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1.
柴达木盆地天然气的碳同位素地球化学特征及成因分析   总被引:4,自引:0,他引:4  
依据天然气碳同位素中δ13C1、δ13C2、δ13C3的组成与划分标准,将柴达木盆地天然气划分为煤型气、裂解气、油型气与生物气四种类型,通过对天然气同位素中的δ13C1、δ13C2-δ13C1、δ13C3-δ13C2值的差异分析以及与对应的烃源岩干酪根碳同位素进行对比分析,探讨了柴达木盆地不同地区天然气的成因以及影响因素,这对于探索柴达木盆地的成气规律以及在不同地区天然气勘探的目标选择都有着现实意义。  相似文献   

2.
The molecular compositions and stable carbon and hydrogen isotopic compositions of natural gas from the Xinchang gas field in the Sichuan Basin were investigated to determine the genetic types. The natural gas is mainly composed of methane (88.99%–98.01%), and the dryness coefficient varies between 0.908 and 0.997. The gas generally displays positive alkane carbon and hydrogen isotopic series. The geochemical characteristics and gas-source correlation indicate that the gases stored in the 5~(th) member of the Upper Triassic Xujiahe Formation are coal-type gases which are derived from source rocks in the stratum itself. The gases reservoired in the 4~(th) member of the Xujiahe Formation and Jurassic strata in the Xinchang gas field are also coal-type gases that are derived from source rocks in the 3~(rd) and 4~(th) members of the Xujiahe Formation. The gases reservoired in the 2~(nd) member of the Upper Triassic Xujiahe Formation are mainly coal-type gases with small amounts of oil-type gas that is derived from source rocks in the stratum itself. This is accompanied by a small amount of contribution brought by source rocks in the Upper Triassic Ma'antang and Xiaotangzi formations. The gases reservoired in the 4~(th) member of the Middle Triassic Leikoupo Formation are oil-type gases and are believed to be derived from the secondary cracking of oil which is most likely to be generated from the Upper Permian source rocks.  相似文献   

3.
The Paleogene and Neogene oil and gas in the western Qaidam basin have a regular distribution in three concentric zones from the edge to the center of the basin.Natural gas mainly occurs in the inner zone,and the gas-oil ratio of the northern area of the basin is significantly higher than that of the southern area.Large amounts of carbon isotope data of natural gas,plotted in Xshaped and comprehensive identification diagrams for the southern area and northern area,respectively,were used to identify the types of natural gas.The large-scale distribution of natural gas is highly consistent with the Ro values of major source rocks,but is poorly correlated with the type of organic matter.This indicates that the main controlling factor of natural gas distribution is organic matter maturity,and the kerogen types act as the basis for the formation of different types of natural gas.Paleouplifts and squeezed anticlines near hydrocarbon generation depression centers,which are major natural gas-rich regions,control the migration directions of natural gas,while hydrocarbon migration pathways and fault systems connecting gas sources are the most important factors for natural gas reservoir formation in the inner basin.Therefore,favorable zones for natural gas distribution can be predicted on the basis of the distribution of thermal evolution and the gas generation intensity of major source rocks as well as the structural map.The Shizigou-YoushashanYingdong-Dawusi,Youquanzi –Kaitemilike- Youdunzi,and Xiaoliangshan – Nanyishan- Dafengshan structural belts are favorable zones for natural gas accumulation.This study has important theoretical and practical significance for future natural gas exploration.  相似文献   

4.
柴达木盆地西部卤水特征及成因探讨   总被引:15,自引:0,他引:15  
柴达木盆地自中生代末-新生代初以来,四周山体不断抬升,形成"高山深盆"的沉积环境,为盆地带来了大量盐类物质,再加上新近纪干旱封闭的气候环境,使得其西部沉积了广阔而厚层的岩盐.在对柴达木盆地西部新近系、第四系地层出露盐矿点实地考察的过程中,采集、分析了18件卤水样品的水化学组成.结果表明,卤水矿化度高,油田卤水富B3 、Li 、Sr2 和Br-等有益组分,其前缘第四纪形成的盐湖也有大量K 资源分布.通过离子含量及水化学特征系数,查明了卤水的水化学类型主要为氯化物型和硫酸镁亚型,地表浅层卤水富Mg2 、SO24-贫Ca2 ,而油田卤水富Ca2 ,贫Mg2 、SO24-.反映了油田卤水具有深部CaCl2型水体的特征,这种富Ca2 的卤水可能与白云岩化作用使卤水中的Ca2 增加而Mg2 减少,以及硫酸盐的还原作用使SO24-减少有关;地表浅层卤水接近青海湖湖水蒸发线,说明盆地卤水主要是由大气降水汇聚蒸发形成.通过卤水氢氧同位素的分析,发现卤水明显偏离于大气降水线,发生了明显的"氧同位素正漂移"现象,且卤水演化趋势线和当地大气降水线的交点与周围山体前缘的盐泉水的氢氧同位素值相近,地表浅层卤水主要分布在大气降水线附近,而油田卤水集中分布在变质水的范围内.说明地表浅层卤水主要是由大气降水汇聚而形成的;而深部油田卤水推测基本上来源于冰雪融水或雨水补给,这些冰雪融水或雨水沿着断裂带下渗,在迁移的途中发生了变质作用和深部地热水体掺杂作用,形成了深部油田卤水.  相似文献   

5.
柴达木盆地原油地球化学特征及其源岩时代判识   总被引:10,自引:8,他引:10       下载免费PDF全文
在系统分析柴达木盆地北缘和西部各油田60余个原油样品轻烃、饱和烃和芳烃组成的基础上,全面揭示了两地区原油的标志性地球化学特征;并结合源岩分析资料,应用断代生物标志物建立了识别原油源岩时代的标志。研究结果表明,北缘各油田原油Mango轻烃参数K_1值波动在1.1上下,富含甲基环已烷和甲苯;正烷烃呈奇偶优势分布,姥鲛烷优势显著;反映侏罗系淡水湖沼相沉积有机质特征。西部原油K_1值大多在1.2以上,轻烃中富含异构支链化合物;正烷烃系列呈奇碳优势(C_(11)~C(17))和偶碳优势(C_(18)~C_(28))双重分布模式,强植烷优势;C_(28)甾烷相对含量高(>30%);脱羟基维生素E系列化合物丰富,5,7,8-三甲基-/8-甲基-MTTC比值大都低于10;表征古近系—新近系咸水湖相有机质性质。奥利烷和C_(26)降胆甾烷是区分侏罗系和古近系—新近系油源油的有效断代生物标志物。侏罗系原油无奥利烷,24-/(24-+27-)降胆甾烷比值小于0.25;古近系—新近系原油含有奥利烷,24-/(24-+27-)降胆甾烷比值高于0.6。  相似文献   

6.
This paper is mainly concentrated on the geochemical characteristics and origin of gas of Kekeya field in the Tarim basin, NW China. This study shows that Permian mudstone is the main source rock of oil and gas. Based on the carbon isotopes of C1--C4, the carbon isotope of gas in Kekeya field is a little heavier than that in the typical marine-derived gas. The relationship between carbon isotopes of methane and ethane is coincident with Faber equation of gas derived from organic matter Ⅰ/Ⅱ. The majority of gas maturity is estimated, based on the formula, at 1.8%-2.2% besides K2 and K18 wells. In addition, the gas derived from 0.9%-1.2% Ro source rocks may also bemixture. ^40Ar/^36Ar and ^3He/^4He ratios from the gas samples also support the mixing process. Moreover, the gas in this region is mainly generated from more mature source rocks although the low mature gas exists.  相似文献   

7.
柴达木盆地三湖地区第四系生物气的形成途径与运聚方式   总被引:22,自引:1,他引:22  
柴达木盆地三湖(台吉乃尔湖、涩聂湖、达布逊湖)地区第四系生物气区是我国最大的生物气区。笔者系统采集了该气区21个天然气样品,测量了其组分和碳同位素组成,重点探讨了生物气形成途径和运聚方式。生物气δ~(13)C_1和δ~(13)C_(CO_2)均随深度增大而变重,显示了CO_2还原途径成气的特征。生物气δ~(13)C_1、δ~(13)C_(CO_2)和δD分布与CO_2还原方式形成的生物气的相应同位素值分布范围接近。在有关成因图解中这些数据主要位于CO_2还原途径成气范围内。生物气CO_2和CH_4之间的碳同位素分馏系数α_c>1.055,具有CO_2还原途径成气的特征。柴达木盆地第四纪干旱的古气候、较低的古温度、较高的沉积速率和水体中较高的硫酸盐含量使得甲烷菌的大量繁殖只能在较大的深度范围内才能实现,从而,有利于CO_2还原途径成气作用进行。涩北一号、涩北二号气田生物气δ~(13)C_1组成分布可能表明,生物气形成以后沿疏导层水平运移进入气藏,基本不存在垂向运移。该项研究对于进一步深入探讨生物气成因、形成条件,确定生物气模拟实验方式与条件,计算生物气资源量,建立成藏模式和选择天然气有利勘探区块均具有重要价值。  相似文献   

8.
塔里木盆地东部地区天然气地球化学特征及成因探讨(之一)   总被引:16,自引:0,他引:16  
陈践发  黄第藩 《沉积学报》2000,18(4):606-610
塔里木盆地是世界上勘探程度较低的大型盆地之一。近年来在该盆地中进行了大规模的油气勘探,发现了一系列的油、气田,其油、气资源量近似1∶1,说明在该盆地中天然气资源非常丰富。该盆地已发现的天然气主要分布在塔里木盆地东部地区的塔北隆起、塔中隆起和库车拗陷。天然气主要与凝析油及原油伴生。该盆地天然气组分分析表明,已发现的天然气藏绝大多数烃类气体含量大于65%;非烃气体CO2含量小于5%,N2含量小于10%。一些天然气中N2含量达25%到35%。在塔北隆起油气藏中天然气的干湿指数(C1/C2+比值)具有从东到西降低的趋势,天然气中N2含量具有从东到西升高的趋势,天然气甲烷的碳同位素组成也具有由东到西变轻的趋势,结合该区的地质背景可知造成这一趋势的主要因素可能是由于该区下古生界烃源岩热演化程度具有东高西低的特征。  相似文献   

9.
根据天然气地球化学基本理论,对柴达木盆地西部(柴西)地区天然气的地球化学特征进行分析。测试和收集该地区18个油气田及含油气构造的83个天然气样品,分析其组分和C同位素数据,结果显示,该区天然气以烃类气体为主,烃类含量介于79.24%~99.81%之间,天然气比重介于0.72~1.36之间,天然气干燥系数(C1/C2+)介于1.04~617.8之间,甲烷C同位素值介于-51.4‰~-24.2‰之间,乙烷C同位素值介于-34.2‰~-17.4‰之间。在此基础上,对该区不同构造带的天然气成因类型进行研究。研究结果表明,柴达木盆地西部地区天然气类型可划分为腐泥型气、腐殖型气、混合气3类,柴西北部天然气主要为腐泥型气和混合气,少量腐殖型气;柴西南部主要为腐泥型气,少量混合气。同时,建立了天然气成因类型的判识指标,对该区的天然气地球化学特征有了较为深入的认识,对今后的天然气勘探具有指导意义。  相似文献   

10.
根据天然气地球化学基本理论,对柴达木盆地西部(柴西)地区天然气的地球化学特征进行分析。测试和收集该地区18个油气田及含油气构造的83个天然气样品,分析其组分和C同位素数据,结果显示,该区天然气以烃类气体为主,烃类含量介于79.24%~99.81%之间,天然气比重介于0.72~1.36之间,天然气干燥系数(C1/C2+)介于1.04~617.8之间,甲烷C同位素值介于-51.4‰~-24.2‰之间,乙烷C同位素值介于-34.2‰~-17.4‰之间。在此基础上,对该区不同构造带的天然气成因类型进行研究。研究结果表明,柴达木盆地西部地区天然气类型可划分为腐泥型气、腐殖型气、混合气3类,柴西北部天然气主要为腐泥型气和混合气,少量腐殖型气;柴西南部主要为腐泥型气,少量混合气。同时,建立了天然气成因类型的判识指标,对该区的天然气地球化学特征有了较为深入的认识,对今后的天然气勘探具有指导意义。  相似文献   

11.
塔里木盆地东部地区天然气地球化学特征及成因探讨(之二)   总被引:17,自引:2,他引:17  
天然气的组分和碳、氢同位素组成特征研究表明塔里木盆地已发现的天然气均为热解气。通过气源对比可知,该盆地东部地区的天然气主要有两种类型 :1)是来自震旦纪到下古生界海相腐泥型母质的油型气,其甲烷、乙烷、丙烷δ13C值,分别为-44.5‰~-33.8‰、- 42‰~-2 8.1‰和-35.4‰~-2 8.4‰,其甲烷的氢同位素组成大于- 2 0 0‰;2 )是产自中生代陆相腐殖型源岩的煤型气,其甲烷、乙烷、丙烷的δ13C值分别为-40.5‰~-33.1‰、- 2 9.7‰~-2 1.3‰和-2 6.3‰~-2 0.3‰,其甲烷的氢同位素组成小于-2 0 0‰。将天然气的地化特征与地质背景相结合判断可知,在塔北隆起地区一些天然气藏是由成熟 (高成熟 )阶段的油型气与过成熟阶段的油型气混合形成,另一些天然气藏是由成熟阶段的油型气和成熟阶段的煤型气混合形成.  相似文献   

12.
The natural gases in the Upper Paleozoic strata of the Ordos basin are characterized by relatively heavy C isotope of gaseous alkanes with δ 13C1 and δ13C2 values ranging mainly from ?35‰ to ?30‰ and ?27‰ to ?22‰, respectively, high δ13C excursions (round 10) between ethane and methane and predominant methane in hydrocarbon gases with most C1/(C1-C5) ratios in excess of 0.95, suggesting an origin of coal-derived gas. The gases exhibit different carbon isotopic profiles for C1-C4 alkanes with those of the natural gases found in the Lower Paleozoic of this basin, and believed to be originated from Carboniferous-Permian coal measures. The occurrence of regionally pervasive gas accumulation is distinct in the gently southward-dipping Shanbei slope of the central basin. It is noted that molecular and isotopic composition changes of the gases in various gas reservoirs are associated with the thermal maturities of gas source rocks. The abundances and δ13C values of methane generally decline northwards and from the basin center to its margins, and the effects of hydrocarbon migration on compositional modification seem insignificant. However, C isotopes of autogenetic calcites in the vertical and lateral section of reservoirs show a regular variation, and are as a whole depleted upwards and towards basin margins. Combination with gas maturity gradient, the analysis could be considered to be a useful tool for gas migration.  相似文献   

13.
The natural gases in the Upper Paleozoic strata of the Ordos basin are characterized by relatively heavy C isotope of gaseous alkanes with δ13C1 and δ13C2 values ranging mainly from-35‰ to -30‰ and-27‰ to-22‰,respectively,high δ13C excursions (round 10)between ethane and methane and predominant methane in hydrocarbon gases with most C1/(C1-C5)ratios in excess of 0.95, suggesting an origin of coal-derived gas.The gases exhibit different carbon isotopic profiles for C1.C4 alkanes with those of the natural gases found in the Lower Paleozoic of this basin.and believed to be originated from Carboniferous-Permian coal measures.The occurrence of regionally pervasive gas accumulation iS distinct in the gently southward-dipping Shanbei slope of the central basin.It is noted that molecular and isotopic composition changes of the gases in various gas reservoirs are associated With the thermal maturities of gas source rocks.The abundances and δ13C values of methane generally decline northwards and from the basin center to its margins.and the effects of hydrocarbon migration on compositional modification seem insignificant.However, C isotopes of autogenetic calcites in the vertical and lateral section of reservoirs show a regular variation,and are as a whole depleted upwards and towards basin margins.Combination with gas maturity gradient, the analysis could be considered to be a useful tool for gas migration.  相似文献   

14.
天然气中氮的地球化学特征   总被引:23,自引:0,他引:23  
杜建国 Faber  E 《沉积学报》1996,14(1):143-148
本文研究了天然气中氮的地球化学特征,并讨论了氮的成因。  相似文献   

15.
柴达木盆地西北角分布有基岩,盆地西部分布山麓堆积及河、湖相沉积地层,新生界发育有多个北西—南东走向的规模不一的背斜,新近系分布有富钾地下卤水。利用统计方法分析卤水中TDS、K+和B2O3的富集情况。结果显示:TDS值出现双峰,卤水样品富K+和B3+的概率分别为628%和6129%。使用Piper图研究地下卤水时,经常出现样品点过于集中而不易反映主要离子含量的变化。本次研究改进了前人的图示方法,绘制适合于表示地下卤水的水化学图。利用钠氯系数、氯溴系数、氯碘系数、钾氯系数、脱硫系数、钙镁系数对研究区卤水水样进行分析,结果显示卤水样品多数未达到石盐沉积,少数达到石盐沉积。研究区水样氢、氧稳定同位素数据显示新近系地下卤水δ18O值和δD值均发生漂移,表明卤水经历长时间的蒸发浓缩。研究区地下卤水起源于早上新世的古大气降水,上新世以后由于青藏高原快速隆升,柴达木盆地抬升和沉降中心东移,接受沉积形成良好的盖层,同时大气环流的改变致使气候变得干燥,地下卤水经历蒸发浓缩封存,形成现今的卤水。  相似文献   

16.
对长岭断陷 CO2气地化分析表明,松南气田多数井的δ^13 Cco2值均大于-8×10^-3,均为无机成因,而东岭气田部分井的δ^13 Cco2值均小于-10×10^-3,属于有机成因。其中无机成因 CO2气体中 R/Ra 值均大于1,表明其无机成因 CO2都属于岩浆幔源成因。对长岭断陷地区钻井气测含量资料综合分析表明,无机成因 CO2气的平面展布特征可划分为:高含 CO2气区(>90%),位于中部及东北部,表现有 NNE-NE 向展布的趋势;中高含 CO2气区(70%-90%),主要位于乾安次凹南部,总体表现为 NNW-近 SN 向展布;中低含 CO2气区(20%-50%),主要分布于2个地区。红岗地区,以 NNE 向为主。腰英台-达尔罕地区,以近 SN 向为主;南部的低含 CO2气区。垂向上长岭断陷南北2个次凹中的 CO2产出层位显著不同。北部次凹内的产出层位较高,主要以泉头组及其上的青山口组为主。南部的无机 CO2气产出层位以断陷期营城组火山岩为主,少量为登娄库组。  相似文献   

17.
测试并分析了柴北缘各油气田的14个天然气样品的氦、氩稀有气体同位素比值,并进行了气源对比。研究发现,柴北缘天然气40Ar/36Ar值分布在951~1712,平均1098,多数样品40Ar/36Ar较通常认为源于侏罗系的天然气40Ar/36Ar明显偏高,研究认为本区不存在幔源高40Ar/36Ar流体的介入,储层年代效应也不可能造成天然气40Ar/36Ar明显偏高,因此柴北缘天然气40Ar/36Ar明显偏高,主要是由于源岩年代积累效应引起的。据估算,气源岩年龄分布范围为164.7~460.8Ma,平均为345.1Ma,可能多数来源于石炭系。这一认识得到了柴北缘广泛分布有石炭系源岩和已发现源于石炭系原油的支持。柴北缘石炭系天然气的发现预示了柴北缘石炭系是一个新的油气勘探层系,从而拓展了柴北缘天然气勘探领域。  相似文献   

18.
天然气运移的气体组分的地球化学示踪   总被引:17,自引:1,他引:17  
张同伟  王雅丽 《沉积学报》1999,17(4):627-632
本文通过我国不同含油气盆地典型地区岩石酸解气、罐顶气和天然气中化学组分分析,结合天然气的形成和盆地的地质演化,研究了天然气运移时组分的变化。结果表明,天然气通过地层孔隙系统运移时,组分会发生明显分馏,表现在甲烷相对重烃、异构丁烷相对正构丁烷的优先迁移。酸解气、罐顶气和成藏天然气中C1/C2+、iC4/nC4及总烃/非烃等比值,是天然气运移示踪的有效指标。  相似文献   

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漠河盆地是我国冻土发育的主要地区之一,发育良好的天然气水合物成藏系统,具有天然气水合物形成的良好条件。为了圈定天然气水合物远景区,识别油气聚集体,判别天然气水合物成因,在漠河盆地冻土较发育地区开展了1∶5万天然气水合物地球化学资源调查。结果表明:(1)在森林沼泽景观区,顶空气和荧光光谱指标是天然气水合物勘查的主要指标,借鉴青海木里冻土区天然气水合物地球化学勘查成功的经验,结合AMT、地质等资料分析,元宝山凹陷是天然气水合物较为有利的远景区;(2)岩心样品甲烷碳同位素分析显示,烃类气体分异明显,浅层烃类气体基本为生物气,深部烃类气源主要为混合成因气,个别解吸气为微生物气和热解气;(3)试验性应用了分形-GIS技术,可以细致可靠地进行异常区范围划定,消除干扰因素,有效地圈定水合物远景区。  相似文献   

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