀变的关系[J].岩相古地理,10(4):9-15. 黄思静.1992.碳酸盐矿物的阴极发光性与其Fe,Mn含量的关系[J].矿物岩石,12(4):74-79. 刘洛夫,朱毅秀,胡爱梅,等.2002.滨里海盆地盐下层系的油气地质特征[J].西南石油学院学报(自然科学版),24(3):11-15. 刘洛夫,朱毅秀,熊正祥,等.2003.滨里海盆地的岩相古地理特征及其演化[J].古地理学报,5(3):279-289. 刘洁,皇甫红英.2000.碳酸盐矿物的阴极发光性与微量元素的关系[J].沉积与特提斯地质,20(3):71-76. Allan J R,Wiggins W D.1993.Dolomite Reservoirs,Geochemical Techniques for Evaluating Origin and Distribution[R].American Association of Petroleum Geologists,Continuing Education Cource Note Series #36. Burke W H, Dension R E, Hetherington E A, et al. 1982. Variateon of seawater 87Sr/86Sr throughout Phanerozoic time[J]. Geology, 10:516-519. Elderfield H. 1986. Strontium isotope stratigraphy [J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 57:71-90. Land L S.1982.Dolomitization[R]. American Association of Petroleum Geologists, Continuing Education Course Note Series #24. Lohmann K C.1988.Application of carbon and oxygen isotopic techniques for unraveling the diagenetic history of carbonate sequence[C].In: Allan J R,Harris P M(eds).Stable Isotope,Trace Element,and Fluid Inclusion Workshop. Chevron Oil Field Research CO.,1-49. Lohmann K C,Walker J C G.1989.The δ18O record of phanerozoic abiotic marine calcite cement[J].Geophysical Research Letters,16:319-322. Major R P,Halley R B,Lukas K J.1988.Cathodoluminescent bimineralic ooids from the pleistocence of the Florida continental shelf[J].Sedimentology,35:843-855. Popp B N,Anderson T F,Sandberg P A.1986.Brachiopods as indicator of original isotopic composition in some Paleozoic limestone[J].Bull.Geol.soc.Amer.,97:1262-1269. Veizer J.1989.Strontium isotopes in seawater through time[J]. Annu.Rev.Earth planet.Sci.Letters,17:141-167.