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以安徽铜陵凤凰山矿田为例,通过综合地质研究,构建了矿体定位预测概念模型。在地质勘探数据和物化探数据集成的基础上,采用三维地质建模技术,对地层、构造、岩浆岩、矿体等地质体进行了推断和圈定,构建了地质体的线框模型与块体模型。基于定位预测概念模型和地质体三维块体模型,通过地质空间定义和立体单元划分,建立了岩体及其表面形态起伏、接触带、地层、褶皱、断层等控矿地质因素的三维栅格场模型。在定量分析控矿地质因素与矿化分布的关系的基础上,建立了反应这种关联关系的矿体立体定量预测模型。预测模型提供矿田深部(-1000m标高以上)所有50m×50m×50m立体单元的铜品位、铜金属量和含矿概率的预测结果。基于预测结果圈定了4个深部找矿立体靶区,为深部找矿工程的设计、布置提供尚未发现的隐伏矿体的位置、品位、金属量等信息的指导。  相似文献   
2.
The Jinping terrane is situated in the southern segment of the Ailaoshan ore belt, Sanjiang Tethyan Orogen (SW China). The Paleogene intrusions in Jinping consist of syenite porphyry, fine-grained syenite and biotite granite stocks/dikes, and contain relatively low TiO2 (0.21–0.38 wt%), P2O5 (0.01–0.35 wt%), and high Na2O (2.00–4.62 wt%) and K2O (4.48–7.06 wt%), belonging to high-K alkaline series. Paleogene gold mineralization in Jinping comprises four genetic types, i.e., orogenic, alkali-rich intrusion-related, porphyry and supergene laterite. The NW–NNW-trending faults and their subsidiaries are the major ore-controlling structures. The orogenic Au mineralization, dominated by polymetallic sulfide-quartz veins, occurs in the diorite and minor in Silurian-Devonian sedimentary rocks. It contains a CO2-rich mesothermal fluid system generated from the mixing of mantle-derived fluids with crustal-derived metamorphic fluids, and the ore-forming materials were upper crustal- or orogenic-derived. The alkali-rich intrusion-related Au mineralization is hosted in the Ordovician-Silurian sedimentary rocks and minor in the Paleogene alkaline intrusions, and the Au orebodies occur predominantly in the alteration halos. It contains a CO2-bearing, largely metamorphic-sourced mesothermal fluid system, and the ore-forming materials were derived from the ore-hosting rocks and minor from the alkali-rich intrusions. The porphyry Cu-Mo-Au mineralization occurs in the granite/syenite porphyries and/or along their contact skarn, with the mineralizing fluids being magmatic-hydrothermal in origin. The former two hypogene Au mineralization types in Jinping were mainly formed in the late Eocene (ca. 34–33 Ma) and slightly after the porphyry Cu-Mo-Au mineralization (ca. 35–34 Ma), which is coeval with the regional Himalayan orogenic event. Subsequent weathering produced the laterite Au mineralization above or near the hypogene Au orebodies.  相似文献   
3.
安徽铜陵冬瓜山矿床矿石硫化物环带及地质意义   总被引:1,自引:1,他引:0  
安徽冬瓜山矿床是铜陵矿集区内一个重要的大型铜(金)矿床,颇受关注,成因认识分歧较大。矿床内块状硫化物矿石中普遍发育以黄铁矿为核部、黄铜矿为中间带、磁黄铁矿为边部带的硫化物环带。这些环带核部黄铁矿多呈自形-半自形晶,黄铜矿呈他形晶围绕黄铁矿沉淀,磁黄铁矿呈他形分布在黄铜矿外围,内带常被外带硫化物溶蚀交代。硫同位素分析结果显示,环带中硫化物矿物的硫同位素(δ34S=1.6‰~5.1‰)具有岩浆硫源特征,同时从核部黄铁矿到中间带黄铜矿,再到边部磁黄铁矿δ34S值逐渐降低。以上特征表明环带从内到外硫化物之间并非平衡共生关系,而是黄铁矿、黄铜矿和磁黄铁矿先后依次晶出。硫化物环带核部粗粒黄铁矿(粒径大于1.5cm)的Co、Ni含量分别为292×10-6~1504×10-6和32.7×10-6~39.9×10-6,Co/Ni=7.32~46.0(平均26.7),与海底火山喷流沉积型黄铁矿的Co、Ni特征基本一致。核部黄铁矿由颗粒中心向边缘,Fe/S原子比值、Mo和Co含量先逐渐升高,再逐渐降低,而Cu、Zn等成矿元素主要富集于颗粒边缘,并向边缘有逐渐升高趋势。与此同时,细粒黄铁矿(粒径小于0.5cm)中的Cu、Zn等元素的含量明显高于粗粒黄铁矿。环带中三种硫化物矿物的REE配分曲线和微量元素蛛网图极为相似,相对富集LREE、Rb、Th等元素,而亏损Nb、Ta、Zr、Hf、Sr、Ba和HREE等元素,由环带核部到边部δEu逐渐减小,与矿区石英二长闪长(玢)岩表现出较高的相似性。以上特征综合分析表明,冬瓜山铜(金)矿床中硫化物环带经历了以下形成过程:石炭纪海底喷流沉积作用在矿区形成沉积黄铁矿,到燕山期,在区内强烈的构造-岩浆活动作用下,致使早期沉积的黄铁矿首先发生变质重结晶作用,形成粒状黄铁矿,随后岩浆热液对其进行叠加改造,并在岩浆热液作用下相继围绕粒状黄铁矿增生,依次沉淀出热液型黄铁矿、黄铜矿和磁黄铁矿,最终形成硫化物环带。这一认识,结合硫化物环带中元素及硫同位素特征进一步表明冬瓜山铜(金)矿床的形成先后经历了古生代海底喷流沉积成矿作用和燕山期岩浆热液成矿作用,矿床中的成矿物质(特别是Cu、Zn等成矿元素)主要来源于燕山期岩浆热液,但石炭系海底喷流沉积作用也提供了部分物质(例如,Fe、S、Mo、Co和Ni等)。此外,环带中微量元素的变化特征表明,随着硫化物环带的形成,成矿热液系统的温度、硫逸度和氧逸度逐渐降低和(或)p H值升高。  相似文献   
4.
胡新付  周贵斌  徐晓春 《安徽地质》2011,21(1):27-31,47
本文选取矿体形态变化、厚度变化、底板位移、品位变化和储量误差作为铜陵狮子山铜矿床矿山探采对比项目开展研究,分析了地质勘探期间对勘探类型划分及勘探手段、勘探方法、勘探网度选择的合理性;明确了原地质勘探对矿体形态和规模的认识和控制程度及资源/储量估算的误差率,为今后地质条件类似矿床的勘查、设计及开采提供了很好借鉴作用。  相似文献   
5.
The Datuanshan deposit is one of the largest and most representative stratabound copper deposits in the Tongling area,the largest ore district in the Middle-Lower Yangtze River metallogenic belt.The location of the orebodies is controlled by the interlayer-slipping faults between the Triassic and Permian strata,and all the orebodies are distributed in stratiform shape around the Mesozoic quartz monzodiorite dikes.Based on field evidence and petrographic observations,four mineralization stages in the Datuanshan deposit have been identified:the skarn,early quartz-sulfide,late quartzsulfide and carbonate stages.Chalcopytite is the main copper mineral and mainly formed at the late quartz-sulfide stage.Fluid inclusions at different stages were studied for petrography,microthermometry,laser Raman spectrometry and stable isotopes.Four types of fluid inclusions,including three-phase fluid inclusions(type 1),liquid-rich fluid inclusions(type 2),vapour-rich fluid inclusions(type 3) and pure vapour fluid inclusions(type 4),were observed.The minerals from the skarn,early and late quartz-sulfide stages contain all fluid inclusion types,but only type 2 fluid inclusions were observed at the carbonate stage.Petrographic observations suggest that most of the inclusions studied in this paper are likely primary.The coexistence of different types of fluid inclusions with contrasting homogenization characteristics(to the liquid and vapour phase,respectively) and similar homogenization temperatures(the modes are 440-480℃,380-400℃ and 280-320℃ for the skarn,early and late quartz-sulfide stages,respectively) in the first three stages,strongly suggests that three episodes of fluid boiling occurred during these stages,which is supported by the hydrogen isotope data.Laser Raman spectra identified CH_4 at the skarn and early quartz-sulfide stages.Combined with other geological features,the early ore-forming fluids were inferred to be under a relatively reduced environment.The CO_2 component has been identified at the late quartz-sulfide and carbonate stages,indicating that the late ore-forming fluids were under a relatively oxidized environment,probably as a result of inflow of and mixing with meteoric water.In addition,microthermometric results of fluid inclusions and H-O isotope data mdicate that the ore forming fluids were dominated by magmatic water in the early stages(skarn and early quartz-sulfide stages) and mixed with meteoric water in the late stages(late quartz-sulfide and carbonate stages).The evidence listed above suggests that the chalcopyrite deposition in the Datuanshan deposit probably resulted from the combination of multiepisode fluid boiling and mixing of magmatic and meteoric water.  相似文献   
6.
分形理论在太原盆地土壤重金属元素分析中的应用   总被引:2,自引:1,他引:1  
通过对太原盆地地球化学取样中土壤浅、深层元素多重分形特征的详细分析研究,确定了8种微量元素(As、Cd、Cr、Cu、Hg、Pb、Zn、Ni)在盆地的背景区和异常区以及元素的分维值,并依据分维值对微量元素进行了分类研究。在此基础上,对其富集趋势进行了尝试性分析,认为土壤浅层、深层差异性大,浅层富集趋势强于深层。为太原盆地土壤质量评价提供了可靠的依据。  相似文献   
7.
安徽庐枞沙溪斑岩铜矿蚀变及矿化特征研究   总被引:13,自引:9,他引:4  
袁峰  周涛发  王世伟  范裕  汤诚  张千明  俞沧海  石诚 《岩石学报》2012,28(10):3099-3112
沙溪斑岩铜矿是长江中下游成矿带中部庐枞火山岩盆地外围的一个大型铜矿床.本文在前人工作基础上,基于详细的野外观察和系统的岩相学、矿相学工作,详细研究了矿床的蚀变特征及分带.结果表明,矿床的蚀变类型有钾硅酸盐化、青磐岩化、长石分解蚀变和高岭土化,从深到浅依次发育有钾硅酸盐化、长石分解蚀变叠加钾硅酸盐化、长石分解蚀变和高岭土化等蚀变.确定了矿化特征、矿物生成顺序并划分了成矿阶段,即:钾硅酸盐阶段、石英硫化物阶段和石英碳酸盐阶段,其中,石英硫化物阶段又可进一步分为石英硫化物亚阶段和绿帘石-绿泥石亚阶段.基于蚀变及矿化特征认为,沙溪铜矿床的矿化始于钾硅酸盐阶段的晚期,石英硫化物亚阶段是黄铜矿主要的沉淀阶段,石英碳酸盐阶段也对成矿贡献了部分铜质.与世界上不同构造环境的典型斑岩铜矿床对比认为,沙溪矿床总体上与这些矿床的蚀变、矿化特征类似;与陆缘弧、岛弧、陆内碰撞造山后伸展环境矿床在矿体产出位置、蚀变分带方面相似;而由于围岩性质的差异,与板内环境的德兴矿床在矿体位置、蚀变分带方面存在差异,但是二者在脉体类型特别是与矿化关系密切的脉体特征上较为一致.因此,对于斑岩型矿床而言,构造背景可能控制了其岩浆的形成、演化以及含矿性,而岩浆岩最终定位的深度、围岩等条件则控制了其蚀变、矿化特征.  相似文献   
8.
Wu  Yun  Zhu  Shu-yun  Li  Xiao-zhao  Zhang  Hui  Huang  Zhen 《Natural Hazards》2019,96(1):353-368
Natural Hazards - In order to investigate the mechanisms of shaft lining deformation of coal mines in thick and deep alluvium, we selected Qianyinzi coal mine in the Huaibei mining area in the east...  相似文献   
9.
以商麻断裂为界,大别造山带分为东段和西段,西大别造山带是连接桐柏造山带和大别造山带的纽带。通过对几何学和运动学以及变质环境的研究表明:西大别造山带的形态为一个枢纽向西倾伏的巨型背形构造,且有圈层结构,层间存在滑脱面。西大别地区至少存在着3 期构造变形,第一期是南北边界剪切带的形成,第二期是层间滑脱面和榴辉岩透镜体的形成,第三期是晚期的岩体侵入。应力场的统计结果可知,西大别造山带主要受到近南北方向的挤压,统计结果真实地记录了西大别造山带形成时的古应力状态,对应着3 期变形的第一期。有限应变测量结果显示,从北向南岩石的变形强度存在着:强变形带→弱变形带→强变形带→弱变形带→强变形带这种强弱变形带交替出现的规律。通过白云母Ti温度计以及多硅白云母压力计结果显示西大别造山带中新县-红安地区岩石的变质条件为T = 450 ℃~620 ℃,P = 1.0~1.6 GPa,属于高压蓝片岩相到榴辉岩相。  相似文献   
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