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1.
郭家岭花岗闪长岩岩石地球化学特征表明其SiO2含量较高,为71.3%~73.28%,K2O=2.14%~4.29%,属于高钾钙碱性--钙碱性I型花岗岩。锆石LA--ICP--MS U--Pb年龄显示郭家岭花岗岩体成岩年龄为127.9±1.3 Ma,属早白垩世。岩石的Rb/Sr和Nb/Ta比值,以及暗色闪长质包体研究表明郭家岭花岗闪长岩为壳幔混合源,岩浆源区为具有幔源特征的新生镁铁质下地壳。结合区域地质分析认为郭家岭花岗闪长岩的形成与太平洋板块俯冲引起的大陆弧伸展作用最密切。  相似文献   
2.
扎木曲多金属矿位于唐古拉山北坡,长江源头的沱沱河一带。1/20万地球化学测量在该区圈定AS4甲1HgCu综合异常一处,对该综合异常作1/5万水系沉积物加密测量,将其分解为AS4-1~AS4-5五个子异常,进一步浓缩了找矿靶区。对分解后的重点子异常AS4-3采用土壤测量控制异常浓集中心部位,圈定了一条土壤元素组合异常带,异常重现性好,面积大,元素含量值显著提高。通过对土壤异常带作工程验证并圈出铅矿体9条。为此,地球化学勘查在本区寻找多金属矿是行之有效的,这为在唐古拉山地区寻找多金属矿产提供参考。  相似文献   
3.
“三江”北段沱沱河地区的成矿规律与找矿方向   总被引:1,自引:0,他引:1  
"三江"成矿带的北段沱沱河地区是中国首批整装勘查区之一,区域成矿规律和找矿方向亟待了解。研究表明,区内主要发育3期成矿事件,形成5种主要矿床类型。早期成矿发生在晚二叠世至早三叠世,为龙木错-双湖洋向北俯冲下的弧间或弧后盆地环境,形成开心岭火山岩容矿块状Fe(-Cu-Zn)矿床(VMS型);第二期成矿作用发生于新生代40~25 Ma期间,对应印-亚大陆晚碰撞环境,形成那日尼亚与钾质火山岩岩浆活动有关的脉状PbZn矿床、扎日根玢岩型铁矿床及扎拉夏格涌与碱性斑岩有关的热液脉状Pb-Zn矿床;第三期矿化出现在新生代23Ma以来,对应印-亚大陆后碰撞环境,形成以茶曲帕查为代表的密西西比河谷型(MVT)Pb-Zn矿床。综合分析表明,区内应优先寻找MVT型矿床,在区域逆冲带的前锋带中,老于新生代的碳酸盐岩内、碳酸盐岩与碎屑岩地层界面附近是找矿的主要方向;晚二叠世至早三叠世及晚三叠世地层中双峰式火山岩建造是寻找VMS矿床的有利部位;新生代闪长玢岩分布区的正磁异常、Cu化探异常、发育绿帘石和绿泥石化的地区有利于寻找玢岩型铁矿床;而热液脉状Pb-Zn矿床的成矿潜力有限。  相似文献   
4.
青藏高原中部茶曲帕查矿区铅锌矿化与张性碳酸盐岩角砾伴生。钻孔资料揭示,该套角砾岩在平面上、垂向上分布无规律,露头表现为杂乱堆垛,角砾空隙间常充填泥质物,与泥质物接触部位发育同沉积变形,说明角砾为古溶洞内坍塌形成。茶曲帕查矿区古溶洞内含有坍塌灰岩角砾和泥质充填物,分别发育不同形式的铅锌矿化。溶洞的形成很可能与地下水对碳酸盐岩的溶蚀有关,坍塌发生在早中新世,与五道梁组沉积同时发生。古溶洞成矿作用在青藏高原中部的提出,对认识该区矿床成因、区域铅锌找矿模式等方面均具有重要意义。  相似文献   
5.
以五道梁地区1∶20万水系沉积物测量更新数据为基础,以渐新统雅西错组为研究对象,利用地层汇水域水系沉积物测量元素原始数据进行了参数统计,通过相对丰度、R型聚类分析和因子分析,分析了地层中各元素的含量分布特征及元素间的亲疏关系,进一步浅析了地层在成矿中的作用.认为雅西错组高钙碳酸盐岩建造环境显著,Ba、Sr、Ag、As、Cd、Mo在地层中有不同程度的富集.地层有一定的含矿性,其中Ag趋向于与黏土岩伴随的硅质砂岩类中,其他在碳酸盐岩中.在后期岩浆热源作用下,主要成矿元素能进一步富集成异常或成矿.  相似文献   
6.
以地球化学块体理论为基础的方法和技术确定了沱沱河铅锌地球化学块体的下限和含量级次,对沱沱河地区铅锌元素的地球化学块体进行了划分,总结了地球化学块体在空间上的分布规律,通过研究地球化学块体内部结构,追踪大型至特大型矿床可能存在的地点。根据已知地区的矿产探明储量与地球化学块体的关系,计算了该地区成矿率,预测了区内铅锌矿资源潜力,同时指出在块体内还存在巨大的寻找铅锌矿产资源的潜力。  相似文献   
7.
The Duocaima carbonate-hosted Pb-Zn deposit is a newly found large deposit in the southern area of Qinghai Province.In this paper, the characteristics, genesis, significance to Pb-Zn mineralization of the widely developed breccias, and the ore-forming process have been carefully studied based on geological documentation of drilling holes, microscopic observations of petrography and microstructure and some stable isotope measurements.Based on the compositions of the clast and matrix, the breccias can be classified into three types: limestone clasts cemented by marl; limestone clasts with fine-grained calcareous materials; and limestone clasts cemented by hydrothermal calcite.The mineralization in the first type of breccia is weak, whereas it is strong in the latter two types of breccias.According to the locations of occurrence and structural characteristics of the breccias along with the relationship between the breccias and mineralization, part of the limestone clasts that are cemented by marl and outcrop in the contact zone between the Wudaoliang Formation(Nw) and the underlying Jiushidaoban Formation(Pj) are attributed to synsedimentary fault-genetic breccia, whereas the last of the limestone clasts that are cemented by marl and developed in the Jiushidaoban Formation(Pj) are attributed to the breccia generated by karst cave collapse; the limestone clasts with fine-grained calcareous materials and the limestone clasts cemented by hydrothermal calcite are attributed to breccia formed by hydrothermal dissolution.The breccia formed by karst collapse had consistently evolved for a long period of time, while the breccias with other origins were formed around the period of mineralization(i.e., about or slightly later than 20–16 Ma).The breccia generated by karst cave collapse and hydrothermal dissolution are somewhat related; the formation of the breccia from karst cave collapse provided open space for the later mineralization and reaction between hydrothermal fluids and host rocks, and the subsequent strong dissolution by hydrothermal fluids transformed some of the breccia formed earlier by karst cave collapse.Meanwhile, carbonate host rocks with breccias and brecciaed mineralization can be a potential sign of Mississippi Valley Type(MVT) deposits and important indicators for regional mineral exploration.The δ13CV-PDB, δ18OVSMOW, and 87Sr/86 Sr values of hydrothermal calcite in the Duocaima deposit range from 4.3‰ to 7.1‰, 14.9‰ to 20.1‰, and 0.707494 to 0.708185, respectively; the δ13CV-PDB, δ18OV-SMOW, and 87Sr/86 Sr values of the host limestones of the Jiushidaoban Formation range from 3.6‰ to 5.3‰, 18.0‰ to 20.5‰, and 0.707372 to 0.707945, respectively.The δ13CV-PDB and 87Sr/86 Sr values of hydrothermal calcite and limestone are similar, indicating single sources of C and Sr in this deposit, with the likely source being the limestone of the Jiushidaoban Formation.The minor scattering of the δ18OV-SMOW values suggests that different O isotope fluids underwent the isotope exchange reaction.The C-O-Sr isotope characteristics indicate that the host limestones experienced a dissolution and precipitation process during mineralization, which is beneficial to improving the porosity of host rocks and promoting the precipitation of metal sulfides.The δ34SV-CDT value of the breccia-type mineralization sulfides ranges from-30.4‰ to-0.3‰; that is, the δ34SV-CDT value is negative with considerable variation, illustrating that during the breccia-type mineralization process, the bacteriogenic reduction of sulfates provided the vast majority of sulfur, whereas the thermochemical reduction of sulfates was relatively unimportant.The brecciation that occurred as a result of karst cave collapse was mainly generated by the dissolution of groundwater; however, the brecciation related to hydrothermal dissolution and mineralization processes were caused by mixing of different fluids.  相似文献   
8.
通过介绍东昆仑夏日哈木铜镍硫化物矿床的发现,以及对矿床特征的初步研究,进一步阐明"小岩体成大矿"的地质事实及这一理论对勘查找矿工作的理论指导和实践意义。同时阐明该矿床的发现昭示区内该类型矿床具有巨大的成矿潜力,其对东昆仑地区寻找同类矿床具有重大指导意义。  相似文献   
9.
构造运动及其形态,不仅可为金矿的形成提供导矿和容矿空间,而且又是矿液运动的直接或间接的驱动力。区域深大断裂的形成、活动,地层的褶皱、错动都可有不同规模、不同产状、不同性质的次级断裂、裂隙及破碎带的产生,这些对金矿的形成都极为有利。本文通过对大场金矿的剖析,从构造角度阐述构造对金矿成矿的影响。  相似文献   
10.
青海沱沱河地区那日尼亚铅锌矿床 地质与地球化学研究   总被引:2,自引:0,他引:2  
那日尼亚铅锌矿床是在青藏高原近来发现的、与钾质火山岩岩浆活动有关的矿床.分析表明,新鲜赋矿火山岩siO2含量62.9% ~~68.6%,K2O含量5.1%~5.8%,属钾玄岩系列,其轻稀土和大离子亲石元素相对富集,Nb、Ta、Ti等元素强烈亏损,Sr/Y-Y图解投影点落入已报道的藏北钾质-超钾质岩分布范围之内,指示岩浆起源于富集地幔或受下地壳物质混染的软流圈地幔.矿床的矿体呈脉状出现在粗面岩中,由一系列细脉状的矿石构成,硫化物主要是方铅矿和黄铁矿,也含少量闪锌矿和黄铜矿,脉石矿物以石英为主,并发育方解石、白云石、绢云母,围岩蚀变以白云母化和黄铁矿化为主.石英中流体包裹体为盐水体系,均一温度为170~~300℃、盐度为2%~9%NaCleq(质量分数),指示成矿流体可能来自岩浆活动驱动的地表水;方铅矿δ34S值介于-0.1~1.7之间,铅同位素组成落入藏北钾质-超钾质岩石的组成范围内,指示硫和铅均来自赋矿的钾质火山岩.那日尼亚铅锌矿床与沱沱河地区碳酸盐岩容矿铅锌矿床的地质和地球化学特征差别明显,两者不是一套成矿系统的产物.  相似文献   
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