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11.
杨晓勇 《地质学报》2009,83(8):1167-1177
砂岩型铀矿床是一种具有重要经济价值的铀矿类型,受到世界各国地质勘探部门的高度关注。本文应用电子探针和高分辨分析型电镜联合研究鄂尔多斯盆地砂岩型铀矿铀的赋存状态;对砂岩中铀、钍及稀土含量的分布进行了线扫描分析,观察到铀矿物微粒主要分布在砂岩的主要造岩矿物裂隙中及其胶结物中。铀矿物主要存在形式是以铀石微粒(UO2)的形式存在, 以微粒吸附形式存在(小于1 微米)。铀物微粒一般富集砂岩中的钾长石、微斜长石、白云母裂隙和解理缝或胶结物中,分析数据显示氧化铀的含量可达1~3.46%,在石英和方解石颗粒裂隙或解理缝中比较低。应用高分辨的电镜还观察到少数呈较大铀石微粒集合体形式存在, 最大可达200 微米。从电子探针分析数据上看,UO2 含量可以从0~几个百分含量,一般来说含铀高的部位,其对应的稀土元素、ThO2含量也较高。本文的研究对含油气盆地的铀矿质的沉淀、运移和富集的认识具有重要意义,同时对鄂尔多斯盆地铀矿开发过程的选冶工艺的确定,具有借鉴价值。  相似文献   
12.
孙策  彭惠娟  熊富浩  侯林 《矿床地质》2020,39(3):523-546
帕莱通铁矿床是老挝万象—呵叻中新生代盆地中最大规模的铁矿床,分为东、西2个矿段,西矿段为豆状、块状富磁铁矿矿体,东部则主要发育角砾状贫赤铁矿矿体。其中,西矿段主要产于新生代富铁质玄武岩中。文章对西矿段中豆状、块状磁铁矿进行了详细的野外地质调查和显微结构分析,发现块状磁铁矿具有细粒他形结构特征,豆状磁铁矿具有球粒同心圆状结构特征。对较为新鲜的磁铁矿进行电子探针(EPMA)以及激光剥蚀电感耦合等离子质谱(LA-ICP-MS)分析显示:帕莱通铁矿床磁铁矿TiO_2-Al_2O_3-MgO三角图落入岩浆岩区域;微量元素富集V、Ti、Cr、Co、Ni及Ga等元素,亏损Sr、Ba及Mg等不相容元素;w(Co)和w(Ni)较高,且较高的Ni/Co比值可以反映成因与深源物质;w(Ti)较高且Ni/Cr比值≤1,在Ti-Ni/Cr图中落入了热液型磁铁矿的范围;Ga-Sn图解表明磁铁矿属于斑岩型热液成因;(Ca+Al+Mn)-(Ti+V)或Ni/(Cr+Mn)-(Ti+V)成因判别图显示该矿床兼具Kiruna型和斑岩型矿床的特征;w(V)表明磁铁矿在较低氧化环境中形成;(Al+Mn)-(Ti+V)形成温度判别图表明磁铁矿形成温度处于300~500℃范围内。文章认为帕莱通铁矿床成矿物质主要源于岩浆演化作用形成的富铁流体,后期由于岩浆热液流体的交代作用,使得磁铁矿具有了热液成因的特征。岩浆型矿床类型在老挝及邻区分布较为广泛,研究帕莱通铁矿的成因,对于总结区域成矿规律,指导同类型矿床找矿预测具有重要意义。  相似文献   
13.
胶东是我国黄金的主要产地, 前人已开展大量矿床学研究, 但主要集中在浅部, 其深部的成矿研究仍然薄弱。本文以目前最深的见矿钻孔为研究对象, 在宏观观察描述的基础上, 以电子探针为主要研究方法, 在微观上系统开展深部金矿的矿相学和元素地球化学研究, 为深部金矿成矿特征提供了第一手的基础资料, 研究结果对于深入认识焦家金矿带矿床的成因以及进一步的深部找矿预测都具有重要意义。超深科研钻ZK01井位于莱州吴一村地区, 是目前焦家断裂带最深的见矿钻孔, 也是我国岩金最深见矿孔。深钻蚀变类型主要有钾化、硅化、黄铁矿化、绢英岩化、黄铁绢英岩化、绿泥石化和碳酸盐化, 矿石类型为黄铁绢英岩化碎裂岩和黄铁绢英岩化花岗质碎裂岩, 矿体多以脉状、细脉网脉状、细脉浸染状为主。载金矿物主要为黄铁矿, 少数金矿物分布在黄铜矿、石英和钾长石中。焦家带深部矿石金矿物成色较高, 主要为含银自然金, 其次为银金矿, 说明该深钻深部金矿形成于高温、较深的成矿环境; 成矿时代相对较老。Au主要有两种赋存形式: 独立的金矿物和不可见金即晶格金。独立金矿物可分为三种赋存状态, 即包体金、裂隙金和晶隙金。初步认为矿石矿物生成顺序从早到晚依次为: (不含Pb黄铁矿、方铅矿、辉铋矿、金矿物)→(黄铜矿)→(含Pb黄铁矿)→(方铅矿、金矿物)→(重晶石)→(闪锌矿)。深钻成矿热液存在多期活动, 碎裂岩带为含金热液运移提供了通道, 多重成矿阶段的叠加和复合导致金矿物多期次结晶。  相似文献   
14.
老金厂金矿床是北山成矿南带最具代表性的中低温岩浆热液型金矿床之一,其规模为中型。依据脉体穿插、矿物共生组合和矿石结构构造等特征,将矿床矿化作用过程划分为石英-黄铁矿阶段(Ⅰ)、石英-含砷黄铁矿-毒砂阶段(Ⅱ)、石英-黄铁矿-多金属硫化物阶段(Ⅲ)和石英-方解石阶段(Ⅳ)。利用电子探针研究了不同成矿阶段载金矿物的元素组成及其分布规律。Ⅰ阶段:黄铁矿以粗粒自形立方体为主,粒度为0.50~1.50 mm,贫As、Au;毒砂含量极少,呈细粒他形。Ⅱ阶段:含砷黄铁矿周围常有大量毒砂产出,含砷黄铁矿多为立方体、五角十二面体,粒度为0.30~1.00 mm,富As、Au;该阶段矿化最为强烈,毒砂主要形成于此时期,多呈棱柱状、柱状、放射状集合体,显示富S亏As特征。Ⅲ阶段:多以黄铁矿-黄铜矿-闪锌矿共生组合脉的形式产出,黄铁矿多呈长条状,以富S、Cu、Zn、Au和贫Fe、As为特征。Ⅳ阶段:矿化作用极弱,毒砂、黄铁矿含量极少,为细粒他形。原位硫同位素组成显示:Ⅰ阶段黄铁矿δ34SV-CDT值为-3.8‰~-2.9‰,均值为-3.3‰;Ⅱ阶段黄铁矿和毒砂δ34SV-CDT值为-4.7‰~2.6‰,均值为-3.3‰;Ⅲ阶段黄铁矿和闪锌矿δ34SV-CDT值主要分布于-1.9‰~1.0‰之间,均值为0.1‰。此3个阶段硫同位素组成反映了成矿期硫主要来源于幔源岩浆,混入了部分地层硫。综合前人研究成果,认为成矿早期至晚期,成矿流体总体上由富S贫As向富As贫S演化。Ⅰ阶段体系处于中性稳定的环境,硫源充足;Ⅱ阶段为贫S富As的高氧逸度环境,由于大气降水对地层的淋滤渗透,混入富As流体,Au可能与As结合形成Au-As络合物,在成矿有利部位富集沉淀;Ⅲ阶段成矿元素种类丰富,体系为富S贫As的弱还原环境,Au很可能与HS-、S-形成络合物进入黄铁矿晶格。  相似文献   
15.
湘南黄沙坪多金属矿床位于南岭构造带中段北缘,属于矽卡岩型矿床。根据矽卡岩产出状态、矿物共生组合及岩相学特征,从早期到晚期可划分为矽卡岩阶段、退化蚀变阶段、早期硫化物阶段和晚期硫化物阶段。矽卡岩矿物主要为石榴石、辉石、符山石等;金属矿物主要为白钨矿、辉钼矿、磁铁矿、方铅矿、闪锌矿等。电子探针分析结果表明,石榴石为钙铝-钙铁榴石系列,从早期到晚期,石榴石具有由钙铝榴石逐渐向钙铁榴石演化的规律。且钙铁榴石普遍发育震荡环带,而环带结构可持续记录钙铁榴石物理化学条件演化的过程。同时两种石榴石中均含Sn的成分,但钙铁榴石中Sn的含量明显高于钙铝榴石。辉石为透辉石-钙铁辉石系列,而且由内接触带向外接触带,辉石中Fe和Mn的含量有逐渐升高的趋势。矽卡岩矿物学特征及矿物成分的变化表明,成矿流体至少经历了两次氧化还原性质的转变。矽卡岩矿物学特征,对W(Sn) Mo Bi等多金属的矿化具有重要的地质指示意义。  相似文献   
16.
通过电子探针研究,在内蒙巴音戈壁盆地塔木素砂岩型铀矿矿石中发现了硒铅矿、白硒铁矿、硒铜蓝、硒铜镍矿、斜方硒铜矿等5种硒的独立矿物,这些硒的独立矿物往往呈细粒状、蠕虫状分布在黄铁矿与石英、长石的边缘或矿物的裂隙中。硒铅矿、白硒铁矿等硒矿物是典型的中低温热液矿物,这些矿物的发现表明塔木素铀矿床曾经历中低温热液阶段。  相似文献   
17.
浙江安吉多金属矿床金银赋存状态及银矿物特征研究   总被引:2,自引:0,他引:2  
安吉矿区是以热液型铅锌铜为主的多金属矿床,工程样化验结果显示,各类矿石均含有高品位的银,可以独立划分银矿体。岩矿显微鉴定、SEM/EDS及EPMA分析结果表明,矿区中的Pb、Zn和Cu主要以方铅矿、闪锌矿、黄铜矿形式存在,银与这些硫化物有密切的依存关系。对数十个典型矿石光薄片进行了研究,发现矿区多数铅锌铜矿石中金、银主要以类质同像形式存在于方铅矿、闪锌矿、黄铜矿、黄铁矿等硫化物中,金、银含量分别达0.03%~0.57%和0.02%~3%。而热液脉型铅锌矿石中的银主要以两种独立银矿物(硫锑铜银矿和银锑黝铜矿)的形式,在方铅矿之中呈粒状、短柱状、叶片状、树枝状、不规则状发育,单颗粒粒度多在10~60μm之间,少数可达100μm,集合体粒度可达200μm。另外这两种独立银矿物之中还存在类质同像形式的金,据统计,金、银含量分别达0.14%~0.35%和10.98%~69.12%。因此,方铅矿为银独立矿物的主要载体之一,且富方铅矿的矿石中更容易发现独立银矿物。  相似文献   
18.
The chemistry and mode of occurrences of native tellurium in the epithermal gold ores from Teine, Kobetsuzawa, Mutsu, Kawazu, Suzaki and Iriki in Japan are examined. Mineral assemblages in contact with native tellurium are: quartz‐sylvanite at Teine, quartz‐hessite‐sylvanite‐tellurantimony at Kobetsuzawa, quartz at Mutsu, quartz‐stutzite‐hessite‐sylvanite‐tetradymite at Kawazu, quartz at Suzaki, and quartz‐goldfieldite at Iriki. The peak patterns of XRD for native tellurium from these six ores are nearly identical to that of JCPDS 4–554. Their chemical compositions of Te range from 98.16 to 100.73 wt.%, showing nearly pure tellurium. Other elements detected are: Se of 0–0.85 and Cu of 0–0.74 at Teine, Sb of 0.45–0.47 and Se of 0.19–0.27 at Kawazu, Se of 0.22–1.11 and Sb of 0–0.49 at Suzaki, and Cu of 0.69–0.98, As of 0.22–0.28 and Bi of 0–0.22 wt.% at Iriki. No other elements are detected in the ores of Kobetsuzawa and Mutsu. The ranges of associated minor compositions are consistent with those of the experimental phase. The differences would be related to associate minerals. The mineral assemblages in these ores agree well with the previously proposed experimental phase relations in Au‐Ag‐Te ternary system for 120–280°C. The Suzaki ore has high Te‐Au assemblage: from calaverite‐sylvanite‐krennerite via native tellurium to petzite, with changing mineralization stage, whereas the Kobetsuzawa and the Kawazu ores have high Te‐Ag assemblage of tellurium‐hessite, and native tellurium‐stutzite‐hessite‐sylvanite, respectively. The Teine ore has intermediate assemblage of native tellurium‐sylvanite. The mineral assemblages in the Au‐Ag‐Te system are related to the hydrothermal environment especially to the pH condition, i.e. Au rich assemblages under acidic and Ag rich assemblages under intermediate pH conditions, being supported by alteration mineral species. The other telluriferous epithermal gold deposits not in association with native tellurium such as Agawa, Date, Takeno, Chugu, Chitose, Sado and Kushikino are estimated to have been formed under higher pH conditions as adularia and calcite occur in these deposits. The pH‐Eh diagram for aqueous tellurium species and tellurium minerals at 250°C indicates that the region of native tellurium occurs between those of aqueous telluride and tellurous species at lower pH, being consistent with their mineral assemblages in ores and alteration envelopes.  相似文献   
19.
Masahiro  Fujii  Yasutaka  Hayasaka  Kentaro  Terada 《Island Arc》2008,17(3):322-341
Abstract The Maizuru terrane, distributed in the Inner Zone of southwest Japan, is divided into three subzones (Northern, Central and Southern), each with distinct lithological associations. In clear contrast with the Southern zone consisting of the Yakuno ophiolite, the Northern zone is subdivided into the western and eastern bodies by a high-angle fault, recognized mainly by the presence of deformed granitic rocks and pelitic gneiss. This association suggests an affinity with a mature continental block; this is supported by the mode of occurrence, and petrological and isotopic data. Newly obtained sensitive high mass-resolution ion microprobe (SHRIMP) zircon U–Pb ages reveal the intrusion ages of 424 ± 16 and 405 ± 18 Ma (Siluro–Devonian) for the granites from the western body, and 249 ± 10 and 243 ± 19 Ma (Permo–Triassic) for the granodiorites from the eastern body. The granites in the western body also show inherited zircon ages of around 580 and 765 Ma. In addition, electron probe microanalysis (EPMA) monazite U–Th–total Pb dating gives around 475–460 Ma. The age of intrusion, inherited ages, mode of occurrence, and geological setting of the Siluro–Devonian granites of the Northern zone all show similarities with those of the Khanka Massif, southern Primoye, Russia, and the Hikami granitic rocks of the South Kitakami terrane, Northeast Japan. We propose that both the Siluro–Devonian and Permo–Triassic granitic rocks of the Northern zone are likely to have been juxtaposed through the Triassic–Late Jurassic dextral strike-slip movement, and to have originated from the Khanka Massif and the Hida terrane, respectively. This study strongly supports the importance of the strike-slip movement as a mechanism causing the structural rearrangement of the Paleozoic–Mesozoic terranes in the Japanese Islands, as well as in East Asia.  相似文献   
20.
The examination of populations of gold grains by SEM and EPMA generates a microchemical signature based upon the assemblage of opaque mineral inclusions within the gold and the concentration of minor alloying metals. Duplicate samples of alluvial gold from the same locality have yielded the same microchemical signature independent of the field worker who collected the sample, or the date of collection. A study of five separate alluvial localities yielded a microchemical signature consistent with the mineralogy of the adjacent host mineralisation. This result has permitted informed speculation on the styles and complexity of gold mineralisation contributing to the alluvial population of gold grains where the style of source mineralisation is unknown.The technique can yield information about several aspects of the source mineralisation of an alluvial population at an early stage in the exploration process. Distinctive microchemical signatures can be used to evaluate the dispersion of gold either by fluvial or glacial action. The technique can identify gold derived from separate mineralising events either within a region or along a watercourse, thereby allowing speculation on the magnitude of the source mineralisation. It is also possible to establish whether specific types of gold mineralisation of potential economic interest have contributed to an alluvial population. In areas subjected to glaciation, analysis of the microchemical signature of populations of alluvial gold may indicate whether the gold grains are of proximal or distal origin.The volume of information made available through the study of alluvial gold grains has contributed greatly to the understanding of regional gold mineralisation. Interpretation of microchemical signatures of populations of alluvial gold from about 130 localities throughout Great Britain and Ireland has facilitated characterisation of gold in terms of the style of the source mineralisation. This information has augmented that available from about ten bedrock gold localities and has permitted a more complete classification of gold occurrences throughout the region.Quantitative analysis of some minerals within the opaque inclusion assemblage can provide information on the chemistry of the mineralising fluid, which may be related to the capacity for gold transportation.In Devon, South West England, a model for the emplacement of gold mineralisation was developed from interpretation of the microchemical signature of alluvial gold grains. The selenide-rich inclusion suite containing no sulphides suggested that oxidising conditions prevailed during precipitation. The model of transport of gold in solution through the oxidising environment of Permian red beds and its subsequent precipitation in underlying rocks due to reduction in Eh was consistent with the observed distribution of gold in alluvial sediment, residential overburden and drill core. Using this model other targets for gold mineralisation were successfully predicted.  相似文献   
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