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1.
四川盆地MVT型铅锌矿主要产于灯影组白云岩中,它们与古油(气)藏在空间上具有密切关系,显示出铅锌矿成矿与油气成藏紧密的成因联系.本次研究采用地质地球化学分析与扫描电镜观察相结合,对烃源岩和古油气藏中的沥青展开研究,揭示MVT型铅锌矿中成矿金属元素的物质来源.研究表明,与铅锌矿密切共生或伴生的油气藏的烃源岩主要为寒武系筇竹寺组(郭家坝组);部分烃源岩的Pb,Zn,Ba含量异常地高于地壳克拉克值,烃源岩中存在微米级的方铅矿、闪锌矿、黄铁矿和重晶石等,表明部分烃源岩具有为成矿提供金属元素的能力.MVT铅锌矿床中绝大部分沥青均具有异常高的Pb,Zn含量,沥青内也存在微米级的方铅矿、闪锌矿、黄铁矿、重晶石包裹物;沥青中的铅锌含量远高于MVT铅锌矿成矿流体所需要的铅锌含量,表明石油可能不仅起到了金属元素搬运载体的作用,油藏流体可能也是成矿流体.寒武系筇竹寺组(郭家坝组)泥质岩既是烃源岩层也是MVT矿源层,具有双源层特征.  相似文献   

2.
马元铅锌矿床位于扬子地台北缘,米仓山隆起带东段,是扬子地台周缘地区重要的铅锌矿床之一。矿体赋存于震旦系灯影组角砾状白云岩中,矿石中见大量沥青与闪锌矿、方铅矿紧密共伴生。为探讨马元铅锌矿床中有机质对铅锌成矿的作用,对矿床中的沥青、矿石及围岩进行了系统的矿相学、岩相学、显微测温、激光拉曼成分分析及碳同位素研究。结果表明: 矿床中有机包裹体发育,且有机包裹体中含有甲烷、乙烷、硫化氢、二氧化碳等组分;包裹体均一温度、沥青的镜质体反射率所计算的演化最大古地温与碳同位素特征显示,矿床中的有机质可能是由震旦系灯影组地层中的古油藏发生热裂解形成,古油藏的热裂解为成矿作用提供了还原环境,并为成矿流体中的金属离子沉淀提供了还原硫。  相似文献   

3.
湘西黔东地区铅锌矿床与古油藏关系初探   总被引:3,自引:0,他引:3  
本文以湖南花垣铅锌矿床和贵州牛角塘铅锌矿床为例,探讨了湘西黔东地区铅锌矿与古油藏的关系。二者在空间分布上关系密切,存在"共生"和"上油下矿"两种关系,下寒武统清虚洞组既是铅锌矿重要的赋矿层位也是古油藏储集层之一;铅锌矿源层可能为新元古代基底岩系或下寒武统石牌组碎屑岩,古油藏烃源岩主要为下寒武统牛蹄塘组。古油藏中的油田卤水萃取了石牌组碎屑岩中的铅锌等成矿物质,形成成矿流体并运移,在古油藏形成后,由于加里东末期的构造运动的影响,古油藏和成矿流体的平衡被打破导致铅锌矿质沉淀,在这个过程中古油藏中的油田卤水可能为铅锌矿的沉淀提供了部分硫源。铅锌矿成矿时代与加里东期形成或破坏的古油藏时间上较为一致。  相似文献   

4.
MVT铅锌矿与(古)油气藏在空间上的密切共生/伴生关系,说明成矿与成藏具有密切的成因联系。四川盆地东南缘的河坝铅锌矿产于震旦系灯影组古油气藏中,虽然二者在空间上密切共生,但铅锌矿的规模远较古油气藏的规模小。形成铅锌矿的流体具有较高的盐度(w(NaCl)=21.33%~23.83%)并富含有机质,成矿流体的峰温为122~134℃。与闪锌矿共生萤石的Rb-Sr和Sm-Nd同位素年龄显示成矿发生于128~130Ma。研究区的古油气藏先后经历了多期成藏与破坏。奥陶纪—中志留世时期第一次成藏,加里东期末被破坏;二叠纪—中三叠世时期二次生烃形成油藏,晚三叠世—侏罗纪时期随着埋藏深度增加,石油发生热裂解形成古气藏,燕山期古气藏被破坏。铅锌矿的成矿仅与石油的热裂解和古气藏的破坏密切相关。石油热裂解形成硫化氢,热裂解过程中的超压使硫化氢溶于水为铅锌矿成矿提供硫源,构造隆升造成古气藏破坏,含硫化氢的油田卤水与成矿流体混合成矿。  相似文献   

5.
MVT型铅锌矿由于成矿温度低,目前没有发现十分合适的定年矿物,此外,由于多期成矿作用叠加以及成矿物质存在多元混合,严重制约了对此类矿床成矿年代学研究.前人对云南金顶超大型MVT铅锌矿床成因、物质来源、成矿条件等方面研究取得了重要成果,但对其形成时代各有所云,至今仍未定论.笔者在总结了大量前人研究成果的基础上,通过对跑马坪和架崖山矿段沥青样品开展Re-Os同位素定年研究,表明古油藏形成于59.1 Ma,金顶铅锌矿床的形成时代可能为27.7 Ma.早期的油气藏为后期铅锌矿的形成提供了十分重要的条件,穹隆构造为金属成矿提供了储矿空间,由于遭受构造及热液作用的破坏,油气裂解释放大量的还原性物质,为Pb、Zn等成矿物质迁移、富集、沉淀提供了重要载体,进而形成了金顶超大型铅锌矿床.研究结果表明,沥青Re-Os同位素不仅能够为MVT型铅锌矿床成矿年龄的厘定提供一种有效的技术途径,同时还能够为油气藏的生成、破坏等事件发生时代提供有利依据.   相似文献   

6.
丹寨汞金矿床卤素元素与古油藏关系探讨   总被引:6,自引:0,他引:6  
丹寨汞金矿床是与古油藏共生的金属矿床,产在古油藏的边缘,矿区内发育大量的油气化产物沥青、含烃有机包裹体等机质,可见该矿床与古油藏有密切的地质关系。对矿区内卤素元素地球化学特征的研究结果表明,矿区内溴、碘的富集程度远比氟、氯高,这与古油藏油田卤水的形成演化有关,而且,油田卤水是该矿床成矿热液的主要来源。  相似文献   

7.
四川盆地富硫天然气与盆地周缘铅锌铜矿的成因联系   总被引:1,自引:0,他引:1  
李厚民  张长青 《地质论评》2012,58(3):495-510
金属元素的搬运和沉淀是热液矿床成矿机理研究的重要方面。目前人们普遍认为热液矿床中金属元素主要呈硫的络合物和卤素络合物形式搬运。MVT铅锌矿床等硫化物矿床盐度较高,包裹体成分中阳离子以Na+、K+、Ca2+、Mg2+为主,阴离子以Cl-、F-、CO2-3为主,很少有HS-、S2-,表明金属元素主要以氯的络合物形式搬运,外来硫的加入是导致铅锌成矿物质以硫化物形式沉淀成矿的关键。四川盆地天然气中富含H2S,其与周缘MVT铅锌矿床具有密切的时空关系,据此推测天然气中的H2S可能是导致铅锌硫化物沉淀形成MVT铅锌矿床的主要硫源,天然气中的H2S与铅锌成矿流体在古油藏中作用形成含沥青的铅锌矿床;当含硫化氢的天然气运移离开古油藏后与含矿流体混合时,形成不含沥青的铅锌矿床。另外,石油热裂解产生的不含H2S的天然气使得含铜热液中的铜还原,以自然铜形式沉淀形成含沥青的玄武岩铜矿;石油热化学硫酸盐还原(TSR)过程中,还会发生溶蚀作用,扩大碳酸盐岩孔隙,为成矿提供空间。  相似文献   

8.
金属元素的搬运和沉淀是热液矿床成矿机理研究的重要方面.目前人们普遍认为热液矿床中金属元素主要呈硫的络合物和卤素络合物形式搬运.MVT铅锌矿床等硫化物矿床盐度较高,包裹体成分中阳离子以Na+、K+、Ca2+、Mg2+为主,阴离子以Cl-、F-、CO32-为主,很少有HS-、S2-,表明金属元素主要以氯的络合物形式搬运,外来硫的加入是导致铅锌成矿物质以硫化物形式沉淀成矿的关键.四川盆地天然气中富含H2S,其与周缘MVT 铅锌矿床具有密切的时空关系,据此推测天然气中的H2S可能是导致铅锌硫化物沉淀形成MVT铅锌矿床的主要硫源,天然气中的H2S与铅锌成矿流体在古油藏中作用形成含沥青的铅锌矿床;当含硫化氢的天然气运移离开古油藏后与含矿流体混合时,形成不含沥青的铅锌矿床.另外,石油热裂解产生的不含H2S的天然气使得含铜热液中的铜还原,以自然铜形式沉淀形成含沥青的玄武岩铜矿;石油热化学硫酸盐还原(TSR)过程中,还会发生溶蚀作用,扩大碳酸盐岩孔隙,为成矿提供空间.  相似文献   

9.
镇康芦子园铅锌铁多金属矿床属大型铅锌铁矿床,对矿床矿石矿物的系统研究表明,矿石主要金属硫化物有闪锌矿、方铅矿、黄铜矿、黄铁矿。根据矿床地质特征、矿物共生组合及相互穿插关系,认为成矿主要分为热液成矿期和表生期,矿床是与燕山期隐伏岩体有关的岩浆热液型矿床。  相似文献   

10.
麻江古油藏原生水晶中固体沥青包裹体的发现及地质意义   总被引:3,自引:2,他引:1  
在麻江古油藏坝固地区,产于下奥陶统红花园组碳酸盐岩储层晶洞中的大部分水晶中均含有固体沥青包裹体,其中一类为水晶生长过程中捕获白云岩晶洞中的储层沥青,可能代表了传统上认为的在加里东期被破坏的麻江古油藏。激光拉曼光谱分析显示该类固体沥青包裹体与白云岩晶洞中的储层沥青都具有较高的演化程度。根据流体包裹体显微测温和埋藏史分析,认为麻江古油藏存在印支期成藏的油气,结合流体包裹体与水晶中原生固体沥青包裹体的共生关系,为传统认为的麻江古油藏在加里东期被破坏提供了新证据,此外,还对印支期成藏油气的来源做了初步分析。  相似文献   

11.
The coexistence of Zn-Pb deposits and oil/gas reservoirs demonstrates that a close genetic link between them. The Nanmushu is a large Mississippi Valley-Type (MVT) Zn-Pb deposit discovered on the northern margin of the Yangtze block in recent years. The deposit is hosted in the Ediacaran Dengying Formation dolostone, accompanied by large amount of bitumen in the orebodies. The MVT Zn-Pb deposit overlaps with the paleo-oil/gas reservoir horizontally, and sandwiched in the paleo-oil/gas reservoirs at depth. The Cambrian Guojiaba Formation may have provided not only the oil for paleo-oil/gas reservoirs, but also ore metals for the Zn-Pb mineralization. With increasing burial depth, the Guojiaba Formation may have become more mature to form metal-rich fluids, and the metals migrated and accumulated with hydrocarbons to form a paleo-oil reservoir. Large-scale Zn-Pb mineralization may have occurred in the destruction process of paleo-gas reservoir. With the deep burial of paleo-oil reservoir, the paleo-oil reservoir may have transformed into a paleo-gas reservoir. Decoupling of metals and hydrocarbons during the paleo-gas reservoir formation may have provided the ore metals. Thermal sulfate reduction (TSR) during the paleo-oil/gas reservoirs formation may have provided the hydrogen sulfide for mineralization. Decompression and cooling during the paleo-gas reservoir destruction may have formed extensive metal sulfide precipitation and mineralization.  相似文献   

12.
The Youjiang basin, which flanks the southwest edge of the Yangtze craton in South China, contains many Carlin-type gold deposits and abundant paleo-oil reservoirs. The gold deposits and paleo-oil reservoirs are restricted to the same tectonic units, commonly at the basinal margins and within the intrabasinal isolated platforms and/or bioherms. The gold deposits are hosted by Permian to Triassic carbonate and siliciclastic rocks that typically contain high contents of organic carbon. Paragenetic relationships indicate that most of the deposits exhibit an early stage of barren quartz ± pyrite (stage I), a main stage of auriferous quartz + arsenian pyrite + arsenopyrite + marcasite (stage II), and a late stage of quartz + calcite + realgar ± orpiment ± native arsenic ± stibnite ± cinnabar ± dolomite (stage III). Bitumen in the gold deposits is commonly present as a migrated hydrocarbon product in mineralized host rocks, particularly close to high grade ores, but is absent in barren sedimentary rocks. Bitumen dispersed in the mineralized rocks is closely associated and/or intergrown with the main stage jasperoidal quartz, arsenian pyrite, and arsenopyrite. Bitumen occurring in hydrothermal veins and veinlets is paragenetically associated with stages II and III mineral assemblages. These observations suggest an intimate relationship between bitumen precipitation and gold mineralization. In the paleo-petroleum reservoirs that typically occur in Permian reef limestones, bitumen is most commonly observed in open spaces, either alone or associated with calcite. Where bitumen occurs with calcite, it is typically concentrated along pore/vein centers as well as along the wall of pores and fractures, indicating approximately coeval precipitation. In the gold deposits, aqueous fluid inclusions are dominant in the early stage barren quartz veins (stage I), with a homogenization temperature range typically of 230°C to 270°C and a salinity range of 2.6 to 7.2 wt% NaCl eq. Fluid inclusions in the main and late-stage quartz and calcite are dominated by aqueous inclusions as well as hydrocarbon- and CO2-rich inclusions. The presence of abundant hydrocarbon fluid inclusions in the gold deposits provides evidence that at least during main periods of the hydrothermal activity responsible for gold mineralization, the ore fluids consisted of an aqueous solution and an immiscible hydrocarbon phase. Aqueous inclusions in the main stage quartz associated with gold mineralization (stage II) typically have a homogenization temperature range of 200–230°C and a modal salinity around 5.3 wt% NaCl eq. Homogenization temperatures and salinities of aqueous inclusions in the late-stage drusy quartz and calcite (stage III) typically range from 120°C to 160°C and from 2.0 to 5.6 wt% NaCl eq., respectively. In the paleo-oil reservoirs, aqueous fluid inclusions with an average homogenization temperature of 80°C are dominant in early diagenetic calcite. Fluid inclusions in late diagenetic pore- and fissure-filling calcite associated with bitumen are dominated by liquid C2H6, vapor CH4, CH4–H2O, and aqueous inclusions, with a typical homogenization temperature range of 90°C to 180°C and a salinity range of 2–8 wt% NaCl eq. It is suggested that the hydrocarbons may have been trapped at relatively low temperatures, while the formation of gold deposits could have occurred under a wider and higher range of temperatures. The timing of gold mineralization in the Youjiang basin is still in dispute and a wide range of ages has been reported for individual deposits. Among the limited isotopic data, the Rb–Sr date of 206 ± 12 Ma for Au-bearing hydrothermal sericite at Jinya as well as the Re–Os date of 193 ± 13 Ma on auriferous arsenian pyrite and 40Ar/39Ar date of 194.6 ± 2 Ma on vein-filling sericite at Lannigou may provide the most reliable age constraints on gold mineralization. This age range is comparable with the estimated petroleum charging age range of 238–185 Ma and the Sm–Nd date of 182 ± 21 Ma for the pore- and fissure-filling calcite associated with bitumen at the Shitouzhai paleo-oil reservoir, corresponding to the late Indosinian to early Yanshanian orogenies in South China. The close association of Carlin-type gold deposits and paleo-oil reservoirs, the paragenetic coexistence of bitumens with ore-stage minerals, the presence of abundant hydrocarbons in the ore fluids, and the temporal coincidence of gold mineralization and hydrocarbon accumulation all support a coeval model in which the gold originated, migrated, and precipitated along with the hydrocarbons in an immiscible, gold- and hydrocarbon-bearing, basinal fluid system.  相似文献   

13.
目前虽认为元坝气田长兴组天然气主要为原油裂解气,但尚未进行该气田的古油藏的定量恢复并计算原油裂解气的资源量,并系统分析古油藏原油的来源.长兴组储层普遍可见固体沥青,是原油裂解的直接产物,且原油裂解在本区构造抬升变形前就已经完成,因此储层沥青可用来识别古油层的分布.根据储层沥青的纵向和平面分布,确定了7个可靠的古油藏和4个可能的古油藏,并运用容积法恢复出本区聚集的古原油为6.14×108 t,计算出相应的原油裂解气为3 807.08×108 m3,远大于现今气田的天然气探明储量,表明原油裂解气可以提供充足的气源,进一步证明了天然气主要为原油裂解气.通过长兴组储层沥青与不同层系烃源岩干酪根的碳同位素δ13C值对比,并结合烃源层分布和TOC等资料,确定古油藏原油主要来源于有机质类型以Ⅱ型为主的上二叠统吴家坪组烃源岩,其次为长兴组/大隆组烃源岩.后者主要分布在广元-南江-通江地区,该区的天然气勘探不能忽视该套烃源岩的生烃潜力与成藏贡献.   相似文献   

14.
四川赤普MVT铅锌矿床成矿与古老油气藏关系密切。通过对矿床不同成矿阶段硫化物硫同位素和热液碳酸盐碳、氧同位素系统研究,结合沥青有机质的有机地球化学特征,探讨油气参与金属成矿的详细过程。取得主要认识如下:(1)油气系统中先存的H2S是成矿早阶段主要的硫源, TSR作用启动后还原硫酸盐,为成矿提供另一硫源。Mg2+可能是控制成矿过程中TSR作用的一个因素;(2)热液碳酸盐矿物碳(氧)同位素组成指示了 TSR 作用氧化的有机碳与流体溶解围岩碳酸盐岩中碳的不均匀混合作用;(3)矿床中与成矿作用有关的有机质(沥青)具有高-过成熟度特征和低芳烃含量,或是其参与了 TSR 作用的一个标志;(4)川滇黔地区油气成藏-破坏和赤普铅锌成矿可能是盆山演化过程中不同阶段或是同一阶段不同时代的产物,铅锌矿床形成与古老油气藏破坏密切相关。  相似文献   

15.
东山峰背斜是湘鄂西褶皱冲断带的一部分,剖面构造为基底和盖层组成的双层结构。由于江南-雪峰基底拆离推覆隆起带向NW方向的推挤,导致湘鄂西区沉积盖层沿南华系和震旦系陡山沱组下段、寒武系牛蹄塘组、志留系龙马溪组等三个主滑面发生了三个层次的滑脱和褶皱,形成自底部滑脱层向上传播的以前展式的正向(倾向SE)冲断系。铅锌矿的产出层位与矿源层的分布层位有一定的依存关系,寒武系下统牛蹄塘组是区内主要的铅锌矿源层,矿源层与构造形迹共同控制了东山峰背斜范围内的铅锌矿分布。背斜两翼构造形迹的不同,造成了两翼铅锌矿化特征的差异,背斜西部轴部转折区带是最具找矿潜力的部位。  相似文献   

16.
南盘江盆地古油藏沥青地球化学特征及成因   总被引:5,自引:3,他引:5  
南盘江地区生物礁古油藏的储层沥青主要分布在上二叠统和中上泥盆统。古油藏的储集层均为生物礁滩灰岩,沥青的主要储集空间以洞、缝为主,其次为基质孔隙和生物体腔内。南盘江古油藏沥青的成熟度很高, H/C原子比小于0.4,主要由残碳构成,这是沥青的非极性和极性抽提无抽提物的直接原因。在古油藏沥青地球化学特征研究的基础上,综合分析认为南盘江古油藏沥青主要源自泥盆系烃源岩,其次可能与下二叠统烃源岩有关。南盘江古油藏沥青与生物降解沥青和沉淀沥青质有很大的区别,其成因是油藏深埋时在高温、高压的作用下原油裂解成气后的焦沥青。  相似文献   

17.
With wells Puguang 2 and 6 in the Puguang gas field as the research objects by choosing organic carbon as characterization reservoir carbon(indirectly reflecting the bitumen contents),this paper discusses the relationship between bitumen contents and lithologic characteristics,reservoir characteristics,and calculates the volume of paleo-oil and oil cracked gas.The study shows that the organic carbon contents of the reservoirs are related to lithologic characteristics.Due to variations in the particle size or structure of rocks,the porosity of the reservoirs varies,furthermore,it will influence the contents of organic carbon.And the relationship between these two parameters is positive.Based on the analysis,the relationship between total organic carbon(TOC)and the contents of reservoir bitumen also appears to be positive.The volume of paleo-oil and cracked gas of the Changxing-Feixian’guan Formation are respectively 495 million tons and 360.4 billion m3 through the calculation of reservoir’s organic carbon.Therefore,the relationship between carbon-bearing rate and characteristics of the reservoirs can be used to indirectly evaluate reservoir types.Besides,the carbon-bearing rate of the reservoirs also reflects the contents of reservoir bitumen,paleo-oil as well as natural gas.It makes a new approach for the study of the types of reservoirs and the amounts of paleo-oil and oil cracked gas in northeastern Sichuan Basin.  相似文献   

18.
The coexistence of Pb‐Zn deposits and oil/gas reservoirs demonstrates that a close genetic connection exists between them. The spatiotemporal relationship between Pb‐Zn mineralization and hydrocarbon accumulation is the key to understanding this genetic connection. The Mayuan large‐scale Pb‐Zn metallogenic belt is composed of a number of Mississippi Valley‐type (MVT) Pb‐Zn deposits that were recently discovered on the northern margin of the Yangtze Block, China. It is hosted in the dolostone of the Sinian (Ediacaran) Dengying Formation (Z2dn). In addition to the abundant bitumen in the Mayuan Pb‐Zn metallogenic belt, the paleo‐oil reservoir and the MVT Pb‐Zn deposit overlap in space. In this study, two precise ages of 468.3 ± 3.8 Ma and 206.0 ± 6.5 Ma were obtained via the Rb‐Sr isotopic dating of galena and sphalerite from the Mayuan Pb‐Zn metallogenic belt, respectively. The early metallogenic age of 468.3 ± 3.8 Ma is similar to the previously published age of 486 ± 12 Ma. The age of 206.0 ± 6.5 Ma is consistent with the age of the metallogenic event that occurred at 200 Ma in the Upper Yangtze Pb–Zn metallogenic province of the Sichuan‐Yunnan‐Guizhou polymetallic zone, which is located on the southwest margin of the Sichuan Basin, suggesting that the metallogenic effects of this period were regional in scale in the peripheral areas of the Sichuan Basin. Previous studies have shown that two periods of hydrocarbon accumulation occurred in the oil/gas reservoir that coexists with the Pb‐Zn deposits in the study area. The Pb‐Zn mineralization at 468.3 ± 3.8 Ma occurred during the first period of hydrocarbon accumulation, while the second mineralization at 206.0 ± 6.5 Ma occurred during the transformation of the paleo‐oil reservoir to a paleogas reservoir. The spatial relationship between the paleo‐oil/‐gas reservoir and the MVT Pb‐Zn deposits and the temporal relationship between mineralization and hydrocarbon accumulation show that a close genetic relationship exists between the MVT Pb‐Zn mineralization and hydrocarbon accumulation. Analysis of metals in the source rocks forming the paleo‐oil/‐gas reservoirs show that source rocks which formed paleo‐oil/‐gas reservoirs may have provided metals for Pb‐Zn mineralization. Both the paleo‐oil/‐gas reservoirs and Pb‐Zn mineralizing fluids had the same origin.  相似文献   

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