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1.
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   

2.
布敦化铜矿是大兴安岭中南段一个斑岩-热液脉型复合铜矿床,包括南部的金鸡岭斑岩型铜矿段和北部的孔雀山热液脉型铜矿段。本文在详细的矿床地质特征研究基础上,通过对矿体的氢、氧、硫和铅同位素系统研究,探讨了成矿流体和成矿物质来源以及成矿机制。氢、氧同位素组成表明,金鸡岭矿段与孔雀山矿段早期成矿流体主要以岩浆水为主,至成矿晚期有大气降水的参与。硫同位素分析结果表明金鸡岭矿段相对富集重硫,成矿热液的硫同位素组成为+2.54‰-+2.60‰。而孔雀山矿段相对富集轻硫,成矿热液的S同位素组成为-1.84‰--1.71‰,两矿段的硫同位素组成表明硫主要来源于地球深部,铅同位素组成则表明铅具壳幔混合的特点,其来源与岩浆活动密切相关。结合大兴安岭中南段区域地质演化历史认为,布敦化矿床两个矿段的成矿作用均是由流体混合而导致黄铜矿等金属硫化物的大量沉淀。  相似文献   

3.
区域成矿带铅稳定同位素地球化学研究是区域地球化学分区、示踪成岩成矿物质来源、阐明矿床成因的有效途径。本文以中国特有的大地构造背景为基础,以新生代上地幔铅同位素组成的地球化学场为依据,示踪了中国大型、超大型斑岩型铜矿床及铜镍硫化物型矿床的成岩成矿物质来源。结果显示:①斑岩型铜矿床及铜镍硫化物型矿床成矿母岩继承了所属陆块的上地幔铅同位素组成特征;②两类矿床的含矿岩体和矿石矿物铅同位素组成十分一致,示踪两者同源;壳熔花岗岩和围岩地层的铅同位素组成与矿石铅同位素组成迥异;③位于各陆块的斑岩型铜矿床及铜镍硫化物型矿床的成矿母岩和矿石铅同位素组成除继承了各陆块上地幔不同的铅同位素组成特征外,还示踪了壳幔层圈间耦合性的"块体效应",同时,上地幔铅同位素组成可能还具"延迟效应"。  相似文献   

4.
方解石是若尔盖铀矿田与成矿最为密切的脉石矿物之一。方解石的REE地球化学特征研究表明,产于地层中的方解石、矿区中的方解石和含矿方解石具有明显不同的稀土元素组成特征,分别具有轻稀土富集右倾型、重稀土富集左倾型和相对平坦型的3种稀土配分模式。其中产于地层中的方解石明显继承了地层中岩石的稀土元素特征,而含矿方解石表现出与矿石稀土元素相似的特征。碳氧同位素显示地层中的方解石为海洋沉积碳酸盐岩的碳氧同位素组成特征;矿区方解石脉、含矿方解石脉的碳同位素组成明显表现为地幔来源的特点;而矿区方解石脉的氧同位素组成具明显的深部来源特征,含矿方解石脉的氧同位素组成表明在成矿过程中有大气降水的混入。若尔盖铀矿田的方解石主要为热液成因,其矿床成因类型属于典型的热液矿床,成矿流体主要来源于地幔。  相似文献   

5.
甲玛铜多金属矿是西藏冈底斯成矿带中东段勘查程度最高、成矿元素与矿体类型复杂的超大型斑岩-矽卡岩型矿床。前人在控岩-控矿构造、矿床地质、地球化学、矿床模型等方面已经完成了大量的研究工作,但对于矿床成矿机制研究方面尚存不足,特别是流体、成矿物质的来源方面欠缺系统的研究工作和对资料的全面梳理。文章在大量阅研和总结前人研究资料的基础上,以矿区16号勘探线作为典型剖面开展了氧同位素填图,同时对硫同位素进行了必要的样品补充采集。通过综合研究,有证据表明甲玛矿区深部隐伏斑岩体存在岩浆流体的出溶,在此基础上,氢、氧同位素组成表明矿化由早到晚演化过程中,流体由岩浆水向大气降水增加方向演化;同时,氧同位素填图以及流体包裹体平面均一温度分布确定成矿流体源位于矿区zk1616~zk3216一带。此外,S、Si同位素组成均表明了矿区成矿物质主要来源于成矿岩浆岩,而铅同位素的研究进一步说明成矿物质主要来源于冈底斯后碰撞环境下因地壳减薄、地幔上涌导致的壳幔混合作用。文章依据地球化学的研究成果,探讨矿床流体、成矿物质的来源,为甲玛矿床成因、成矿机制研究夯实基础。  相似文献   

6.
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   

7.
阿吾拉勒山琼布拉克铜矿床流体包裹体及碳氧同位素研究   总被引:1,自引:1,他引:0  
琼布拉克铜矿床位于新疆伊宁县境内,前人对该矿床的成因一直存在争议.文章通过对琼布拉克铜矿床方解石中的流体包裹体进行系统的岩相学、显微测温学和碳氧稳定同位素分析研究,探讨了成矿流体的来源及演化.研究表明:琼布拉克铜矿床的流体包裹体主要为气-液两相包裹体,另有少量的气相包裹体,未见富CO2和含子矿物的流体包裹体,显示出张性...  相似文献   

8.
费利东  肖晓牛  肖娥  刘军  白涛 《现代地质》2020,34(3):579-587
滇中播卡铜矿床是著名“东川式”铜矿床的典型代表,但对其成矿物质来源和矿床成因认识存在争议。对矿区典型铜矿发育的金属硫化物进行硫和铅同位素组成分析,探讨其成矿物质来源。硫同位素测试结果表明,人占石铜矿金属硫化物的δ34S值为1.6‰~10.7‰,指示硫以岩浆(火山喷发)作用为主要来源,并受到沉积作用影响。铅同位素测试结果则表明人占石铜矿、天生塘铜矿、竹箐凹子铜矿和白石岩铜矿中的铅主要来源于壳幔混合物质。综合前人研究和本次硫、铅同位素分析结果,认为播卡铜矿床成矿物质主要来自地幔,且受到地壳物质的混染。  相似文献   

9.
卡鲁安锂矿床位于新疆北部的阿尔泰造山带,是以锂辉石为主要矿石矿物的硬岩型锂矿床。前人对该矿床的岩石成因、成矿机制及构造背景已经有了初步的认识,但对该矿区内成矿流体的研究仍是空白,这将在一定程度上影响对矿床成因的认识。本文通过分析卡鲁安伟晶岩中锂辉石和石英流体包裹体He、Ar同位素组成,对成矿流体进行示踪研究。研究表明,含矿伟晶岩的n(3He) /n(4He) 为0. 25~3.19 Ra(平均0.97 Ra),无矿伟晶岩与外围伟晶岩n(3He) /n(4He) 为0.13~5.32 Ra(平均1.13 Ra),均介于壳源与幔源He之间。根据成矿流体的壳幔二元混合模式进行计算:含矿伟晶岩中的地幔流体比例为3.55% ~ 48.92%,平均值为14.67%;无矿伟晶岩与外围伟晶岩地幔流体占比为1.70% ~ 81.79%,平均值为17.13%。含矿伟晶岩成矿流体的n(40Ar) /n(36Ar)为552.50~13353. 00,n(40Ar*)相对含量为46.52% ~ 97.79%,平均值为87.25%,大气的Ar贡献平均为12.75%。分析结果显示,成矿流体主要以壳源流体为主,部分幔源流体和改造型饱和大气水的混合流体,随着成矿作用的进行,地幔He与大气饱和水改造Ar皆有所减少。值得注意的是卡鲁安锂矿床成矿流体中幔源物质并非真的来自于地幔物质上侵,更有可能是来源于元古代的不成熟陆壳熔融。新疆卡鲁安锂矿床形成于陆—陆碰撞造山作用晚期的后碰撞造山阶段,造山后期的伸展导致含幔源物质的古老地壳与年轻地壳减压熔融,熔融所形成的岩浆流体随后经大气降水改造为成矿流体。  相似文献   

10.
卡鲁安锂矿床位于新疆北部的阿尔泰造山带,是以锂辉石为主要矿石矿物的硬岩型锂矿床。前人对该矿床的岩石成因、成矿机制及构造背景已经有了初步的认识,但对该矿区内成矿流体的研究仍是空白,这将在一定程度上影响对矿床成因的认识。本文通过分析卡鲁安伟晶岩中锂辉石和石英流体包裹体He、Ar同位素组成,对成矿流体进行示踪研究。研究表明,含矿伟晶岩的n(3He) /n(4He) 为0. 25~3.19 Ra(平均0.97 Ra),无矿伟晶岩与外围伟晶岩n(3He) /n(4He)为0.13~5.32 Ra(平均1.13 Ra),均介于壳源与幔源He之间。根据成矿流体的壳幔二元混合模式进行计算:含矿伟晶岩中的地幔流体比例为3.55% ~ 48.92%,平均值为14.67%;无矿伟晶岩与外围伟晶岩地幔流体占比为1.70% ~ 81.79%,平均值为17.13%。含矿伟晶岩成矿流体的n(40Ar) /n(36Ar)为552.50~13353. 00,n(40Ar*)相对含量为46.52% ~ 97.79%,平均值为87.25%,大气的Ar贡献平均为12.75%。分析结果显示,成矿流体主要以壳源流体为主,部分幔源流体和改造型饱和大气水的混合流体,随着成矿作用的进行,地幔He与大气饱和水改造Ar皆有所减少。值得注意的是卡鲁安锂矿床成矿流体中幔源物质并非真的来自于地幔物质上侵,更有可能是来源于元古代的不成熟陆壳熔融。新疆卡鲁安锂矿床形成于陆—陆碰撞造山作用晚期的后碰撞造山阶段,造山后期的伸展导致含幔源物质的古老地壳与年轻地壳减压熔融,熔融所形成的岩浆流体随后经大气降水改造为成矿流体。  相似文献   

11.
Komatiites are mantle-derived ultramafic volcanic rocks. Komatiites have been discovered in several States of India, notably in Karnataka. Studies on the distribution of trace-elements in the komatiites of India are very few. This paper proposes a simple, accurate, precise, rapid, and non-destructive wavelength-dispersive x-ray fluorescence (WDXRF) spectrometric technique for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in komatiites, and discusses the accuracy, precision, limits of detection, x-ray spectral-line interferences, inter-element effects, speed, advantages, and limitations of the technique. The accuracy of the technique is excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Zr, Nb, Ba, Pb, and Th and very good (within 4%) for Y. The precision is also excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th. The limits of detection are: 1 ppm for Sc and V; 2 ppm for Cr, Co, and Ni; 3 ppm for Cu, Zn, Rb, and Sr; 4 ppm for Y and Zr; 6 ppm for Nb; 10 ppm for Ba; 13 ppm for Pb; and 14 ppm for Th. The time taken for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in a batch of 24 samples of komatiites, for a replication of four analyses per sample, by one operator, using a manual WDXRF spectrometer, is only 60 hours.  相似文献   

12.
This paper reports the first results of a study of 11 isotope systems (3He/4He, 40Ar/36Ar, 34S/32S, 65Cu/63Cu, 62Ni/60Ni, 87Sr/86Sr, 143Nd/144Nd, 206–208Pb/204Pb, Hf–Nd, U–Pb, and Re–Os) in the rocks and ores of the Cu–Ni–PGE deposits of the Norilsk ore district. Almost all the results were obtained at the Center of Isotopic Research of the Karpinskii All-Russia Research Institute of Geology. The use of a number of independent genetic isotopic signatures and comprehensive isotopic knowledge provided a methodic basis for the interpretation of approximately 5000 isotopic analyses of various elements. The presence of materials from two sources, crust and mantle, was detected in the composition of the rocks and ores. The contribution of the crustal source is especially significant in the paleofluids (gas–liquid microinclusions) of the ore-forming medium. Crustal solutions were probably a transport medium during ore formation. Air argon is dominant in the ores, which indicates a connection between the paleofluids and the atmosphere. This suggests intense groundwater circulation during the crystallization of ore minerals. The age of the rocks and ores of the Norilsk deposits was determined. The stage of orebody formation is restricted to a narrow age interval of 250 ± 10 Ma. An isotopic criterion was proposed for the ore-bearing potential of mafic intrusions in the Norilsk–Taimyr region. It includes several interrelated isotopic ratios of various elements: He, Ar, S, and others.  相似文献   

13.
最新的流行病学研究表明,空气中较高浓度的悬浮细颗粒可能对人类的健康有不利的影响。根据该项研究显示,由于心脏病、慢性呼吸问题和肺功能指标恶化而导致死亡率的升高与细尘粒子有关。这些研究结果已经促使欧盟于1999年4月出台了限制空气中二氧化硫、二氧化氮、氧化氮、铅和颗粒物含量的法案(1999/30/EC),对各项指标包括对可吸入PM10颗粒的浓度提出了新的限制性指标。PM10颗粒是指可以通过预分级器分离采集的气体动力学直径小于10μm的细颗粒。目前研究的兴趣重点逐步偏向PM2.5这些更细微颗粒物,PM2.5这种颗粒物对健康有明显的不利影响。在欧盟指令2008/50/EC中,对PM10和PM2.5都提  相似文献   

14.
本文介绍样品经四硼酸锂熔融制成玻璃小饼。采用Lachance模式和理论a系数来校正元素间的效应,由3080E型X-射线荧光谱仪和DF-350B数据处理系统完成硅酸盐中十三个项目的测定。  相似文献   

15.
本文拟定了一种以熔融法制备样片,用X射线荧光光谱测定硅酸盐类样品中Si、Fe、Al、Tj、Mn、Ca、Mg、K、Na、P等元素的分析方法。在对不同靶材X光管和分光晶体实验对比的基础上,选择了最佳的测量条件。该法具有快速、准确,测量范围广,检测限低,价格便宜等优点。经过近百个各种类型标样或管理样品的分析对比表明,本法不仅适用于硅酸盐类岩石样品的分析,还适用于铁矿、铝土矿、碳酸盐类岩矿样品以及水泥、耐火材料等样品的分析。  相似文献   

16.
17.
Mining induced subsidence can significantly affect mining costs where major surface facilities and natural environment need to be protected. Overburden grout injection is a technology used to control coal mine subsidence by injecting the mine waste material extracted from the coal back into the inter-burden rock during longwall mining. The flowing slurry is here categorised as a nonlinear viscous cohesive (Bingham plastic) fluid. During longwall mining the grout slurry is pumped into the separated beds of the rock mass through a central vertical borehole, which is drilled deep into the inter-burden rock strata above the coal seam. However, a blockage can occur in the injection system when the slurry velocity falls below a certain critical threshold velocity, indicating a material phase change from cohesive-viscous to cohesive-frictional. In situ field injection tests through boreholes have been simulated at a smaller scale at the CSIRO laboratory in Brisbane by pumping the slurry through a radial disk (gap = 4 mm) from its centre. Laboratory experiments indicate a general, nonlinear, cohesive, viscous, frictional model for shear behaviour of the slurry, in which the material shear parameters are functions of the disk radial distance. Complete dimensional and dimensionless analytical solutions have been developed based on an approach related to Bingham–Herschel–Bulkley fluid mechanics. The derived formulae include relations for minimum pump pressure, local pressure and pressure gradient, wall shear stress, volume rate, velocity and velocity gradient. The theoretical results match the experimental measurements. The experiments covered slurries with maximum particle sizes of 0.5 to 2 mm with about 50% being larger than 100 µm. The viscosities at the various solids concentrations were measured with a standard torsion viscometer. This study differs from the previous research in several distinct aspects, namely, consideration of the variable shear parameters rather than fixed values, inclusion of total nonlinear behaviour, and implementation of a friction function to mimic behaviour of the deposited and consolidating stiff slurry, which can cause a significant pressure rise as a result of the increased shear resistance.  相似文献   

18.
《Applied Geochemistry》2001,16(2):137-159
Five hundred and ninety-eight samples of terrestrial moss (Hylocomium splendens and Pleurozium schreberi) collected from a 188,000 km2 area of the central Barents region (NE Norway, N Finland, NW Russia) were analysed by ICP-AES and ICP-MS. Analytical results for Al, B, Ba, Ca, K, La, Mg, Mn, Na, P, Rb, Si, Sr, Th, U and Y concentrations are reported here. Graphical methods of data analysis, such as geochemical maps, cumulative frequency diagrams, boxplots and scatterplots, are used to interpret the origin of the patterns for these elements. None of the elements reported here are emitted in significant amounts from the smelting industry on the Kola Peninsula. Despite the conventional view that moss chemistry reflects atmospheric element input, the nature of the underlying mineral substrate (regolith or bedrock) is found to have a considerable influence on moss composition for several elements. This influence of the chemistry of the mineral substrate can take place in a variety of ways. (1) It can be completely natural, reflecting the ability of higher plants to take up elements from deep soil horizons and shed them with litterfall onto the surface. (2) It can result from naturally increased soil dust input where vegetation is scarce due to harsh climatic conditions for instance. Alternatively, substrate influence can be enhanced by human activity, such as open-cast mining, creation of ‘technogenic deserts’, or handling, transport and storage of ore and ore products, all of which magnify the natural elemental flux from bedrock to ground vegetation. Seaspray is another natural process affecting moss composition in the area (Mg, Na), and this is most visible in the Norwegian part of the study area. Presence or absence of some plant species, e.g., lichens, seems to influence moss chemistry. This is shown by the low concentrations of B or K in moss on the Finnish and Norwegian side of the (fenced) border with Russia, contrasting with high concentrations on the other side (intensive reindeer husbandry west of the border has selectively depleted the lichen population).  相似文献   

19.
We have developed a set of four synthetic standards for the rare earth and high field strength elements designed for use in the determination of those elements in silicates. The base material is a glass nominally at the eutectic of the MgO-Al2O3-SiO2 ternary system. The nominal doping level was 2 wt% of the elements as oxides. To avoid problems associated with peak interference, the elements were doped in four separate glasses.  相似文献   

20.
Bellechester, Minnesota, is a small community of approximately 155 residents located on the county line between Goodhue and Wabasha counties in southeast Minnesota's karst region. Bellechester is served by a 21-year-old wastewater treatment facility (WWTF) consisting of three waste-stabilization ponds. On 28 April 1992 six sinkholes were discovered to have drained cell 2 of the WWTF resulting in the loss of approximately 8.7×106 1 of partially treated effluent and about 600 m3 of soil into previously undetected subsurface voids of unknown dimensions. In the week following the collapse, approximately 200 water wells located within a 5-km radius of the WWTF were sampled in an after-the-fact, emergency sampling program. Twelve samples with elevated fecal coliform levels, 18 samples with nitrate-nitrogen greater than the 10 mg/1 standard, and no samples with elevated chlorides were found. However, the elevated levels could not be unambiguously attributed to the WWTF collapse. This is the third WWTF to fail by sinkhole collapse in southeast Minnesota since 1974. All three collapsed lagoons have been located in similar geomorphic and stratigraphic settings. However, at least two lagoons have collapsed in the adjacent area in northeast Iowa, and these lagoons are located at different stratigraphic positions. Twenty-two WWTFs constructed in southeast Minnesota's karst region in the last 25 years have been identified as subject to potential sinkhole collapse. An unknown but significant number of manure storage lagoons, flood control structures, etc., have also been constructed in the karst region and are at risk. Public agencies are beginning to develop plans to deal with the risk associated with existing and future waste lagoons in this environment. The critical hydrogeologic parameters that can be used to prioritize the risk of collapse at existing facilities include: (1) the lithology of the first bedrock beneath each lagoon, (2) the thickness of surficial materials between the lagoon and the bedrock surface, (3) the presence and construction of liners (seepage rate), and (4) the proximity to existing sinkholes.  相似文献   

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