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1.
天宝山铅锌矿床位于扬子地台西缘,为川滇黔铅锌矿集区具有代表性大型铅锌矿床,其金属储量(Pb+Zn)可达2.6Mt,铅锌品位10%~15%。本文在系统的分析流体包裹体和C、H、O、S、Pb、Sr同位素研究的基础上,确定其成矿物质来源、成矿流体性质及来源,并探讨其成矿机制。H-O同位素及流体包裹体研究表明,成矿流体具有中低温(均一温度峰值为140~200℃)及中低盐度(盐度峰值为6%~12% NaCleqv)的特征。灯影组白云岩与海相沉积碳酸盐岩的C、O同位素组成较为相似,热液方解石与含矿白云岩O同位素组成均稍低于灯影组白云岩,表明成矿流体中的CO_2可能来源于海相碳酸盐岩的溶解。矿区硫化物δ~(34)S值介于1.1‰~7.5‰之间,表明S主要来源于灯影组中硫酸盐热化学还原作用和岩浆硫的混合。矿石硫化物的Pb同位素比值在Pb演化图解上主要落入上地壳与造山带之间,表明Pb具有壳源特征,成矿物质来源主要来自于盖层沉积岩和基底地层。闪锌矿的~(87)Sr/~(86) Sr值(0.71099~0.71856)及热液方解石~(87)Sr/~(86) Sr值(0.71014~0.71169)均高于灯影组白云岩~(87)Sr/~(86) Sr值(0.70773~0.71026),表明成矿流体流经了具有高~(87)Sr/~(86) Sr值的基底地层,并与其发生水岩反应及同位素交换。  相似文献   

2.
陈家坝铜铅锌多金属矿床为近年来在陕西勉(县)-略(阳)-宁(强)铜金镍矿化集中区新发现的铜铅锌多金属矿床。为了查明陈家坝矿床成矿物质来源,笔者开展了系统的C、H、O、S和Sr同位素地球化学研究。结果表明,陈家坝矿区的围岩的δ~(13)CPDB值范围-0.93‰~1.44‰,平均值为0.35‰,δ~(18)OV-SMOW值范围14.14‰~27.49‰,平均22.1‰,为沉积成因海相碳酸盐岩。脉石矿物白云石的δ~(13)CPDB范围在-0.53‰~-0.89‰,δ~(18)OV-SMOW值范围12.12‰~13.23‰,指示成矿流体中的CO_2主要来自岩浆水,少量CO_2来源于围岩海相碳酸盐岩的溶解作用。成矿流体中δD值范围-91‰~-72‰,δ~(18)OH矿流体以岩浆流体为主。成矿流体与围2岩的水-岩反应是导致该区铜铅锌2矿床中白云石和黄铜矿、闪锌矿和方铅矿矿物沉淀结晶的主要机制。矿石金属硫化物δ34S值范围4.88‰~8.90‰,平均值为7.37‰,介于岩浆硫与海水硫之间,且与矿集区内典型的徐家沟铜矿床矿石矿物δ34S变化区间重叠,表明硫主要来自于岩浆硫,部分硫来自海水硫酸盐。矿石中黄铁矿的初始锶同位素比值87Sr/86Sr比值为0.72,高于赋矿围岩锶同位素比值,接近大陆地壳的87Sr/86Sr比值(0.719),指示了成矿流体流经了雪花太坪组地层,并与其中具有高87Sr/86Sr比值的白云岩进行水岩反应及同位素交换。  相似文献   

3.
热液环境在碳酸盐岩成岩作用中十分重要,MVT铅锌矿床和热液白云岩储层都与之有关。四川盆地西部中二叠统栖霞组普遍发育厘米级大小的晶洞,其充填物主要为晶体粗大的非平直晶面鞍形白云石,这些鞍形白云石经历了广泛的溶解作用,次生方解石充填于鞍形白云石溶解空间及其晶间孔隙中。本文在碳酸盐岩岩石学特征研究的基础上,测试了晶洞充填物的碳氧同位素组成、元素构成和包裹体均一化温度,结合川西中二叠统埋藏历史和二叠纪以来的非地热增温热事件,研究了晶洞充填物中鞍形白云石的沉淀与溶解流体,以及充填于鞍形白云石溶解空间和晶间孔隙中次生方解石的沉淀流体。研究表明:在作为晶洞充填物的碳酸盐矿物中,鞍形白云石和沉淀于白云石晶间、晶内的次生方解石具有显著不同的氧同位素组成和包裹体均一化温度,前者δ18O值-5.94‰~-4.35‰,包裹体均一化温度主要为110~210℃,后者δ18O值-10.34‰~-8.75‰,包裹体均一化温度主要为70~110℃,据此反演的鞍形白云石沉淀流体的δ18O值为+4‰~+14‰(SMOW),方解石相应值为-4‰~+5‰(SMOW),显示白云石是在高盐度和高温流体中沉淀的,方解石是在相对低盐度和低温流体中沉淀的;晶洞充填物的碳同位素分析表明,鞍形白云石和沉淀于白云石晶间和晶内的次生方解石的δ13C值大致分布在0.7‰~2.6‰的范围内,显著低于同期海水的δ13C值,两种碳酸盐矿物中的碳具有同期海水和深部CO2混合碳源的特征;中二叠世末东吴运动期间峨眉山玄武岩喷发时岩浆活动的热效应导致了当时处于浅埋藏环境的栖霞组地层中鞍形白云石的沉淀,而热事件后流体温度和盐度的同时降低则使得鞍形白云石溶解,同时伴随方解石沉淀在鞍形白云石溶解后的孔隙和晶间孔隙中。  相似文献   

4.
四川盆地东南地区林1井灯影组鞍形白云石成因及其意义   总被引:1,自引:0,他引:1  
对四川盆地东南地区林1井上震旦统灯影组鞍形白云石的岩相学特征和碳、氧、锶同位素特征及流体包裹体成分与温度进行研究,认为它属热液成因。研究区热液活动在岩相学上表现为充填状鞍形白云石,发育鞍形白云石线状充填晶洞。鞍形白云石共生矿物包括石英、沥青等。鞍形白云石δ18O值和δ13C值异常偏负,87Sr/86Sr值异常偏高,与围岩差异明显。鞍形白云石原生流体包裹体均一温度为270~320℃,明显超过了该井最高埋藏温度;流体包裹体的气相部分以CO2、CH4和N2为主,液相部分以H2O和CO2为主。这些特征表明,形成鞍形白云石的流体来自于基底的热液,灯影组白云岩受热液溶蚀改造而发育热液改造型白云岩储层,并有过油气成藏过程。  相似文献   

5.
对四川盆地东南地区林1井上震旦统灯影组鞍形白云石的岩相学特征和碳、氧、锶同位素特征及流体包裹体成分与温度进行研究,认为它属热液成因.研究区热液活动在岩相学上表现为充填状鞍形自云石,发育鞍形白云石线状充填晶洞.鞍形白云石共生矿物包括石英、沥青等.鞍形白云石δ18O值和δ13C值异常偏负,87Sr/86Sr值异常偏高,与围...  相似文献   

6.
以青藏高原南羌塘坳陷扎仁地区中侏罗统布曲组晶粒白云岩为对象对其进行成因的研究。通过显微镜观察、流体包裹体数据以及碳氧同位素分析,认为研究区白云岩可分为细粉晶白云岩、中晶白云岩以及粗晶白云岩,在裂隙附近还广泛发育晶粒较粗大的鞍形白云石。白云石中流体包裹体均一温度在150.2~216.0℃,盐度均值达到了24.5%NaCl,远高于方解石包裹体均一温度与盐度,表明白云石的形成经历了高温高盐度的过程。白云石碳氧同位素分析显示其δ~(13)C_(PDB)值为-0.01‰~3.43‰,δ~(18)O_(PDB)值为-11.17‰~-7.68‰,通过白云石-水氧同位素分馏方程得到白云化流体的δ~(18)O_(SMOW)值为4.82‰~12.85‰,δ~(13)C_(PDB)对比认为白云石受寄主灰岩环境的影响。通过碳氧同位素数据对比以及前人的研究结果,认为研究区白云岩为相对封闭环境下受岩浆活动加热的高盐度流体对寄主灰岩交代的产物,高盐度流体由于镁离子的消耗导致流体对方解石过饱和,继而沉淀了高温的方解石。因此,热液活动对研究区中侏罗统布曲组白云岩的发育具有重要意义,值得加强对这一方向的探索研究。  相似文献   

7.
以栖霞山铅锌多金属矿床深部找矿钻孔岩心为对象,开展碳-氧-锶同位素地球化学研究。结果表明,栖霞山矿床矿石样品δ13CV-PDB同位素值为-5.1‰~1.9‰,且由浅部至深部,矿石样品的δ13C、δ18O值处于增大的趋势,指示成矿流体中的碳起源于碳酸盐岩、源自地幔和岩浆的深源碳。对锶同位素的研究显示,栖霞山矿石~(87)Sr/~(86)Sr值为0.704816~0.71405,部分大于矿体围岩黄龙组灰岩的~(87)Sr/~(86)Sr值(0.708329~0.709685),部分小于矿体围岩黄龙组灰岩的~(87)Sr/~(86)Sr值,并与不同来源的Sr同位素对比,揭示栖霞山矿石中Sr兼具基底地层Sr和幔源Sr的混合来源特征,且在围岩蚀变过程中~(87)Sr/~(86)Sr的变化应主要由成矿流体引起。结合本区成矿地质特征认为,栖霞山矿床成矿流体可能来自花岗岩的期后热液,在热动力作用下,流经元古宇基底地层,形成具有混合物质来源的成矿流体,成矿作用过程主要为成矿流体与围岩碳酸盐岩发生水-岩反应所致。  相似文献   

8.
塔深1井寒武系白云岩储层同位素流体地球化学示踪   总被引:3,自引:0,他引:3  
通过对塔里木盆地沙雅隆起阿克库勒凸起东部塔深1井寒武系白云岩岩石学特征及成岩成因分析,影响塔深1井寒武系地层流体改变主要成岩有准同生期、埋藏期和后期热液改造期等.塔深1井寒武系白云岩及充填孔、洞、缝内方解石的氧、碳、锶同位素地球化学特征表明:准生期白云岩δ~(13)C_(PDB)值(0.9‰~1.8‰)偏正、δ~(18)C_(PDB)值(-10.1‰~-4.2‰)偏负反映准同生期泥微晶白云石成因属于高盐度的海水使得碳酸盐泥发生白云石化;埋藏期白云岩碳、氧随重结晶作用加强,白云岩晶粒由细向粗变化值随埋深增加,由于同位素分馏作用而偏负,δ~(18)C_(PDB)值(-10.02‰~-5.7‰)呈明显的下降,但δ~(13)C_(PDB)值(-1.4‰~0‰)组成变化不大;后期热液白云岩在热液作用下δ~(18)C_(PDB)值普遍低于-10‰(δ~(18)C_(PDB)/‰-13.1~-9.4,δ~(13)C_(PDB)/‰-2~-0.647);基质方解石δ~(18)C_(PDB)值为-10.1‰~-10.13‰,δ~(13)C_(PDB)值为-1.48‰~-1.62‰;充填孔洞缝粗-巨晶方解石δ~(18)C_(PDB)值为-10.89‰~-14.28‰,δ~(13)C_(PDB)值为-2‰~-3.09‰,反映准同生期→埋藏期→后期热液晶粒大小由泥微晶→细晶→中晶→粗晶氧碳同位素值逐渐变小偏负,据~(87)Sr/~(86)Sr(0.707 284~0.746 888)值均远高于现今海洋中海水的锶同位素组成(0.708)及围岩的锶同位素(0.707 284),说明鞍形白云石以及方解石结晶时的孔隙流体不是残余在岩石孔隙中的同生期海水,而是外来的富含锶的流体,也就是深部热液流体.渗透回流白云石化、埋藏白云石化和高温热液白云石化等特征表明白云岩形成于超盐度、埋藏和高温热液等3种不同的环境,因此影响储层形成与分布,从而影响对白云岩的勘探.  相似文献   

9.
鄂尔多斯盆地中央气田奥陶系马家沟组马五段白云岩是重要的油气储集层,多年来,马家沟组白云岩的成因问题一直是地质研究者讨论的热点话题.对马五段白云岩的C、O、Sr同位素地球化学资料的分析表明,孔洞充填的白云石(含鞍状白云石)和白云岩的δ13C、δ18O值极其近似,且白云岩的δ18OPDB值比奥陶纪海水值要偏负1.752‰~4.395‰(平均2.911‰);成岩流体(水)的占δ18OSMOW平均值为+8‰,比当时海水值偏正;87Sr/86Sr比值比奥陶纪海水87Sr/86Sr比值要高.从C、O同位素数据上看,形成白云岩和沉淀于孔洞中的白云石(含鞍状白云石)的流体为同源流体;造成白云岩的δ18O值偏负的原因主要是埋藏条件的"温度效应";87Sr/86Sr比值偏高可能是交代流体来自或流经了富含放射成因Sr的铝硅酸盐基底或硅质碎屑岩.这些特征表明马五段白云岩很可能形成于埋藏环境.  相似文献   

10.
位于东准噶尔北缘的希勒库都克铜钼矿床是一个以钼为主的斑岩型矿床,形成于早石炭世。希勒库都克铜钼矿床硫化物δ34S值介于+0.4‰~+7.6‰之间,平均为+4.1‰,其中黄铁矿δ34S值为+0.4‰~+7.6‰(平均+4.2‰)、辉钼矿δ34S值为+3.2‰~+4.7‰(平均+4.2‰)、黄铜矿δ34S值为+1.6‰~+2.5‰(平均+2.1‰),均显示出岩浆硫的组成特征。硫化物稀土元素特征与含矿斑岩类似,暗示成矿物质可能来源于含矿斑岩;流体包裹体地球化学及H-O同位素特征也表明成矿流体主要来自岩浆热液。而含矿斑岩高的正εNd(t)值、低的87Sr/86Sr初始比值表明含矿岩浆可能主要来自于地幔源区。综合研究区硫化物硫同位素、稀土元素及流体包裹体地球化学特征等分析,本文认为希勒库都克铜钼矿床成矿物质主要来自地幔源区,且含矿岩浆可能经历了地壳深部壳幔物质混合均一化的过程。  相似文献   

11.
卿海若  陈代钊 《沉积学报》2010,28(5):980-986
加拿大萨斯喀彻温省东南部上奥陶统Yeoman组碳酸盐岩中发育有少量的鞍形白云石胶结物。这些鞍形白云石仅局限于Yeoman组上部厚约20~30 m的白云岩带中,上覆及下伏碳酸盐岩地层中均明显缺失这类鞍形白云石,表明其形成于一个相对封闭的体系中。此类奥陶系鞍形白云石胶结物以具有与宿主交代白云岩相似的碳同位素δ13C值(-0.2‰~0.9‰PDB)及锶同位素比值(0.708 2~0.709 0)为特征,表明前期的白云石围岩通过压溶作用形成的碳和锶是鞍形白云石胶结物的主要来源。另外,测得的鞍形白云石胶结物均一温度范围为99~105℃,可以由该区域的正常埋藏温度解释。基于上述资料和观察,我们认为萨斯喀彻温省东南部上奥陶统Yeoman组鞍形白云石胶结物与早期交代白云石的自调节白云石化作用(埋藏过程中相对封闭的体系中通过化学压实作用形成)有关,而与加西盆地其它地方已经证实的热液活动无关。因此,鞍形白云石的分布未必指示热液活动或热流体,也并不是所有的鞍形白云石都与热流体有关。  相似文献   

12.
Late Cambrian to Early Ordovician sedimentary rocks in the western Tarim Basin, Northwest China, are composed of shallow-marine platform carbonates. The Keping Uplift is located in the northwest region of this basin. On the basis of petrographic and geochemical features, four matrix replacement dolomites and one type of cement dolomite are identified. Matrix replacement dolomites include (1) micritic dolomites (MD1); (2) fine–coarse euhedral floating dolomites (MD2); (3) fine–coarse euhedral dolomites (MD3); and (4) medium–very coarse anhedral mosaic dolomites (MD4). Dolomite cement occurs in minor amounts as coarse saddle dolomite cement (CD1) that mostly fills vugs and fractures in the matrix dolomites. These matrix dolomites have δ18O values of ?9.7‰ to ?3.0‰ VPDB (Vienna Pee Dee Belemnite); δ13C values of ?0.8‰ to 3.5‰ VPDB; 87Sr/86Sr ratios of 0.708516 to 0.709643; Sr concentrations of 50 to 257 ppm; Fe contents of 425 to 16878 ppm; and Mn contents of 28 to 144 ppm. Petrographic and geochemical data suggest that the matrix replacement dolomites were likely formed by normal and evaporative seawater in early stages prior to chemical compaction at shallow burial depths. Compared with matrix dolomites, dolomite cement yields lower δ18O values (?12.9‰ to ?9.1‰ VPDB); slightly lower δ13C values (?1.6‰–0.6‰ VPDB); higher 87Sr/86Sr ratios (0.709165–0.709764); and high homogenization temperature (Th) values (98°C–225°C) and salinities (6 wt%–24 wt% NaCl equivalent). Limited data from dolomite cement shows a low Sr concentration (58.6 ppm) and high Fe and Mn contents (1233 and 1250 ppm, respectively). These data imply that the dolomite cement precipitated from higher temperature hydrothermal salinity fluids. These fluids could be related to widespread igneous activities in the Tarim Basin occurring during Permian time when the host dolostones were deeply buried. Faults likely acted as important conduits that channeled dolomitizing fluids from the underlying strata into the basal carbonates, leading to intense dolomitization. Therefore, dolomitization, in the Keping Uplift area is likely related to evaporated seawater via seepage reflux in addition to burial processes and hydrothermal fluids.  相似文献   

13.
HAIRUO Qing 《Sedimentology》1998,45(2):433-446
The petrography and geochemistry of fine- and medium-crystalline dolomites of the Middle Devonian Presqu’ile barrier at Pine Point (Western Canada Sedimentary Basin) are different from those of previously published coarse-crystalline and saddle dolomites that are associated with late-stage hydrothermal fluids. Fine-crystalline dolomite consists of subhedral to euhedral crystals, ranging from 5 to 25 μm (mean 8 μm). The dolomite interbedded with evaporitic anhydrites that occur in the back-barrier facies in the Elk Point Basin. Fine-crystalline dolomite has δ18Ο values between ?1·6 to –3·8‰ PDB and 87Sr/86Sr ratios from 0·7079–0·7081, consistent with derivation from Middle Devonian seawater. Its Sr concentrations (55–225 p.p.m., mean 105 p.p.m.) follow a similar trend to modern Little Bahama seawater dolomites. Its rare earth element (REE) patterns are similar to those of the limestone precursors. These data suggest that this fine-crystalline dolomite formed from Middle Devonian seawater at or just below the sea floor. Medium-crystalline dolomite in the Presqu’ile barrier is composed of anhedral to subhedral crystals (150–250 μm, mean 200 μm), some of which have clear rims toward the pore centres. This dolomite occurs mostly in the southern lower part of the barrier. Medium-crystalline dolomite has δ18O values between ?3·7 to ?9·4‰ PDB (mean ?5·9‰ PDB) and 87Sr/86Sr ratios from 0·7081–0·7087 (mean 0·7084); Sr concentrations from 30 to 79 p.p.m. (mean 50 p.p.m.) and Mn content from 50 to 253 p.p.m. (mean 161 p.p.m.); and negative Ce anomalies compared with those of marine limestones. The medium-crystalline dolomite may have formed either (1) during shallow burial at slightly elevated temperatures (35–40 °C) from fluids derived from burial compaction, or, more likely (2) soon after deposition of the precursor sediments by Middle Devonian seawater derived from the Elk Point Basin. These results indicate that dolomitization in the Middle Devonian Presqu’ile barrier occurred in at least two stages during evolution of the Western Canada Sedimentary Basin. The geochemistry of earlier formed dolomites may have been modified if the earlier formed dolomites were porous and permeable and water/rock ratios were large during neomorphism.  相似文献   

14.
Pervasive dolomites occur preferentially in the stromatoporoid biostromal (or reefal) facies in the basal Devonian (Givetian) carbonate rocks in the Guilin area, South China. The amount of dolomites, however, decreases sharply in the overlying Frasnian carbonate rocks. Dolostones are dominated by replacement dolomites with minor dolomite cements. Replacement dolomites include: (1) fine to medium, planar‐e floating dolomite rhombs (Rd1); (2) medium to coarse, planar‐s patchy/mosaic dolomites (Rd2); and (3) medium to very coarse non‐planar anhedral mosaic dolomites (Rd3). They post‐date early submarine cements and overlap with stylolites. Two types of dolomite cements were identified: planar coarse euhedral dolomite cements (Cd1) and non‐planar (saddle) dolomite cements (Cd2); they post‐date replacement dolomites and predate late‐stage calcite cements that line mouldic vugs and fractures. The replacement dolomites have δ18O values from ?13·7 to ?9·7‰ VPDB, δ13C values from ?2·7 to + 1·5‰ VPDB and 87Sr/86Sr ratios from 0·7082 to 0·7114. Fluid inclusion data of Rd3 dolomites yield homogenization temperatures (Th) of 136–149 °C and salinities of 7·2–11·2 wt% NaCl equivalent. These data suggest that the replacive dolomitization could have occurred from slightly modified sea water and/or saline basinal fluids at relatively high temperatures, probably related to hydrothermal activities during the latest Givetian–middle Fammenian and Early Carboniferous times. Compared with replacement dolomites, Cd2 cements yield lower δ18O values (?14·2 to ?9·3‰ VPDB), lower δ13C values (?3·0 to ?0·7‰ VPDB), higher 87Sr/86Sr ratios (≈ 0·7100) and higher Th values (171–209 °C), which correspond to trapping temperatures (Tr) between 260 and 300 °C after pressure corrections. These data suggest that the dolomite cements precipitated from higher temperature hydrothermal fluids, derived from underlying siliciclastic deposits, and were associated with more intense hydrothermal events during Permian–Early Triassic time, when the host dolostones were deeply buried. The petrographic similarities between some replacement dolomites and Cd2 dolomite cements and the partial overlap in 87Sr/86Sr and δ18O values suggest neomorphism of early formed replacement dolomites that were exposed to later dolomitizing fluids. However, the dolomitization was finally stopped through invasion of meteoric water as a result of basin uplift induced by the Indosinian Orogeny from the early Middle Triassic, as indicated by the decrease in salinities in the dolomite cements in veins (5·1–0·4 wt% NaCl equivalent). Calcite cements generally yield the lowest δ18O values (?18·5 to ?14·3‰ VPDB), variable δ13C values (?11·3 to ?1·2‰ VPDB) and high Th values (145–170 °C) and low salinities (0–0·2 wt% NaCl equivalent), indicating an origin of high‐temperature, dilute fluids recharged by meteoric water in the course of basin uplift during the Indosinian Orogeny. Faults were probably important conduits that channelled dolomitizing fluids from the deeply buried siliciclastic sediments into the basal carbonates, leading to intense dolomitization (i.e. Rd3, Cd1 and Cd2).  相似文献   

15.
塔里木盆地寒武-奥陶系白云岩储层类型与分布特征   总被引:6,自引:3,他引:3  
塔里木盆地寒武-奥陶系白云岩是台盆区最重要的储层之一,发育4种类型:①潮坪白云岩。以含膏泥晶白云岩为主,石膏溶孔及白云岩砾间孔发育,发育于潮间-潮上坪蒸发环境。白云石表现为MgO-CaO呈线性正相关、低Mg/Ca值及高∑REE值、锶同位素值分布在0.7085~0.7100之间,略高于同期海水值0.7090、阴极发光不发光或暗色光。储层分布主要受沉积相控制,发育于中下寒武统地层;②蒸发台地白云岩。以藻丘及颗粒灰岩选择性白云石化为特征,发育铸模孔、膏溶孔和残留粒间孔,白云石Mg/Ca值变化范围大、δ13C、δ18O值相对偏正、分别大于2‰和-4‰、阴极发光发较亮红光。储层主要发育于台内靠近台缘一侧;③埋藏白云岩。发育细晶、中晶及粗晶白云岩,以晶间孔及晶间溶孔为主,δ18O值偏负在-5‰~-10‰(PDB)之间,87Sr/86Sr值相对较大,为0.7090~0.7110,阴极发光以发暗棕褐色、紫色光为主。埋藏白云岩储层发育主要受成岩相控制,但也表现出与沉积相具有相关性,这是因为物性好的台缘、台内礁滩体及有裂缝沟通构成的开放体系更有利于埋藏白云石化作用发生;④热液白云岩。以受热液改造的结晶白云岩为特征,往往伴生热液矿物,白云石δ18O值异常偏负、一般小于-9‰(PDB)、阴极发光多发明亮红光、稀土元素标准化配分曲线中Eu出现正异常、出现高于地层背景值的异常高温包裹体;主要发育在具有上覆隔挡层的不整合面之下地层及大断裂发育带附近。上述四类白云岩在规模与分布上有不同,但都可预测。埋藏和热液白云岩规模较大,受原始沉积相带和成岩流体来源双重约束。潮坪和蒸发台地白云岩规模可变性较大,可由沉积环境重建,结合成岩相研究预测评价。  相似文献   

16.
通过对比研究塔里木盆地东北缘库鲁克塔格隆起的乌里格孜塔格剖面与加拿大西部盆地寒武系白云岩的岩石学、地球化学及流体包裹体等特征,阐明了前者经历了三次主要白云岩(化)作用事件.①成岩早期-浅埋藏的粉细晶白云岩作用,Sr为42.75×10-6,Mn为315×10-6 ~506×10-6,Fe为0.2650% ~0.403%;δ13 CpDB=一0.47‰ ~-0.28‰,δ18OPDB=-7.3‰ ~-7.43‰,87Sr/86Sr=0.71085;平均REE=18.84×10-6,δEu平均为0.66、δCe平均为0.81,估算的形成温度分别为47.6℃和55.12℃;②中(深)埋藏的细晶及中(粗)晶白云岩化作用;Sr为56.27×10-6,Mn为312×10-6,Fe为0.13%;δ13CPDB=-1.5‰,δ18OPDB=-8.5‰,87Sr/86Sr=0.7100; REE=18.08×10-6,δEu平均为0.72、δCe平均为0.77,盐水包裹体中的均一温度平均为108.34℃,盐度变化为4%~13.7% NaCleqv;③沿裂隙或溶洞形成的粗-巨晶或鞍形的热液白云岩(石)交代充填:Sr为29.1×10-6 ~49.9×10-6,Mn为498×10-6~754×10-6,Fe为0.15% ~ 1.14%;平均δ13 CPDB=-0.48‰,δ18OPDB=-8.82‰,87Sr/86Sr=0.70996;平均REE=15.08×10-6,δEu平均为0.70、δCe平均为0.78;鞍形白云石中的盐水包裹体的均一温度120~150℃,盐度为5% ~ 12% NaCleqv;溶洞中的粗-巨晶白云岩盐水包裹体的均一温度140~180℃,盐度为5% ~ 18% NaCleqv;与西加盆地惠而浦(Whirlpool point)剖面典型的热液白云岩相比较,乌里格孜塔格剖面中寒武系白云岩中缝洞中的粗-巨晶及鞍形白云石中的碳氧同位素、稀土总量、轻重稀土比均要高,但有序度、δEu、δCe、盐水包裹体形成温度及盐度相对低;因而推断它与西加盆地典型的岩浆期后热液来源不同,其流体来源于沿深部伸展走滑断裂-再循环地层热卤水,与海西晚期或燕山期-喜马拉雅期强烈挤压后弱伸展引起的二期或以上的压扭-走滑构造有关.  相似文献   

17.
与热液有关白云岩以晶体粗大为特征,较易形成物性良好的油气储集体。塔中地区寒武系-下奥陶统发育大量深层白云岩,以粉-细晶白云岩为主,局部可见中-粗晶白云岩。该中-粗晶白云岩流体包裹体均一温度经压力校正主要集中在173~199℃,比该层位最大埋藏温度(约160℃)高10~40℃,故认为其形成与热液活动有关。镜下观察两种类型的白云岩存在渐变过渡现象和碳氧同位素值的部分重叠,说明中-粗晶白云岩可能由粉-细晶白云岩在热液作用下重结晶而来。进一步结合其流体包裹体盐度(为正常海水盐度的3~5倍)和富87Sr、贫13C的特征认为,其成岩流体可能为岩浆热液经过下寒武统富87Sr、贫13C泥页岩质烃源岩的改造,并向上运移与中寒武统膏岩层孔隙间浓缩海水混合而形成的混合性流体。前者为其提供热量,后者可增加其盐度,遍布区内的深大断裂体系为其提供了运移通道。  相似文献   

18.
The Swan Hills Formation (Middle-Upper Devonian) of the Western Canada Basin is host to several NW-SE-trending gas fields developed in massive replacement dolostone. One of these, the Rosevear Field, contains two major dolostone trends along opposing margins of a marine channel that penetrates into a platform-reef complex. Dolostones consist predominantly of branching and bulbous strdmatoporoid floatstones and rudstones with well-developed moldic and vuggy porosity. Replacement dolomite is coarsely crystalline (100-600 μm), inclusion-rich, composed of euhedral through anhedral crystals and has a blotchy to homogeneous red cathodoluminescence. Geochemically, replacement dolomite is characterized by (i) nearly stoichiometric composition (50.1-51.1 mol% CaCO3), (ii) negative δ18O values (mean=-7.5‰, PDB) and (iii) variable 87Sr/86Sr ratios ranging from values similar to Late Devonian-Early Mississippian seawater (~0.7082) to radiogenic compositions comparable to saddle dolomite cements (>0.7100). Dolomitization began after widespread precipitation of early, equant calcite spar and after the onset of pressure solution, implying that replacement dolomite formed in a burial environment. Oxygen isotope data suggest that dolomite formed at 35-75°C, temperatures reached during burial in Late Devonian through Jurassic time, at minimum depths of 450 m. The linear NW-SE orientation of most dolomite fields in the Swan Hills Formation is suggestive of fault control on fluid circulation. Two models are proposed for fault-controlled circulation of dolomitizing fluids at the Rosevear Field. In the first, compaction-driven, updip fluid migration occurred in response to basin tilting commencing in the Late Palaeozoic. Deep basinal fluids migrating updip were focused into channel-margin sediments along fault conduits. The second model calls upon fault-controlled convective circulation of (i) warm Devonian-Mississippian seawater or (ii) Middle Devonian residual evaporitic brines. The overlap in 87Sr/86Sr and δ18O compositions, and similar cathodoluminescence properties between replacement and saddle dolomites provide evidence for neomorphism of some replacement dolomite. Quantitative modelling of Sr and O isotopes and Sr abundances suggests partial equilibration of some replacement dolomite with hot radiogenic brines derived during deep burial of the Swan Hills Formation in the Late Cretaceous-Palaeocene. Interaction of replacement dolomite with deep brines led to enrichment in 87Sr while leaving δ18O similar to pre-neomorphism values.  相似文献   

19.
晚古生代中国西南地区发生了"峨眉地裂运动",与此相关的深部热液作用在西昌盆地非常发育发育.对QB1井的研究表明,志留系第Ⅲ期裂缝及其中充填的异形白云石和石英是东吴期热液作用的产物,异形白云石的δ~(13)C值、δ~(18)O值异常偏负、锶同位素值异常偏高、异形白云石和石英内原生包裹体气相部分富含氮气(N_2)是这一期热液作用的地球化学标志;深部热液为幔源岩浆热液与盆地基底深变质岩地层热液的混合液,它们沿垂向断裂通道和侧向裂缝系统运移进入志留系,导致了不规则的张性热液破裂裂缝的形成、裂缝内异形白云石和石英的部分沉淀、以及溶蚀作用的发生;它们产生的缝洞系统,对西昌盆地志留系裂缝性储层的形成有重要贡献.  相似文献   

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