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1.
高碳黑色页岩型铂族元素矿床性探讨   总被引:6,自引:1,他引:6  
简析了高碳黑色页岩型铂族元素矿床(PGED)的研究现状,并根据矿床的特征初步将该类矿床划分为中层状黑色页岩,薄层状黑色页岩和高碳构造岩型3类;并从形成环境,成因等方面对PGED形成进行了剖析,强调了源区供给,有机迁移和热液叠加作用的差异是导臻形成不同类型黑色含碳页岩型铂族元素矿床的根源,指出了我国贵州-湖南高碳黑色页岩型铂族元素成矿性较差与层薄和叠加温度低有关。  相似文献   

2.
贵州遵义和湖南张家界黑色岩系中的矿物组合非常复杂,用X射线衍射仪分析并结合前人的研究成果,显示其中的硫化物矿物、粘土矿物和有机质含量较高;经破碎和分选流程对样品进行处理后,用ICP-MS方法测定了黑色页岩和分选后样品中的铂族元素含量,对贵州遵义和湖南张家界黑色岩系中的铂族元素赋存特征进行研究,结果表明:贵州遵义和湖南张家界的黑色页岩系中赋存高含量的铂族元素,且含量表现较高的稳定性;低温氧化条件下,铂族元素的化学活动性足以使之以相当规模活化、迁移并在还原条件下沉淀富集;经强风化淋滤作用,富含碳硫钼矿黑色页岩中铂族各元素含量都有不同程度的降低;绝大部分的铂族元素富集于黑色页岩的有机质和黄铁矿中;铂族元素的分布模式具规律性,铂族元素的明显分异说明此黑色页岩的分布模式不具有地外物质的特征。  相似文献   

3.
铂族元素(Os,Ir,Pt,Ru,Rh,Pd)具有强亲铁性和强亲铜性,为一组地球化学性质相近的相容元素,铂族元素包含两个同位素衰变体系(^190Pt-^186Os和^187Re-^187Os)。近年来,铂族元素和Re-Os同位素在研究各类不同地持作用过程中,尤其是在地幔岩石的研究中,作用独特,效果显著。由于地幔岩石的铂族元素含量较低,因此高精度,高灵敏度的分析测试方法的研究就显得十分重要。以往的分析方法(如常规的ICP-MS和中子活化分析方法),对含10^-9-10^012级低含量铂族元素的产品分析精度一般较差(>15%-100%)。所采用的分析流程通常也无法同时获得样品的铂族元素含量和Os同位素比值。本文采用新的熔样方法(HAP-S高温高压釜酸溶法),新的化学流程(溶剂萃取和阴离子交换树脂柱)和新的分析仪器(多接收等离子体质谱MC-ICPMS和负离子热电离质谱N-TIMS)。用同位素稀释法对低含量地幔橄榄岩样品同时测定的铂族元素含量和Os同位素比值,获得了高精度的分析结果。对所分析的地橄榄样品中的铂族元素分配曲线和Os同位素组成的地质意义进行了初步探讨。  相似文献   

4.
已有的野外观测和室内实验研究表明,铂族元素除通常在基性岩浆中迁移和富集成矿外,在表生和热液条件下同样表现出一定的地球化学活动性。因此,铂族元素的热液迁移和富集规律已成为铂族元素成矿作用研究的新课题。本文总结了表生和热液环境中铂族元素活动性的地质证据与溶解度实验研究成果,以加深和丰富对铂族元素成矿机理的认识。  相似文献   

5.
黑色页岩中碳、硫、镍等元素的含量很高,按照常规的锍镍试金熔剂配方不能形成较好的锍扣,影响铂族元素准确定值。本文通过调整试剂配方、优化操作流程等方式建立了黑色页岩中铂族元素的锍镍试金-电感耦合等离子体质谱(ICP-MS)测定方法。结果表明,加入适量硝酸钾可以将铂族元素回收率提高了大约10%。用盐酸溶解锍扣之后,溶液中仍然存在大量黑色沉淀,不易过滤和溶解,趁热在不断搅拌下加入2~3 mL三氯化铁溶液可以在很大程度上减少沉淀量,降低实验操作的难度和不确定性。方法检出限Ru为0.054 ng/g,Rh为0.040 ng/g,Pd为0.40 ng/g,Ir为0.032 ng/g,Pt为0.27 ng/g,Os为0.026 ng/g。精密度和准确度试验表明,该方法稳定可靠,可用于黑色页岩中铂族元素的准确测定。  相似文献   

6.
系统考察了湖南省麻田和桃花江两个不同发育程度的下寒武统黑色页岩风化剖面,并提出了元素在理想剖面中的分布模式(概念模型);通过对比分析这两个剖面中元素的分布特征与理想分布模式的关系,并结合元素相关性研究、等质量图解的判别分析、微量元素的赋存状态及地球化学性质的探讨,认为在黑色页岩风化过程中,Ti为不活动元素,可作为参照系来计算其它元素的相对迁移性,Nb、Ta的活动性较小,Zr与Hf之间存在着共迁移现象;研究表明化学风化程度是影响元素活动性的重要因素.  相似文献   

7.
渝东北黑色页岩元素迁移特征及化学风化程度   总被引:1,自引:0,他引:1       下载免费PDF全文
黑色页岩是富含有机质和硫化矿物的特殊沉积岩,但人们对其风化过程的元素活动性及矿物风化机制关注较少.为探讨不同地形位置的黑色页岩化学风化过程,采集了渝东北城口某山脊 (A)、近山顶 (B) 和沟谷 (C) 的下寒武统水井沱组黑色页岩风化剖面岩样,利用XRD、XRF和化学分析手段对采集样品的矿物成分、主量元素进行测定分析.元素和矿物的质量迁移系数 (τ) 和质量迁移通量 (Mj, flux) 的计算结果表明,黑色页岩风化过程中Ca、Mg和Na元素具有明显的贫化现象,近地表处存在Al元素的富集现象;矿物成分方面,黄铁矿和有机质氧化后形成的酸性水环境,造成方解石、白云石、斜长石等不稳定矿物溶解,并生成含水石膏、铁质氧化物、黏土矿物等次生矿物.不同赋存位置的黑色页岩风化程度有所差异,Na/K-CIA、K/Ca*-Al/Na、A-CN-K和A-CNK-FM图解显示:A剖面处于脱Ca过程的初级风化阶段,B剖面处于脱Ca、Na初期的初等-中等风化阶段,C剖面已发生脱Ca、Na过程,并伴随脱Si作用的中等-强烈风化阶段,结合不同风化指数 (如:CIA、CIW、PIA、MWPI等),得出各剖面的化学风化强弱程度依次为C>B>A.   相似文献   

8.
铂族元素迁移富集机理的新探   总被引:2,自引:1,他引:2  
在岩浆及高温热液中,拍族元素以纳米液态铂族元素单质、铂族元素与其它金属元素的纳米液态合金、纳米液态铂族元素的硫、砷化物迁移。在中、低温热液及表生条件下,除呈上述固态纳米铂族矿物随流体迁移外,还呈配合物形式迁移。然后它们在合适的条件下沉淀富集形成矿床。此外,还讨论了铂族元素与金地球化学条件的异同。  相似文献   

9.
为探讨贵州下寒武统黑色岩系中铂族元素物质来源及钼-镍、钒多金属形成的沉积环境与成矿作用,在钼-镍、钒多金属层及其顶底页岩、底部硅质岩中采集样品测试分析。通过对样品中金、铂族元素含量(质量分数)及其地球化学特征值研究,结果表明:黑色岩系中金及铂族元素含量显示协同变化特征;Pd富集,Ru、Ir亏损明显,Pt、Rh、Os基本持平或略有变化;样品的原始地幔标准值标准化模式配分曲线从Os、Ru、Rh、Ir、Pt到Pd大致呈“W”型,配分曲线略呈左倾,总体上呈现w(Pd)>w(Pt)>w(Os)>w(Rh)>w(Ru)>w(Ir)的变化关系;黑色岩系铂族元素来源与正常海水及海底热水喷流作用关系密切,地外来源可能性极小;黑色岩系钼-镍、钒多金属层中铂族元素的富集存在单独成矿作用或成矿作用的叠加,而且在钒多金属层内局部存在分层或条带分异。  相似文献   

10.
缺氧沉积物及其衍生物的Re-Os同位素定年与示踪   总被引:2,自引:0,他引:2  
Os属铂族元素,其不同于亲石元素的地球化学性质使得Re-Os同位素体系在金属矿床和超基性-基性岩浆岩的定年与地球化学示踪研究中得到了广泛应用。Re、Os元素具有亲铁和一定程度的亲铜性质,能在还原环境中与硫化物和/或有机物结合而发生相对富集,因此可应用Re-Os同位素体系对缺氧环境中形成的富有机质沉积物及其衍生物进行定年与示踪研究。本文综述了近年来Re-Os地球化学在这一领域的研究新进展,包括黑色页岩中Re-Os富集机制的探讨,沉积岩的等时线法定年,风化作用、烃类成熟度和变质作用等对黑色页岩等富有机质沉积岩Re-Os同位素体系的影响,沉积环境的Os同位素示踪以及黑色页岩Os模式年龄的意义等,并对这些研究成果在石油、沥青等有机矿产的成因研究及其勘查工作中的应用前景进行了评述。  相似文献   

11.
Re-Os analyses were performed on five soil profiles developed on silicate lithologies in the Narayani drainage basin of the Himalayas, as well as on several altered black shales and associated alteration phases. The results indicate that all of these samples have lost large amounts of Re. This Re loss approached 100% in the black shale-derived soils, which also most probably lost substantial quantities of Os. The near constancy of Os and Re concentrations with depth indicates that this loss occurred quite early in the alteration process, rather than progressively during the course of soil development. A slight decrease in 187Os/188Os was observed toward the surface of the two black shale soil profiles, possibly indicating a minor preferential mobility of radiogenic 187Os for this lithology. In the black shale-derived saprolite and soils, the loss of Re and Os was related to the loss of organic carbon. The importance of this phase is underscored by the fact that organic material separated from a black shale sample accounted for nearly all of the Os contained in the whole rock. Analysis of alteration phases from the surface of a weathered black shale showed that Os liberated during alteration was partially reprecipitated in Fe oxides, with Os isotopic compositions very similar to that of the original rock, whereas Re was removed with the fluid phase.These results demonstrate the disproportionately large role that black shale weathering may play in determining the Re and Os contents of continental runoff and, thus, ultimately of seawater, but they also emphasize the possible complexity of this process. The data suggest that a large fraction of the Os contained in black shales is released during chemical alteration, which is apparently not the case for most other silicate rocks. Therefore, the potential contribution of black shales to the dissolved Os budget of runoff and river water may be even greater than that expected from the high Os concentrations of these rocks. The extent to which this Os will affect the seawater Os composition depends on how efficiently it is recaptured by secondary phases such as Fe-Mn oxides in situ or during transport. These results also underscore the high mobility of Re with respect to Os at every stage in the erosional process, thus explaining the order of magnitude increase in Re/Os ratio from the black shale source rocks to seawater.  相似文献   

12.
The black shale series that formed in the Ediacaran–Cambrian transition are important stratigraphic records of the co-evolution of the paleo-ocean, -climate, and -biology. In this study, we measured Re–Os isotopic compositions of the black shale in the Niutitang Formation from the Gezhongwu section in Zhijin, Guizhou Province. The samples had high Re and Os contents, with Re ranging from 21.27 to 312.78 ng/g and Os ranging from 0.455 to 7.789 ng/g. The Re–Os isotope isochron age of 522.9 ± 8.6 Ma implies deposition of the Niutitang black shale predated the Chengjiang Fauna, providing an age constraint for the expansion of oceanic anoxia in the study area. The initial 187Os/188Os ratio of 0.826 ± 0.026 indicates that enhanced continental weathering might have triggered the expansion of the oceanic anoxia.  相似文献   

13.
This research compares various ways of applying oxidative chemical decomposition to the analysis of gold-bearing black shale ores from the Russian Natalka and Sukhoj Log deposits. This study was conducted as part of the certification program for the Russian candidate black shale reference materials SLG-1 and SCHS-1 and also because of the paucity of data available on the determination of the platinum group elements (PGE) in analogous sample types. We report direct evidence of PGE volatilisation from black shale materials when processed in the presence of oxygen. We also developed a comprehensive analytical scheme for the quantitative determination of PGE in all phases (gaseous and ash) produced during slow combustion of carbonaceous materials in oxygen.
This study has shown that during combustion in oxygen at 600 °C, PGE contained in the Natalka black shale ores are lost as gaseous reaction products. Thus, the volatilized PGE (recovered in traps) account for up to 14% Pt, 40% Pd, 40% Ru and 10 % Ir relative to their total concentrations in a carbonaceous concentrate. It was also established that in the process of combustion, Au quantitatively remains in the ash cake.
In order to avoid the deleterious effects of oxygen on the volatility of the PGE, we propose a new comprehensive sample decomposition method based on the application of fluoroxidants such as BrF3 and KBrF4. This method was validated using samples of black shale ores and their processing products by comparing our results with those obtained independently using sealed autoclave processing of the same materials. It was shown that PGE in black shale ores and their processing products not only exist in commercially exploitable quantities but that a small proportion of PGE compounds are soluble in alcohol. We propose that in gold-bearing black shale ores, PGE are present as organometallic compounds.  相似文献   

14.
Different from previous studies on effect of weathering upon geochemical variation along a single weathered profile, this paper provides a new methodology validated by comparing a weathered outcrop samples and their stratigraphic counterpart un-weathered core samples in a nearby shallow borehole. This outcrop and borehole penetrated the Ordovician-Silurian Wufeng–Longmaxi shales, located in the same anticline structure in the northern part of Guizhou Province, Southern China. The mineral composition, major, trace and rare earth elements (REEs) composition and Rock-Eval parameters of outcrop and core samples were analyzed and compared. Organic matter (OM) was observed in the microscope and extracted for elements analysis. The results show that short-term weathering still has significant influence on OM, mineral and elemental composition of black shales. The elements composition shows the outcrop profile was moderately weathered. The REEs compositions do not alter much during weathering process and the REEs composition and their relative ratios still are valid for rock origin determination. The OM, mainly composed by graptolite and bitumen, even entering the highly-over thermal maturity, is still sensitive to the weathering with a systematic loss 30–50% of TOC along the outcrop profile, which suggests that the OM consumption is predominantly controlled by weathering duration and the distance from the weathering surface. In turn, OM has significant influence on the trace elements transportation behavior during weathering. Some trace elements associated with the OM such as V, Cr, Th, U, Ni and Co, change significantly in their absolute concentration during weathering, but their relative ratios do not necessarily change too much and might be still reliable proxies for paleo-environmental determination. The mobility of shale minerals during weathering is in the following order: plagioclase?>?potassium feldspar and dolomite >pyrite and OM. Short-term weathering can also result in considerable transportation of elements and significant variation of minerals content in black shale, which may pose potentially high environmental and engineering risk in the regions rich in black shale.  相似文献   

15.
High precision Os isotope analysis of young marine manganese nodules indicate that whereas the composition of modern seawater is radiogenic with respect to 187Os/188Os, it has 186Os/188Os that is within uncertainty of the chondritic value. Marine Mn nodule compositions thus indicate that the average continental source of Os to modern seawater had long-term high Re/Os compared to Pt/Os. Analyses of loess and freshwater Mn nodules support existing evidence that average upper continental crust (UCC) has resolvably suprachondritic 186Os/188Os, as well as radiogenic 187Os/188Os. Modeling the composition of seawater as a two-component mixture of oceanic/cosmic Os with chondritic Os compositions and continentally-derived Os demonstrates that, insofar as estimates for the composition of average UCC are accurate, congruently weathered average UCC cannot be the sole continental source of Os to seawater. Our analysis of four Cambrian black shales confirm that organic-rich sediments can have 187Os/188Os ratios that are much higher than average UCC, but 186Os/188Os compositions that are generally between those of chondrites and average-UCC. Preferential weathering of black shales can result in dissolved Os discharged to the ocean basins that has a much lower 186Os/188Os than does average upper crust. Modeling the available data demonstrates that augmentation of estimated average UCC compositions with less than 0.1% additional black shale and 1.4% additional ultramafic rock can produce a continental end-member Os isotopic composition that satisfies the requirements imposed by the marine Mn nodule data. The interplay of these two sources provides a mechanism by which the 187Os/188Os of seawater can change as sources and weathering conditions change, yet seawater 186Os/188Os varies only minimally.  相似文献   

16.
The northwestern Guizhou in the Yangtze Craton of south China has a tremendous potential of shale gas resource. In this paper, we present results from major and trace elements, total organic carbon, mineralogical composition analysis and petrophysical parameters to characterise shale weathering features. Further, the differences of black shale between underground and outcrops have also been presented to examine the changes of black shale after weathering. Our results show that the trace elements of shale have varying degrees of loss in the weathering leaching process, both in Niutitang shale and Longmaxi shale, the loss of B, V, Ni, Cu, Zn and Ba is obvious, but the element migration quantity in the former is greater than in the latter. Decomposition of minerals such as pyrite, feldspar and calcite result in the leaching of Na, Ca, Mg and Fe. The loss rate of total organic carbon (TOC) in black shales ranges from 18% to 70% with an average of 43%; moreover, the loss of organic carbon in samples with high TOC content is larger than in those samples with low TOC content. Results following the testing of porosity and permeability show that porosity increases significantly after weathering but permeability changes little. Furthermore, the increment of porosity is greater in the Niutitang shale (with more sulphide minerals) than in the Longmaxi shale, suggesting that the oxidation of sulphide minerals may have led to the formation of an acidic environment, causing the other minerals in the black shale to weather more quickly, thus resulting in increased porosity. The content of clay minerals in the core samples is slightly lesser than the outcrop samples, but the TOC content in the core samples is greater and has a larger specific surface area. This suggest that the TOC content played a decisive role on the specific surface area of shale. In addition, changes in the black shale caused by the weathering process mainly depend on the mineral composition and the TOC content in shale. In this study, we try to establish relations between outcrop samples and core samples, in order to better understand the underground characteristics of shale reservoir.  相似文献   

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