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1.
幔源玄武岩及地幔捕虏体中所含的地幔流体挥发分对于认识岩浆源区特征及岩石圈地幔演化具有重要意义。本文对东北地区双辽新生代玄武岩及其携带的地幔捕虏体中流体挥发分进行研究,探究地幔流体特征与来源。双辽玄武岩橄榄石斑晶和地幔捕虏体内发育早期、晚期两类流体包裹体,早期流体包裹体中的挥发分代表矿物形成时捕获的岩浆原始流体挥发分,主要在高温段(600~1200℃)释出,晚期流体包裹体中的挥发分代表矿物形成后捕获的交代或蚀变流体挥发分,主要在低温段(200~600℃)释出。地幔捕虏体原始流体挥发分主要为H_2O、CO和H_2,其次为CO_2,并含有少量CH_4等烃类。地幔捕虏体交代流体挥发分与双辽玄武岩橄榄石斑晶原始流体挥发分相似,主要为CO_2和H_2O,其次为CO和H_2,含有少量烃类。地幔捕虏体原始流体挥发分、交代流体挥发分及玄武岩橄榄石斑晶原始流体挥发分中,CO_2和烃类碳同位素均具有有机成因特征,表明岩石圈地幔及玄武岩岩浆源区内均存在有机质热解产物的混入,玄武岩岩浆源区及岩石圈地幔交代流体中的有机成因挥发分主要来自于俯冲太平洋板片之上的沉积有机质。双辽玄武岩斜长石斑晶和基质流体挥发分含量较高,主要为H_2O和CO_2,相对于橄榄石原始流体挥发分具有较轻的CO_2碳同位素组成,这种现象表明岩浆上升过程中发生了明显的脱气作用。  相似文献   

2.
幔源CO_2演化及CO_2气成藏实例分析   总被引:1,自引:0,他引:1       下载免费PDF全文
幔源CO2是当今地球科学研究中的前沿领域之一,具有重要的研究价值。处于超临界态的地幔流体具有很强的溶解和扩散能力,是地球内部能量与物质向外传输的重要载体。地幔流体中的挥发分以H2O和CO2为主,全球许多CO2气藏中的气体具有幔源特征,与地幔流体密切相关,但地幔流体与CO2气藏之间的关系研究则显得不够。本文分析了地幔流体的组成、性质与影响因素,结合济阳坳陷断裂构造、岩浆发育特征,阐述地幔流体上升和演化过程,认为地幔流体中溶解各种形式CO2气为气藏形成提供物质来源,断裂活动则为岩浆上侵和气体的运移、聚集提供了通道和空间。CO2气藏勘探的有利区块应该不仅仅局限于坳陷内,在坳陷边缘或者外部,新生代晚期的碱性岩浆侵入活动,不同方向断裂发育交汇地区均是气藏勘探的有利地区。  相似文献   

3.
对幔源岩中流体组成的不同测定方法评价   总被引:10,自引:1,他引:9  
张铭杰  王先彬 《地质论评》2000,46(2):160-166
本文对比了上前广泛用于幔源岩中流体组成测定的不同实验方法,讨论了每种方法的优点和适用范围。根据地幔流体所处特殊的地幔环境(高温高压),认为分步加热质谱法测定的结果较全面地代表了幔源岩中流体的真实组成;在实验过程中进行有效的样品处理,采用合理的实验装置和系统本底,对获取可靠的数据至关重要;且通过控制加热温度可对不同类型的流体组分分别进行研究。  相似文献   

4.
幔源挥发性组分参与302铀矿床成矿作用的氦同位素证据   总被引:4,自引:0,他引:4  
对取自302铀矿床井下与沥青铀矿矿石共生的9件紫黑色萤石、肉红色方解石样品进行了流体包裹体的He同位素测定,3He/4He测定值为0.03~0.57Ra(绝大部分在0.11~0.25Ra之间),位于地幔与地壳的氦同位素值范围之间,显示成矿流体中的氦同位素具有壳、幔两个端元混合的特点,表明有大量幔源挥发性组分参与铀成矿作用。该矿床碳同位素值与流体包裹体证据均表明,地幔挥发性组分确实大规模参与了铀成矿作用。研究显示,几乎华南所有的热液铀矿床都形成于白垩纪-古近纪,且这些矿床的碳同位素组成均显示成矿流体中的矿化剂CO2来自地幔.暗示它们成矿时具有相似的成矿动力学背景:可能均与华南中,新生代岩石圈伸展作用所控制的幔源挥发性组分具有密切的关系。  相似文献   

5.
傅卫东 《福建地质》2005,24(2):90-96
稀有气体有4个源区,包括大气、地下水、地壳和地幔;其中地幔稀有气体又可分为上地幔和下地幔2个源区。不同源区的稀有气体在同位素组成上截然不同,因而可以利用稀有气体同位素进行有关地质和地球化学过程的示踪。稀有气体同位素组成不仅对查明成矿流体的性质和来源及矿床成因具有重要作用,而且还可以为正确理解大规模成矿作用的地球动力学背景和全面弄清大型一超大型矿集区的时空分布规律提供重要线索。  相似文献   

6.
中国东部陆下岩石圈地幔中的再循环地壳流体组分   总被引:1,自引:0,他引:1  
地幔捕虏体中的流体挥发份保存了地幔演化过程的流体介质.中国东部二辉橄榄岩捕虏体中橄榄石、斜方辉石和单斜辉石流体挥发份的化学组成和碳、氢和氧同位素组成分步加热质谱法测定结果表明,陆下岩石圈地幔以较轻的碳、氢同位素和氧同位素组成变化范围大为特征,高温(800~1200 ℃)释放的CO2和CO呈现较轻的δ13C值,与世界其他地区的地幔捕虏体明显不同[1].  相似文献   

7.
地幔流体与铀成矿作用问题,首先关注的是地幔是否也是铀源,并且成矿流体是否具有幔源性质。研究结果表明,地幔流体参与了大型铀矿床的成矿作用,它可以是铀源,也可以是直接成矿的流体。发生地幔流体成矿作用的构造环境是拉张构造区和深大断裂区,因而其具有幔源岩浆发育、成矿物质幔源性、形成大型矿床或矿集区、特定的稳定同位素组成范围等特征。粤北铀矿集区具有相似的构造环境和成矿特征,笔者为此提出几点建议。  相似文献   

8.
西太平洋分布了全球大部分的洋内俯冲带,也是全球沟-弧-盆体系最发育的地区。勘察加(Kamchatka)半岛位于俄罗斯远东地区,地处太平洋西北部(51°~60°N、155°~164°E),是全球环太平洋岛弧的重要组成部分。前人对勘察加岛弧岩石地幔源区性质、熔融过程、岩浆结晶分异及熔/流体交代过程进行了详细的研究,并获得了丰硕的成果。最新的研究进展表明:(1)勘察加岛弧前缘火山和中部火山的源区主要为亏损地幔,而弧后区域则存在较为富集的地幔贡献;(2)勘察加岛弧不同区域的地幔源区流体性质具有一定的差异,导致从前缘火山至中部火山,地幔熔融程度逐渐降低;(3)勘察加岛弧不同区域岩石地球化学成分存在差异,而且,沿穿弧剖面某些元素或同位素(如δ11 B)表现出系统变化的特征,反应了俯冲板片流体通量和流体性质的差异;(4)勘察加半岛部分多期次火山(如Klyuchevskoy火山)地球化学成分复杂,可能反应了源区熔融条件的不同和岩浆结晶分异过程;(5)勘察加岛弧北部与阿留申岛弧近直角相交,导致异常的构造背景,促使该区域形成了具有埃达克质特征的岛弧岩浆。  相似文献   

9.
橄榄石是地幔橄榄岩和辉石岩的主要组成矿物,但也经常以斑晶和捕虏晶的形式出现在玄武质岩石中。结合近年来在地幔橄榄岩的主要元素(如Mg和Fe)组成特征以及Li、Mg和Fe稳定同位素地球化学方面的研究成果,重点对橄榄石的地球化学特征与华北克拉通岩石圈地幔演化过程之间的联系进行了讨论,旨在加深对华北克拉通岩石圈地幔演化过程的理解。现有研究表明:地幔橄榄岩中橄榄石的矿物学特征、元素和同位素地球化学组成能够很好地指示岩石圈地幔的特征及其演化过程,因而具有重要的意义。对于克拉通地区的地幔橄榄岩来说,橄榄石的Mg#通常可以指示岩石圈地幔的属性,古老、难熔的地幔橄榄岩中的橄榄石一般具有较高的Mg#(〉92),而新生的岩石圈地幔橄榄岩中的橄榄石则具有较低的Mg#(〈91)。因此,地幔橄榄岩中橄榄石的Mg#在一定程度上具有年龄意义。橄榄岩中橄榄石的Li、Mg和Fe同位素组成也可以明确指示岩石圈地幔的属性及其所经历的演化过程,正常地幔的δ7Li、δ26Mg和δ57Fe组成相对均一,如果上述同位素组成偏离正常地幔值,则说明岩石圈地幔经历了熔体/流体的交代作用。华北克拉通地区地幔橄榄岩捕虏体中橄榄石的Li、Mg和Fe同位素组成研究表明:该区的岩石圈地幔经历了多个阶段、不同来源的熔体/流体的改造过程。  相似文献   

10.
<正>深部下地壳及地幔中的流体是无机成因天然气的巨大气源库体。地下深部的物质运动人们又不可能直接接触,但出露在地表的地幔岩是研究地幔演化的窗口。玄武岩中的包体更是典型的地幔岩石,包体中携带有大量的地幔物质信息,而其中的流体包裹体则是地幔演化中原始流体的代表,其中的气体同位素能有效地指示气体的源区及其地球化学特征,反映上地幔组成和演化,对深部无机成因气的气源示踪、形成条件和环境以及地幔脱气研究有着重要的意义。本文通过地幔岩包体中的流体包裹体分析了幔源流体及其气  相似文献   

11.
Hydrogen gas accelerates hydrocarbon generation, but little is known about its distribution and origin in petroliferous basins, which has hindered the further exploration.Taken the Jiyang Depression in eastern China as an example, this study collected natural gas from different tectonic units, and analyzed various geochemical characters including gas contents, and carbon and hydrogen isotopic composition.The result shows that:(1) hydrogen gas is widespread distributed, but its content is very low, which typically ranges from 0.01% to 0.1% in this region;(2) the ratios of H2/3He, indicative of the origins of hydrogen gas, suggest that mantle-derived hydrogen is dominant.Even in tectonically stable areas absent with deep fluid activities, there is also mantle-derived;(3) the isotopic composition of hydrogen falls in the range of –798‰ to –628‰(relative to VSMOW standard).In areas with deep-derived fluids, the hydrogen gas has a similar isotopic composition with the previously documented deep-sourced gas, with lighter isotopic composition.In contrast, hydrogen gas has a heavier isotopic composition in relatively stable areas.The isotopic signatures suggest that there is a mixture of mantle- and crust-derived hydrogen gas in the relatively stable area, which is consistent with the H2/3He ratios.Therefore, it is clear that the hydrogen gas has a much wider distribution than found in the deep-derived fluid area, resulting in a much broader area with hydrogenating effect for resource rock.This understanding will provide new insights for hydrocarbon generation research and resource assessment in petroliferous basins.  相似文献   

12.
Subduction zones involve many complex geological processes, including the release of slab-derived fluids, fluid/rock interactions, partial melting, isotopic fractionations, elemental transporting, and crust/mantle interactions. Lithium (Li) isotopes (6Li and 7Li) have relative mass difference up to 16%, being the largest among metal elements. Thus, Li isotopes have advantage to interprete trace various geological processes. Most importantly, during crust/mantle interactions in deep subduction zones, surface materials and mantle rocks usually have distinct Li isotopic compositions. Li isotopes can be potential tracer for subduction processes, from the onset of subduction to the release of Li from subducted slabs and interaction with mantle wedge, as well as the fate of Li in slab-derived fluids and residual slabs. Moreover, the Li isotopic composition of subducting output materials can provide useful information for understanding global Li circulation. With developments in measurement and expansion of Li isotopic database, Li isotopic geochemistry will provide more inference and be a powerful tracer for understanding subduction-related processes. This work retrospected the application of Li isotopes in tracing successive subduction processes, and made some prospects for further studies of Li isotopes.  相似文献   

13.
This paper illustrates opportunities provided by the method of stepwise crushing for the investigation of the fluid phase of geologic objects. Owing to the efficient separation of gases from fluid inclusions of different generations trapped during mineral growth and/or subsequent alteration (metasomatic and hydrothermal), stepwise crushing allows us to obtain the isotopic characteristics of end-members and, thus, reliably establish the source and evolution of fluids in magmatic and postmagmatic processes; this method provides clues to a better understanding of interaction of global reservoirs, such as the mantle, crust, and atmosphere. The importance of information obtained by this method is exemplified here by the results of the investigation of mantle rocks and minerals from various geologic environments (MORB, SCLM, and carbonated mantle). It was shown that the multi-isotope approach yields most comprehensive data on the genetic features and evolution of the fluid phase. The importance of combining isotope geochemical and microthermometric fluid inclusion data is demonstrated by the example of a mantle xenolith of garnet lherzolite from the Jetty Oasis. Together with the microthermometric investigation of fluid inclusions and developing laser techniques for opening of individual inclusions, the method of stepwise crushing provides a means for solving one of the most important practical problems—obtaining information on the geochemical features and physicochemical parameters of mineral-forming (and ore-forming) processes.  相似文献   

14.
地壳风化系统中的Sr同位素地球化学   总被引:10,自引:0,他引:10  
马英军  刘丛强 《矿物学报》1998,18(3):350-358
近20年来,人们利用Rb-Sr同位素体系对地表-近地表地球化学过程、尤其是水圈-岩石圈之间化学物质的循环进行了广泛而深入的研究。大陆地壳风化物质以及地表径流的Sr同位素组成变化揭示了不同流域盆地的地质背景和风化作用的特征。古海洋的Sr同位素组成变化则是地壳和地幔演化以及不同地质历史时期壳-幔相互作用的共同结果。本文对地壳风化系统Sr同位素地球化学研究的全面而详细的综述表明,Rb-Sr同位素体系仍将是研究地壳风化、水圈-岩石圈之间化学物质循环的重要手段,根据古海水及其化学沉积物的Sr同位素记录研究壳-幔演化和地球圈层演化过程中的物质循环特征以及地表古环境变化将是本研究领域的重点。  相似文献   

15.
多不杂铜矿床的发现是西藏地质找矿工作取得的重大突破,前人对其做了大量的研究,但始终未能合理解释该矿床的形成过程,究其原因主要是因为成矿物质和成矿流体来源认识上存在争议。本次研究指出了前人在多不杂铜矿床成因机制认识中存在的问题,并测试了岩矿石及单矿物的硫铅同位素组成。研究表明,矿床中硫主要来源于深源岩浆,幔源岩浆和流体在参与成岩成矿过程中伴随岩浆结晶成岩交代岩石而致自身流体性质演变,进而引发壳幔物质混染;铅同位素具有由岩浆作用形成的地壳与地幔混合的俯冲带铅的特征,伴随着含矿地幔流体的上升侵位,不可避免的混染了地壳铅,导致了多不杂铜矿床铅同位素组成的变化。综合分析认为该矿床的成矿物质和成矿流体主要来源于地幔,成矿动力主要来自深部地质过程,矿床的形成与地幔流体作用有关。  相似文献   

16.
The Sanshandao Au deposit is located in the famous Sanshandao metallogenic belt, Jiaodong area. To date, accumulative Au resources of 1000 t have been identified from the belt. Sanshandao is a world-class gold deposit with Au mineralization hosted in Early Cretaceous Guojialing-type granites. Thus, studies on the genesis and ore-forming element sources of the Sanshandao Au deposit are crucial. He and Ar isotopic analyses of fluid inclusions from pyrite(the carrier of Au) indicate that the fluid inclusions have 3 He/4 He=0.043–0.21 Ra with an average of 0.096 Ra and 40 Ar/36 Ar=488–664 with an average of 570.8. These values represent the initial He and Ar isotopic compositions of ore-forming fluids for trapped fluid inclusions. The comparison of H–O isotopic characteristics combined with deposit geology and wall rock alteration reveals that the ore-forming fluids of the Sanshandao Au deposit show mixed crust–mantle origin characteristics, and they mainly comprise crust-derived fluid mixed with minor mantle-derived fluid and meteoric water during the uprising process. The ore-forming elements were generally sourced from pre-Cambrian meta-basement rocks formed by Mesozoic reactivation and mixed with minor shallow crustal and mantle components.  相似文献   

17.
Chromites separated from the upper mantle or lower crustal portions of 18 ophiolites ranging in age from 900 Ma to 50 Ma are examined for Re-Os isotopic systematics. The ophiolites include both MORB and back arc types, although most are from supra-subduction zone (SSZ) settings. The chromites are robust indicators of the initial Os isotopic compositions of the systems sampled. There is very limited range in calculated initial γOs values, with the entire group averaging +1.31. Least squares linear regression of the age of chromite formation (in Ga) versus initial 187Os/188Os of a filtered suite yields a slope of −0.0058±0.0019 (2σ) and a present day intercept of 0.12809±0.00085 (2σ), equivalent to a γOs value of +0.9±0.6. Of the suite of 51 samples analyzed, 68% lie within ±1% of this evolution trajectory.Although most of the samples formed in SSZ environments, there is little evidence to suggest modification of the mantle Os isotopic composition via radiogenic melts or fluids derived from subducting slabs. The ophiolite data are interpreted as representative of the convecting upper mantle and suggest that the present isotopic composition of the convecting upper mantle averages approximately 1.2% less radiogenic than the estimated minimum composition of the primitive upper mantle of 0.1296±8 (Meisel et al., 2001). The most likely explanation for the difference is the formation, subduction and isolation of some portion of the mafic oceanic crust. Using models based on the assumption that the convecting upper mantle comprises 50% of the total mass of the mantle, and that the average isolation period for subducted oceanic crust is 1.5 to 2.0 Ga, it is estimated that approximately 2 to 3% of the total mass of the mantle is composed of subducted mafic oceanic crust that remains isolated from the convecting upper mantle. Because the isotopic compositions of the DMM and PUM overlap within uncertainties, however, the results do not require any isolated slab component.  相似文献   

18.
Although slab-derived fluid significantly affects melt generation and dynamics within subduction zones, its amount and distribution are not sufficiently constrained at present. Herein, we use isotopic systematics of arc volcanic rocks, subducting materials, and intrinsic mantle components prior to metasomatism, to quantify the contribution of the slab-derived fluid that metasomatizes the overlying mantle wedge beneath the entire area of Japan arcs. Simultaneous application of several multivariate statistical analyses (clustering analysis and principal/independent component analyses) to the isotopic data set allows Japan arcs to be broadly divided into eastern and western parts at the first order. Moreover, a clear higher-order inter-arc segmentation is observed, together with some intra-arc variations that possibly correspond to the heterogeneity of incoming plates. Inter-arc segmentation is shown to be primarily controlled by the geometrical parameters of the slab and the arc (e.g., subduction of a single plate or double plates beneath either oceanic or continental crust), which results in differences between mantle wedge and slab thermal conditions. Accordingly, the Kuril and Izu arcs, which have thin arc crusts (~20 km), exhibit the lowest extent of slab-derived fluid addition (0.1 wt%) to the mantle wedge, while the NE Japan arc, with a thicker arc crust (up to 36 km), features a higher value of 0.2 wt%, although the slab thermal parameters for these three arcs are essentially the same. The Central Japan arc shows the highest extent of slab-derived fluid addition (>1.0 wt%) because of the overlapping subduction of Pacific and Philippine Sea slabs, while the SW Japan and Ryukyu arcs feature moderate values of ~0.5 wt%. Moreover, a clear exotic plume zone and spots are observed in SW Japan and the Japan Sea. In addition to the variability of slab-derived fluid composition, the intrinsic mantle composition (before slab-derived fluid–induced metasomatism) shows a clear along-arc variation that is possibly caused by a large-scale mantle flow from the continental side. Thus, slab-derived fluid addition and mantle composition variability equally contribute to inter-arc segmentation, which highlights the importance of both local and regional thermal flow structures of slab-mantle systems.  相似文献   

19.
冀东峪耳崖金矿成矿物质来源探讨   总被引:2,自引:0,他引:2       下载免费PDF全文
通过对峪耳崖金矿硫、铅、氢、氧、碳、稀有气体同位素、包裹体研究以及与区域对比分析,对金、银成矿物质来源进行探讨.认为峪耳崖矿区成矿物质应主要来自地核,受深部过程的约束,成矿物质随地幔热柱多级演化向地表迁移, 在其上升过程中,与壳源物质发生部分混染,使所测同位素数据往往表现出以深源为主、并混有少量壳源物质的特征.  相似文献   

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