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51.
丁家林-太阳坪金矿带与丁家林-太阳坪脆-韧性剪切带同位分布、同能源作用、同步生成,是脆-韧性剪切变形形成的石英脉型金矿,总体走向NE,主要由丁家林和太阳坪2个金矿床组成,分石英单脉、单脉密集带、复脉带3个亚型。丁家林以含Au石英复脉为主,太阳坪以含Au石英单脉为主;成矿物质来源于富含Si质的志留系黄坪组,成矿流体主要是构造水;内生成矿作用分脆.韧性剪切变形-构造分异热液期和韧-脆性剪切变形-构造分异热液期,与2期脆-韧性剪切变形相对应,第2期为主成矿期。其成矿机理是脆-韧性剪切变形动力成岩成矿。  相似文献   
52.
骑田岭北部地区锡多金属矿成矿特征及找矿潜力分析   总被引:5,自引:0,他引:5  
在介绍骑田岭北部地区成矿地质环境的基础上,概述了区内两种主要矿床类型--矽卡岩型钨钼矿及热液充填交代型锡铅锌矿的成矿地质特征,进而总结了区内矿床的成矿规律和预测标志。认为该区矿质来源丰富,矿体严格受岩体和构造控制,据此提出了进一步找矿方向的建议。  相似文献   
53.
The Mesoproterozoic Kunyang rift, which is located on the western margin of the Yangtze platform and the southern section of the Kangdian axis, is a rare massive Precambrian iron-copper polymetallic mineralization zone in China. The Mesoproterozoic Wulu (Wuding-Lufeng) basin in the middle of the rift is an elliptic basin controlled by a ring fracture system. Moreover, volcanic activities in the basin display zonation of an outer ring, a middle ring and an inner ring with carbonatitic volcanic rocks and sub-volcanic dykes discovered in the outer and middle rings. The Sm-Nd isochron ages have been determined for the outer-ring carbonatitic lavas (1685 Ma) and basaltic porphyrite of the radiating dyke swarm (1645 Ma) and the Rb-Sr isochron ages for the out-ring carbonatitic lavas (893 Ma) and the middle-ring dykes (1048 Ma). In combination of the U-Pb concordant ages of zircon (1743 Ma) in trachy-andesite of the corresponding period and stratum (1569 Ma) of the Etouchang Formation, as well as the Rb-Sr iso  相似文献   
54.
A Metallogenic Model of Gold Deposits of the Jiaodong Granite-Greenstone Belt   总被引:34,自引:0,他引:34  
An analysis of trace elements and isotopic geochemistry suggest that the ore-forming materials of gold deposits in the Jiaodong granite-greenstone belt have multiple sources, especially the mantle source. Seismic wave, magnetic and gravity fields show that the crust-mantle structure and its coupling mechanism are the fundamental dynamic causes for the exchange and accumulation of materials and energy in the metallogenic system. Considering the evolution history of the structural setting, the tectono-metallogenic dynamics model of the area can be summarized as follows: (1) occurrence of the greenstone belt during the Archean-Proterozoic-the embryonic form of Au-source system; (2) stable tectonic setting in the Paleozoic-an intermittence in gold mineralization; (3) intensive activation and reformation of the greenstone belt in the Mesozoic-tectono-mineralization and tectono-diagensis; (4) posthumous structural activity in the Cenozoic-destruction of orebodies in the later stage. In the middle and late Ind  相似文献   
55.
大青山古元古代变质卯独庆金矿床地质特征   总被引:3,自引:1,他引:3  
杨亮 《华北地质》2003,26(3):177-182
九八年以来,在内蒙大青山地区古元古界二道洼群地层中陆续发现了一批以卯独庆金矿为典型代表的层控特征十分明显的新类型金矿。二道洼群是一套大陆裂谷盆形碎屑岩建造,以杂砂岩、碳酸岩、砂质泥岩、粘土岩为主,上部夹中基性火山岩建造;变质从低绿片岩相到低角闪岩相,变形复杂。金矿体产于固定的层位二道洼群红山沟组的云母片岩和大理岩中,受顺层滑脱作用形成糜棱岩化带控制,矿化均匀,厚度大,平均品位可达6×10-6以上,最高达23×10-6。矿石矿物成分主要有银金矿、黄铁矿、黄铜矿、方铅矿等。成矿时代早于中元古代。而且该类金矿物化探异常显示良好,Au、Ag、Cu、Pb四种元素为矿体晕元素组合。这些特征都表明其成矿作用具特殊性,与产于内蒙新太古界乌拉山群及色尔腾山群中的金矿类型完全不同。因此,有必要对该类金矿的成矿机制及成矿时代进行重新认识。  相似文献   
56.
在分析了成矿预测的特点并在对澜沧江南段铜多金属的成矿规律深入研究的基础上,利用MORPAS系统抽取构置了来自地质异常场、成矿异常场和矿化异常场等多源信息的16个预测变量;把研究区划分为2.5 km×2.5 km大小的1334个统计单元,利用证据权重法的数学模型对研究区铜多金属矿产进行预测;圈定了3级成矿远景区;研究表明证据权法用于成矿预测方法简单,结果可靠性较高;利用MORPAS系统进行成矿预测可以提高工作的效率和精确度.  相似文献   
57.
Comprehensive studies, based on isotope geochemistry of C, H, O, S and Sr, chronology, common element and trace element geochemistry of fluid inclusions for the epithermal Au, As, Sb and Hg deposits in the Youjiang Basin and its peripheral areas, suggested that the ore fluid was the basin fluid with abundant metallic elements and the large-scale fluid flow of the same source in the late Yenshan stage was responsible for huge epithermal mineralization and silicification. The ore fluid flowed from the basin to the platform between the basin and the platform and migrated from the inter-platform basin to the isolated platform in the Youjiang Basin. The synsedimentary faults and paleokast surface acted respectively as main conduits for vertical and lateral fluid flow.  相似文献   
58.
Establishing relative and absolute time frameworks for the sedimentary, magmatic, tectonic and gold mineralisation events in the Norseman-Wiluna Belt of the Archean Yilgarn Craton of Western Australia, has long been the main aim of research efforts. Recently published constraints on the timing of sedimentation and absolute granite ages have emphasized the shortcomings of the established rationale used for interpreting the timing of deformation events. In this paper the assumptions underlying this rationale are scrutinized, and it is shown that they are the source of significant misinterpretations. A revised time chart for the deformation events of the belt is established. The first shortening phase to affect the belt, D1, was preceded by an extensional event D1e and accompanied by a change from volcanic-dominated to plutonic-dominated magmatism at approximately 2685–2675 Ma. Later extension (D2e) controlled deposition of the ca 2655 Ma Kurrawang Sequence and was followed by D2, a major shortening event, which folded this sequence. D2 must therefore have started after 2655 Ma—at least 20 Ma later than previously thought and after the voluminous 2670–2655 Ma high-Ca granite intrusion. Younger transcurrent deformation, D3–D4, waned at around 2630 Ma, suggesting that the crustal shortening deformation cycle D2–D4 lasted approximately 20–30 Ma, contemporaneous with low-volume 2650–2630 Ma low-Ca granites and alkaline intrusions. Time constraints on gold deposits suggest a late mineralisation event between 2640–2630 Ma. Thus, D2–D4 deformation cycle and late felsic magmatism define a 20–30 Ma long tectonothermal event, which culminated with gold mineralisation. The finding that D2 folding took place after voluminous high-Ca granite intrusion led to research into the role of competent bodies during folding by means of numerical models. Results suggest that buoyancy-driven doming of pre-tectonic competent bodies trigger growth of antiforms, whereas non-buoyant, competent granite bodies trigger growth of synforms. The conspicuous presence of pre-folding granites in the cores of anticlines may be a result from active buoyancy doming during folding.  相似文献   
59.
A number of fractal/multifractal methods are introduced for quantifying the mineral de-lmsit spectrum which include a number-size, grade-tonnage model, power spectrmn model,multi-fractal model and an eigeavalue spectrmn model The first two models characterize mineral deposits spec-tra based on relationships among the measures of mineral deposits.These include the number of deposits,size of deposits,concentration and volume of mineral deposits.The last three methods that deal with the spatial-temporal spectra of mineral deposit studies are all expected to be popularized in near future.A case study of hydrothermal gold deposits from the Abitibi area,a world-class mineral district is used to demonstrate the principle as well as the applications of methods proposed in this paper,It has been shown that fractal and multifractal models are generally applicable to modeling of mineral deposits and occurrences.Clusters of mineral deposits were identified by several methods including the power spectral eral deposits in the Timmins and Kirkland Lake camps.  相似文献   
60.
Geological, geophysical, geochemical and remote sensing comprehensive studies show that big ore-prospecting potentiality is contained in the eastern section of the Gangdise Mountains, Tibet.There are various mineralization types with dominant types of porphyry and exhalation. According to their relations with tectonic evolution, they are divided into four kinds of metallogenic series as follows:magnmtic type (Cr, Pt, Cu, Ni) and exhalation type (Cu, Pb, Zn, Ag) ore deposit series related to Neo-Tethys oceanic crust subduction action (125-96 Ma); epithermai type (Au, Ag, Pb, Zn, Sb), altered fractured rock type (Cu, Mo) and skarn rock type (Cu) ore deposit series related to arc-continental collision; porphyry type (Cu, Mo), cryptoexplosion breccia type (Cu, Au, Pb, Zn), shear zone type (Au, Ag, Sb) and skarn rock type (Cu, Fe) ore deposit series with relation to post-orogenic extensional strike-slip. From subductive complex to the north, zoning appears to be crystallization differentiation type (segregation type)-shear zone type (altered rock type)-skarn rock type, epithermai type-porphyry type-porphyry type and exhalation type-exhalation type-hydrothermai filling-replacement type.The ore deposit is characterized by multi-places from the same source, parity and multi-stage, hypabyssal rock from the deep source and poly genetic compound as a whole.  相似文献   
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