首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 160 毫秒
1.
<正>金厂峪金矿位于河北省迁西县境内,是我国冀东金矿成矿带中规模最大的金矿床,也是全国知名的大型金矿床之一。前人对本矿床做了大量的地质工作,矿床成因仍存分歧。原位分析技术的不断提高,矿物原位LA-ICP-MS微量元素分析成为近几年解决矿床疑难问题最流行的手段之一。文本通过对金厂峪金矿床主成矿期黄铁矿微量元素开展微区原位实验分析工作,试图从矿物地球化学特征研究方  相似文献   

2.
西陡崖金矿为台前-陡崖成矿带上又一新发现的金矿床,该金矿受台前-陡崖断裂带严格控制,矿体呈脉状、透镜状;矿床平均品位3.96×10-6,平均厚度1.67 m;围岩蚀变主要有黄铁绢英岩化,矿石中金属矿物主要为银金矿、自然金,黄铁矿等,矿床属岩浆期后中低温热液交代破碎蚀变岩型矿床。通过分析研究,西陡崖金矿在深部及外围找矿前景较大。  相似文献   

3.
新疆托里金矿床为一新类型的金矿床。自然金是主要的含金矿物,常与黄铁矿伴生。自然金的晶胞参数a.=4.064(?);含有Ag、Cu、Fe等微量元素,成色为884~998。石英脉型矿石中,含金矿物以自然金为主,蚀变交代岩型矿石中,含金矿物以黄铁矿为主。  相似文献   

4.
英格庄金矿为胶东牟平-乳山成矿带上的一个中型金矿床。该矿床矿体严格受金牛山断裂带控制,呈脉状、透镜状和囊状平行斜列式产出;矿体平均厚1.58~1.98m,平均品位3.96×10^-6~4.77×10^-6。矿石类型主要为黄铁矿石英脉型;矿石中金属矿物主要为银金矿、自然金、黄铁矿等。围岩蚀变包括绢云母化、硅化、绿泥石化、黄铁矿化等。研究表明,英格庄金矿床为一中低温热液脉型金矿,属Groves等提出的造山型金矿范畴。  相似文献   

5.
西藏尕尔穷铜金矿金矿物特征研究   总被引:7,自引:0,他引:7  
姚晓峰 《地质与勘探》2011,47(6):1018-1025
尕尔穷铜金矿床是班公湖-怒江成矿带西段第一个达到详查程度的矽卡岩型铜金矿床。通过对矿床中金矿物的电子显微镜观察和扫描电镜能谱分析,查明了金矿物的类型及赋存状态,划分了成矿阶段。研究表明,金矿物有银-金矿物系列、铜-金矿物系列和少量碲化物类,主要有自然金、银金矿、金银矿、铜质金银矿、铜金矿、铜质银金矿和碲金银矿。金矿物主...  相似文献   

6.
对中国西南部两个金矿床的矿物成分,进行了考察,这两个金矿床含有全部是显微或次显微颗粒的金或包裹体金。它们含有难以提炼的或低品位矿石,与美国内华达州卡林型相似。对采自两个矿床的矿石样品的矿物成分研究(如质子探针分析、扫描电子显微镜分析、电子探针分析、X-射线衍射分析、矿石显微镜研究)表明,最主要的含金矿物,在东北寨矿床是黄铁矿,在金牙矿床是毒砂和黄铁矿。两矿床中的金均与As、S和Fe密切相关。  相似文献   

7.
<正>抱伦金矿床位于中国海南省西南部乐东县境内,是一个大型中温热液金矿床。该矿床以含金石英脉为主,蚀变岩型金矿脉次之。金矿脉呈NNW方向分布在志留系浅变质碎屑岩破碎带之中。68个矿石样品的多元素分析结果表明抱伦金矿床具有富Bi高Au的特点,属于Au-Bi-(低Te)-S流体体系。抱伦金矿床的金属矿物有自然金、黑铋金矿、硫铋金矿、自然铋、辉铋矿、辉铅铋矿、斜方辉铅铋矿、硫碲铅矿、硫铋碲矿,伴生矿物以磁黄铁矿、毒砂、黄铜矿为主,还有Fe-闪锌矿、方铅矿、黄铁矿等,脉石矿物主要  相似文献   

8.
甘肃省阳山金矿田金的赋存状态和金矿物特征   总被引:1,自引:0,他引:1  
甘肃阳山金矿田属于类卡林型金矿床,金矿化类型主要有蚀变千枚岩、蚀变斜长花岗斑岩、蚀变砂岩、蚀变灰岩四种。金多呈独立金矿物形式出现,少许呈分散状,矿石中金矿物以自然金为主,其次是银金矿。金矿物以包体金、裂隙金、粒间金等形式嵌布于毒砂、黄铁矿、辉锑矿、粘土矿物等主要载金矿物中,且毒砂、黄铁矿、辉锑矿较其它金属硫化物中占优势。金矿物形态各样,粒度以微细粒为主。金矿物特征反映出本区金矿床的成矿物质主要来源于变质岩、岩浆岩和地幔,成矿作用与印支晚期中酸性侵入岩有关。这与地质地球化学研究所获得的矿床成因认识相一致。  相似文献   

9.
东杜奥巴金矿床位于中塔吉克斯坦贵金属成矿带内,是乔列金矿田已探明的4处大型金矿床之一,矿床受区域推覆构造控制明显,时空上与区域发育的古生代浅变质沉积岩系有关;黄铁矿和毒砂是最主要的载金矿物,自然金呈包裹体赋存于成矿期黄铁矿和毒砂矿物中。区域上基底地层与上覆盖层在晚古生代时期经历过3次大规模的构造重组:隆升阶段-造山阶段-晚华力西期造山的最终阶段,并导致矿床当前的时空就位。含碳浅变质碎屑岩带和钠长石化花岗斑岩脉与矿体的成因及时空分布密切相关,矿床成因类型是与早古生代黑色岩系沉积变形、变质及改造作用有关的浅变质碎屑岩型和接触交代蚀变岩型金矿床。  相似文献   

10.
拾金坡—金场沟金成矿带是北山地区最重要的金成矿带之一,成矿带内已发现金矿化线索38处,中小型金矿床9处,均与中酸性岩浆岩有关,主要成矿类型有岩浆热液型和矽卡岩型,其中岩浆热液型金矿是成矿带最主要的成矿类型。优选拾金坡金矿床和金场沟金矿床作为拾金坡式金矿的典型矿床,通过分析矿床的成矿地质环境、矿体特征、矿床成因和成矿模式等,建立了成矿带区域成矿模式。成矿模式的建立,将有助于促进对矿床成矿规律的认识,明确该成矿带金矿找矿方向。  相似文献   

11.
The Xiaoqinling district, the second largest gold producing district in China, is located on the southern margin of the North China Craton. It consists of three ore belts, namely, the northern ore belt, the middle ore belt and the southern ore belt. Pyrite from the Dahu gold deposit in the northern ore belt and Wenyu and Yinxin gold deposits in the southern ore belt were investigated using a combination of ore microscopy and in-situ laser-ablation inductively-coupled plasma-mass spectrometry (LA-ICP-MS). A range of trace elements was analyzed, including Au, Te, Ag, Pb, Bi, Cu, Co, Ni, Zn, Mo, Hg, As and Si. The results show that there are no systematic differences between the trace element compositions of pyrite in the three deposits from different ore belts. In general, Au concentrations in pyrite are low (from < 0.01 ppm to 2.2 ppm) but Ni concentrations are rather high (up to 8425 ppm). A four-stage mineralization process is indicated by microscopic and field observations and this can be related to the systematic trace element differences between distinct generations of pyrite. Stage I precedes the main gold mineralization stage; pyrite of this stage has the lowest Au concentrations. Stages II and III contributed most of the gold to the ore-forming system. The corresponding pyrite yielded the highest concentrations of Au and Ni. Our microscopic observations suggest that pyrite in the main gold mineralization stage precipitated simultaneously with molybdenite that has been previously dated as Indosinian (~ 218 Ma by Re–Os molybdenite dating), indicating the Indosinian as the main gold mineralization stage. The Indosinian mineralization age and the geological and geochemical features of these gold deposits (e.g., low salinity, CO2-rich ore fluids; spatial association with large-scale compressional structures of the Qinling orogen; δ18O and δD data suggestive of mixing between metamorphic and meteoric waters; δ34S and Pb-isotopic data that point to a mixed crustal-mantle source) all point to typical orogenic-type gold deposits. High Ni concentrations (up to 8425 ppm) of pyrite possibly linked to deep-seated mafic/ultramafic metamorphic rocks provide further evidence on the orogenic gold deposit affinity, but against the model of a granitic derivation of the mineralizing fluid as previously suggested by some workers. Generally low Au concentration in pyrite is also consistent with those from worldwide orogenic gold deposits. Therefore, the gold mineralization in the Xiaoqinling district is described as orogenic type, and is probably related to Indosinian collision between the North China Craton and the Yangtze Craton.  相似文献   

12.
浙江火山岩区金矿床黄铁矿的找矿矿物学研究   总被引:4,自引:0,他引:4       下载免费PDF全文
论文给出了中国浙江火山岩区金矿床中黄铁矿的微量元素、形态和物理性质找矿标型特征.例如.(在许多)浙江火山岩区重要金-银矿床中黄铁矿相对富含铅、锌、钼、锡、砷、锑、铋而贫钴,镍、硒、碲:并且S/Se、Ag/Au、Pb/Ni、Se/Te、(As+sb+Bi)/(Se+Te)比值较高,Co/Nj、Ag/Pb、Ag/Zn、Cu/Zn和(Co+Ni)/(Pb+Zn)比值较低,再如含金黄铁矿比不含金黄铁矿的反射率低.总之,黄铁矿的标型性研究对于寻找金矿具有重大的理论意义和实际意义.  相似文献   

13.
胶东照岛山金矿黄铁矿成分与热电性标型特征研究   总被引:4,自引:1,他引:3  
对胶东照岛山金矿中黄铁矿成分和热电性标型特征研究表明:黄铁矿成分亏S富As;黄铁矿的特征元素为:As,Co,Ni,Mo,Se,Au,Ag,Sb,Pb,Te,不同成矿阶段微量元素含量的变化说明,黄铁矿的形成温度从早期成矿阶段到主成矿阶段逐渐降低,金沉淀主要发生在石英黄铁矿和多金属硫化物阶段;P型黄铁矿出现率为61%,与胶东几个典型金矿相比,黄铁矿热电系数离散性较大;热电导型按成矿时间先后变化规律为:PN→PN→PN→PN;As是金矿化的有利组分,微量元素As与(Co+Ni)的相对含量与黄铁矿P型、N型出现率及导型组合密切相关。结合黄铁矿成矿温度、热电系数垂向变化以及黄铁矿P型出现率、P型均值分带性等标型特征的研究表明:照岛山金矿床的形成温度为150℃~340℃,属中低温矿床;矿床总体剥蚀较浅,深部矿体未被揭露;P型黄铁矿热电系数均值、出现率高值区是有利的找矿标志。黄铁矿热电性参数显示,矿区南部矿段(8线~16线)和北部矿段(120线)-200 m以下分别存在一处高值区,推测两处具有深部找矿前景。  相似文献   

14.
Six epizonal gold deposits in the 30-km-long Yangshan gold belt, Gansu Province are estimated to contain more than 300 t of gold at an average grade of 4.76 g/t and thus define one of China's largest gold resources. Detailed paragenetic studies have recognized five stages of sulfide mineral precipitation in the deposits of the belt. Syngenetic/diagenetic pyrite (Py0) has a framboidal or colloform texture and is disseminated in the metasedimentary host rocks. Early hydrothermal pyrite (Py1) in quartz veins is disseminated in metasedimentary rocks and dikes and also occurs as semi-massive pyrite aggregates or bedding-parallel pyrite bands in phyllite. The main ore stage pyrite (Py2) commonly overgrows Py1 and is typically associated with main ore stage arsenopyrite (Apy2). Late ore stage pyrite (Py3), arsenopyrite (Apy3), and stibnite occur in quartz ± calcite veins or are disseminated in country rocks. Post-ore stage pyrite (Py4) occurs in quartz ± calcite veins that cut all earlier formed mineralization. Electron probe microanalyses and laser ablation-inductively coupled plasma mass spectrometry analyses reveal that different generations of sulfides have characteristic of major and trace element patterns, which can be used as a proxy for the distinct hydrothermal events. Syngenetic/diagenetic pyrite has high concentrations of As, Au, Bi, Co, Cu, Mn, Ni, Pb, Sb, and Zn. The Py0 also retains a sedimentary Co/Ni ratio, which is distinct from hydrothermal ore-related pyrite. Early hydrothermal Py1 has high contents of Ag, As, Au, Bi, Cu, Fe, Sb, and V, and it reflects elevated levels of these elements in the earliest mineralizing metamorphic fluids. The main ore stage Py2 has a very high content of As (median value of 2.96 wt%) and Au (median value of 47.5 ppm) and slightly elevated Cu, but relatively low values for other trace elements. Arsenic in the main ore stage Py2 occurs in solid solution. Late ore stage Py3, formed coevally with stibnite, contains relatively high As (median value of 1.44 wt%), Au, Fe, Mn, Mo, Sb, and Zn and low Bi, Co, Ni, and Pb. The main ore stage Apy2, compared to late ore stage arsenopyrite, is relatively enriched in As, whereas the later Apy3 has high concentrations of S, Fe, and Sb, which is consistent with element patterns in associated main and late ore stage pyrite generations. Compared with pyrite from other stages, the post-ore stage Py4 has relatively low concentrations of Fe and S, whereas As remains elevated (2.05~3.20 wt%), which could be interpreted by the substitution of As? for S in the pyrite structure. These results suggest that syngenetic/diagenetic pyrite is the main metal source for the Yangshan gold deposits where such pyrite was metamorphosed at depth below presently exposed levels. The ore-forming elements were concentrated into the hydrothermal fluids during metamorphic devolatilization, and subsequently, during extensive fluid–rock interaction at shallower levels, these elements were precipitated via widespread sulfidation during the main ore stage.  相似文献   

15.
湖南含砷金矿资源储量大,分布广,类型多.矿床中的砷矿物主要为毒砂,几乎所有金矿床中的毒砂都含Au(一般120×10-6~250×10-6),且比共生的黄铁矿含Au量高2~5倍,甚至1个数量级以上.毒砂中金的分布率高达64.3%~94.05%.毒砂的生成期有早、晚2期.化学成分为富S亏As型,并以富含微量元素Sb(Se)、Ni、Co而贫Mn及晶胞参数a0值增大等为标型特征.大多数含Au毒砂均含有相当数量的“不可见金”,即使利用电子探针也难以发现.初步认为毒砂中的“不可见金”多呈纳米级微细粒状存在.  相似文献   

16.
河北省灵寿县土岭-石湖金矿床产于燕山期花岗闪长岩体与太古宙阜平群变质岩系的外接触带中。金矿床中黄铁矿的硫同位素显示金的成矿热液与花岗闪长岩岩浆同源。黄铁矿的主成分具有亏硫特征,属典型的内生型。从矿脉到蚀变岩及受蚀变围岩,黄铁矿的Au、Ag、As含量及Au/Ag比值降低,Co、Ni、Se含量及Co/Ni此值、S/Se比值升高。这些元素的含量及有关参数对金及黄铁矿的取样位置具有良好的指示意义,是确定矿体位置及其含金性的标志,也是成矿温度的函数。  相似文献   

17.
在胶东莱州吴一村地区完成的3266.06 m深钻,是目前焦家金成矿带最深见矿钻孔,研究钻孔揭露的深部矿石中金矿物及黄铁矿微量元素特征,对探讨深部成矿作用演化具有重要意义。笔者采取深钻中2420~3206 m垂深的岩(矿)芯样品进行了详细的岩相学和矿相学研究,结合扫描电镜和电子探针微区分析,研究了矿石中金矿物的赋存状态和成分。对不同成矿阶段形成的黄铁矿进行了LA-ICPMS微量元素分析。研究结果表明,深部矿石中载金矿物主要为黄铁矿,其次为石英、黄铜矿、方铅矿,可见金主要以自然金和银金矿的形式存在,以晶隙金和裂隙金为主,其次为包体金。与浅部金矿床比较,深部金的成色较高。黄铁矿分为6种类型,第Ⅰ成矿阶段形成富Co型黄铁矿Py1,第Ⅱ成矿阶段形成富Ni型黄铁矿Py2a和Py2b,第Ⅲ成矿阶段形成富Au、As型黄铁矿Py3a和富Au、Ag、Pb、Bi型黄铁矿Py3b,第Ⅳ成矿阶段形成贫微量元素黄铁矿Py4。其中,Py1和Py2a发生强烈破碎,裂隙表面对热液中的Au络合物产生吸附作用,对金沉淀富集起重要作用。黄铁矿中Co、Ni、As等微量元素主要以类质同象形式赋存,而Au、Ag、Cu、Pb、Zn、Bi等主要以纳米级、微米级矿物包体形式赋存。Pb+Bi、Cu+Pb+Zn、Te+Bi与Au+Ag呈明显正相关,而Au与As相关性较差。黄铁矿中Co、Ni含量较低,而Au+Ag+As或Au+Ag+Pb+Bi+Cu含量较高指示成矿有利。另外,黄铁矿中Co、Ni含量较高,并且破碎强烈,成矿相关元素含量较高也指示成矿有利。  相似文献   

18.
The Jiaodong gold district of eastern China, the largest gold producing district in China, is located on the eastern margin of the North China Craton. It consists of three mineralisation belts: the western Zhao-Ye belt, the middle Qixia belt, and the eastern Muping–Rushan (Muru) belt. Over 85% of mineralisation is hosted in the Zhao-Ye belt, which is bordered by the mantle-tapping Tan Lu fault zone. Pyrite crystals from three deposits in the Zhao-Ye belt and three deposits in the Muru belt were studied using a combination of optical petrography, bulk pyrite geochemistry, and in-situ laser ablation ICP-MS. Results show that although mineralisation is broadly similar between the two belts, there are significant differences in ore and gangue mineral textures, pyrite geochemistry, and style of gold mineralisation.Texturally, pyrite grains from the Zhao-Ye belt are generally cubic and do not exhibit zoning. In contrast, Muru pyrite grains are more often pyritohedral, commonly exhibit well-defined concentric zoning, and display textures in ore and gangue minerals indicative of open space growth. Bulk pyrite geochemistry suggests a distinct enrichment in Pb, Bi, Au, Ag and Te in the Zhao-Ye belt, whereas the Muru belt pyrite is significantly enriched in As, Cu and Co. In situ pyrite geochemistry indicates that Au and As are variably correlated in the Zhao-Ye belt, typically only exhibiting correlation at low Au concentrations. Most gold occurs as visible electrum along pyrite fractures and grain boundaries, with a minor generation of invisible gold formed through As-facilitated uptake into pyrite. In the Muru belt, Au and As have a strong correlation and there is limited occurrence of gold particles, indicating that most gold in the Muru belt is invisible gold contained in the crystal structure of As-rich pyrite.The differences in style of gold mineralisation between the belts indicates an inherent difference in timing of gold introduction: in the Zhao-Ye belt, the visible electrum accounting for most of the gold endowment is formed post-pyrite, whereas the invisible gold in the Zhao-Ye and Muru belts is formed syn-pyrite. The heterogeneity in gold distribution in the Jiaodong district is attributed to melting of metallogenically fertile Archean crust at the base of the well-endowed Zhao-Ye belt, and the lack of a similarly fertile source region beneath the Muru belt.  相似文献   

19.
山西高凡银金矿床黄铁矿的微量元素标型特征及其应用   总被引:2,自引:0,他引:2  
高凡银金矿床黄铁矿的微量元素研究发现富Au、Ag、Pb、Zn、As、Sb,贫Co、Ni、Se,且S/Se较大,S/As和Fe/(Pb+Zn)较小,As/(Co+Ni)、(Pb+Zn)/(Co+Ni)>10。同时高凡矿田中的滩上铜钼矿化点的黄铁矿则显示相反的特征。总结出一套区分两类矿化黄铁矿微量元素的标型特征,对高凡矿田和五台地区各矿化点的判别和评价中显示了一定的适用性,可作为本区寻找同类金银矿床的找矿标型特征。  相似文献   

20.
山西堡子湾金矿床黄铁矿标型特征   总被引:6,自引:1,他引:6  
从成因矿物学及找矿矿物学观点出发,系统研究了堡子湾金矿床黄铁矿的产状,形态,化学成分,热电性质和热爆特征,该矿床黄铁矿富含Co,Ni,As,Ag,Au与W,Cu,Hg,Ag,As,Bi,Ni,Co,Pb相关性较好,构成特征元素组合,与通常认为的与火山-次火山热液有关的明矾石-高岭土型浅成中低温热液型金矿床特征元素及其组合基本一致。黄铁矿空穴型导电性与明矾,石-高岭土型浅成中低温热液型金矿床特征元素圾其组合基本一致。黄铁矿空穴型导电性与As,Au正相关,与Co,Ni呈明显的负相关,P型和N型导电性是由As/(Co Ni)值决定的。利用黄铁矿热电性及热爆特征空间分带与赋矿空间的对应关系进行成矿预测,效果明显。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号