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71.
Houfangzi graphite deposit is located in the middle of the graphite metallogenic belt in the northern margin of North China Block in Hebei Province, which belongs to regional metamorphic type graphite deposit. In this paper, through rock-mineral determination, IP ladder sections and exploratory trench survey, the authors have discussed its metallogenic geological characteristics and ore body characteristics, and analyzed its ore genesis. The research results show that the ore bodies are mainly in the graphitic marble of Dongjingzi Formation of Hongqiyingzi Group, which are stratified and controlled by layers, with NE trend and NNW inclination. The IP anomaly shows that Houfangzi graphite deposit is characterized by low resistance and high polarization. Ore bodies are stable and of big scale, and their fixed carbon content ranges from 1.42% to 3.28%, which has the potential to be a large graphite deposit. The ore-forming material came from granulite and graphite marble, while the regional metamorphism is the main mineralization of Houfangzi graphite deposit, with the enrichment and increasement caused by late magmatic activity and migmatization.  相似文献   
72.
《China Geology》2021,4(4):686-719
The Jiaodong Peninsula in Shandong Province, China is the world’s third-largest gold metallogenic area, with cumulative proven gold resources exceeding 5000 t. Over the past few years, breakthroughs have been made in deep prospecting at a depth of 500–2000 m, particularly in the Sanshandao area where a huge deep gold orebody was identified. Based on previous studies and the latest prospecting progress achieved by the project team of this study, the following results are summarized. (1) 3D geological modeling results based on deep drilling core data reveal that the Sanshandao gold orefield, which was previously considered to consist of several independent deposits, is a supergiant deposit with gold resources of more than 1200 t (including 470 t under the sea area). The length of the major orebody is nearly 8 km, with a greatest depth of 2312 m below sea level and a maximum length of more than 3 km along their dip direction. (2) Thick gold orebodies in the Sanshandao gold deposit mainly occur in the specific sections of the ore-controlling fault where the fault plane changes from steeply to gently inclined, forming a stepped metallogenic model from shallow to deep level. The reason for this strong structural control on mineralization forms is that when ore-forming fluids migrated along faults, the pressure of fluids greatly fluctuated in fault sections where the fault dip angle changed. Since the solubility of gold in the ore-forming fluid is sensitive to fluid pressure, these sections along the fault plane serve as the target areas for deep prospecting. (3) Thermal uplifting-extensional structures provide thermodynamic conditions, migration pathways, and deposition spaces for gold mineralization. Meanwhile, the changes in mantle properties induced the transformation of the geochemical properties of the lower crust and magmatic rocks. This further led to the reactivation of ore-forming elements, which provided rich materials for gold mineralization. (4) It can be concluded from previous research results that the gold mineralization in the Jiaodong gold deposits occurred at about 120 Ma, which was superimposed by nonferrous metals mineralization at 118–111 Ma. The fluids were dominated by primary mantle water or magmatic water. Metamorphic water occurred in the early stage of the gold mineralization, while the fluid composition was dominated by meteoric water in the late stage. The S, Pb, and Sr isotopic compositions of the ores are similar to those of ore-hosting rocks, indicating that the ore-forming materials mainly derive from crustal materials, with the minor addition of mantle-derived materials. The gold deposits in the Jiaodong Peninsula were formed in an extensional tectonic environment during the transformation of the physical and chemical properties of the lithospheric mantle, which is different from typical orogenic gold deposits. Thus, it is proposed that they are named “Jiaodong-type” gold deposits.©2021 China Geology Editorial Office.  相似文献   
73.
《China Geology》2021,4(1):147-177
The Qinghai-Tibet Plateau (also referred to as the Plateau) has long received much attention from the community of geoscience due to its unique geographical location and rich mineral resources. This paper reviews the aeromagnetic surveys in the Plateau in the past 60 years and summarizes relevant research achievements, which mainly include the followings. (1) The boundaries between the Plateau and its surrounding regions have been clarified. In detail, its western boundary is restricted by West Kunlun-Altyn Tagh arc-shaped magnetic anomaly zone forming due to the arc-shaped connection of the Altyn Tagh and Kangxiwa faults and its eastern boundary consists of the boundaries among different magnetic fields along the Longnan (Wudu)-Kangding Fault. Meanwhile, the fault on the northern margin of the Northern Qilian Mountains serves as its northern boundary. (2) The Plateau is mainly composed of four orogens that were stitched together, namely East Kunlun-Qilian, Hoh-Xil-Songpan, Chamdo-Southwestern Sanjiang (Nujiang, Lancang, and Jinsha rivers in southeastern China), and Gangdese-Himalaya orogens. (3) The basement of the Plateau is dominated by weakly magnetic Proterozoic metamorphic rocks and lacks strongly magnetic Archean crystalline basement of stable continents such as the Tarim and Sichuan blocks. Therefore, it exhibits the characteristics of unstable orogenic basement. (4) The Yarlung-Zangbo suture zone forming due to continent-continent collisions since the Cenozoic shows double aeromagnetic anomaly zones. Therefore, it can be inferred that the Yarlung-Zangbo suture zone formed from the Indian Plate subducting towards and colliding with the Eurasian Plate twice. (5) A huge negative aeromagnetic anomaly in nearly SN trending has been discovered in the middle part of the Plateau, indicating a giant deep thermal-tectonic zone. (6) A dual-layer magnetic structure has been revealed in the Plateau. It consists of shallow magnetic anomaly zones in nearly EW and NW trending and deep magnetic anomaly zones in nearly SN trending. They overlap vertically and cross horizontally, showing the flyover-type geological structure of the Plateau. (7) A group of NW-trending faults occur in eastern Tibet, which is intersected rather than connected by the nearly EW trending that develop in middle-west Tibet. (8) As for the central uplift zone that occurs through the Qiangtang Basin, its metamorphic basement tends to gradually descend from west to east, showing the form of steps. The Qiangtang Basin is divided into the northern and southern part by the central uplift zone in it. The basement in the Qiangtang Basin is deep in the north and west and shallow in the south and west. The basement in the northern Qiangtang Basin is deep and relatively stable and thus is more favorable for the generation and preservation of oil and gas. Up to now, 19 favorable tectonic regions of oil and gas have been determined in the Qiangtang Basin. (9) A total of 21 prospecting areas of mineral resources have been delineated and thousands of ore-bearing (or mineralization) anomalies have been discovered. Additionally, the formation and uplift mechanism of the Plateau are briefly discussed in this paper.©2021 China Geology Editorial Office.  相似文献   
74.
中国锡矿成矿规律概要   总被引:11,自引:0,他引:11  
我国锡矿资源丰富,矿床类型比较齐全。在锡矿资源储量中占有较大比重的主要是锡石—硫化物型、矽卡岩型和石英脉型;从开采和利用角度来说,最为重要的是锡石—硫化物型和石英脉型。锡石—硫化物型主要集中在桂北、滇东等地,矽卡岩型集中分布在南岭中段湘南等矿集区、石英脉型则主要集中在华南地区的闽西、赣中、粤北、湘南等地;成矿时代以中生代最为重要;成矿大地构造背景以造山运动之后的大陆环境为主,构造变动剧烈,深大断裂纵横交错,岩浆活动频繁,特别是与锡成矿作用关系密切的中生代花岗岩类非常发育,最具特色。本次在对全国873处锡矿矿产地资料进行系统梳理的基础上,深入总结了全国锡矿的成矿规律,厘定出20个以锡为主或锡较为重要的矿床成矿系列,认为锡石—硫化物型、矽卡岩(—云英岩型)、石英脉型和岩体型4类锡矿类型,应该作为重点预测类型,并划分出44个成锡带,提出了19个重要工作部署区,并编制了中国成锡带图、中国锡矿成矿规律图等系列图件,为潜力评价预测工作提供了理论依据。  相似文献   
75.
甘露  罗代洪  吴淑琪 《岩矿测试》2015,34(1):111-117
金属矿产的勘查、评价、开发与综合利用要求对不同矿石品位与精矿的完整系列品质进行评价检测和仲裁测试。钨矿石和锡矿石作为金属矿的重要矿种,在客观上要求相关实验室应具备不同含量品级钨矿石和锡矿石组分的检测能力。本文按照国家认证认可监督委员会(CNCA)编号为CNCA-13-A14的钨矿石和锡矿石化学成分分析能力验证计划的要求,对中国30个省市、自治区的58个实验室提供的8个元素(W、Sn、Cu、Pb、Zn、Mo、Sb、Bi)的测定结果进行能力验证分析,采用稳健统计法,根据Z比分数判定参加实验室的检测能力。根据Z比分数≤2为满意结果的判定标准,51个实验室全部结果的Z比分数≤2,总体结果满意率(各元素的Z比分数均≤2的实验室占总实验室的比例)为88%,出现可疑和离群结果的实验室占12%。总体上钨矿石和锡矿石中元素Sb、Pb、Zn的满意率较高(其中锡矿石的Zn测定结果全部满意),W、Bi稍差;钨矿石各元素的检测水平差异小,整体结果好于锡矿石。钨矿石和锡矿石分析能力验证结果产生离群值的原因,一方面是实验室的测试水平存在差异;另一方面是各实验室采用的检测方法分散,有化学分析方法和仪器分析方法,化学分析方法检测步骤多,仪器分析方法方便快速,逐渐成为例行检测方法,两类方法的影响因素都较多。本文提出,提高实验室的检测水平和检测能力,需要适当统一检测方法,提高方法掌握的熟练程度,避免仪器状态对分析结果的影响,确保检测结果的一致性和准确性。  相似文献   
76.
铅锌矿多元素同时测定中,样品预处理过程受多种不同因素的影响,单因素试验往往无法同时为多因素实验提供合理的优化方案。本文采用盐酸-硝酸溶矿,考察了样品预处理过程中混合酸配比、混合酸体积、消解时间及消解温度对消解效果的影响,利用正交试验设计及极差分析确定了最优消解条件:盐酸-硝酸混合酸配比3∶1,混合酸体积10 m L,消解时间120 min,消解温度90℃,用电感耦合等离子体发射光谱法同时测定铅锌矿中15个主次量元素(铅锌铜锰砷银铋镉钴镍镓铟钼锗锑)的含量。在最优条件下,用富铅锌矿石国家标准物质(GBW 07165)进行试验,大多数元素的精密度(RSD,n=12)和准确度小于5%,方法检出限为0.0019~0.048μg/g。基于铅锌矿主要是以硫化物形式存在,采用一系列硫化物国家标准物质验证方法的准确度及可行性,检测结果基本都在标准值的误差范围内。应用该方法分析湖南某矿区中大批量铅锌矿样品,标样质量统计合格率为100%,密码质量统计合格率大于97%。  相似文献   
77.
“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   
78.
多龙矿集区位于班公湖_怒江成矿带西段、羌塘地块南缘的岩浆弧中。过去十多年来,西藏地勘局第五地质大队在多龙矿集区内已发现和评价了多不杂、波龙、地堡那木岗、拿若、荣那等5处大型、超大型铜金多金属矿床,目前已探明的铜资源量近1000万吨,金300余吨。区内以斑岩型铜金矿床为主,兼有斑岩_浅成低温热液型和斑岩_角砾岩型矿化组合。研究发现,矿区黄铁矿的δ34S值变化于-2.2‰~2.3‰之间,平均为0.2‰,峰值在-1‰~1‰之间,塔式效应明显,接近幔源硫,显示成矿物质来源于深部岩浆;成矿温度介于250~420℃之间,成矿深度1~5 km,成矿流体为残余岩浆流体,大气降水在成矿过程中的作用不明显。作者根据多年的勘查实践,总结出多龙矿集区斑岩型铜金矿最有效的找矿勘查方法技术组合是:地质+化探(水系沉积物)+物探(高精度磁测、激电中梯)+钻探。  相似文献   
79.
自动电位滴定技术精确测定铜矿石中高含量铜的方法研究   总被引:2,自引:2,他引:0  
铜矿石中百分含量铜的分析通常采用手动目视滴定法,该方法借助化学指示剂判定终点,存在终点判断和人为操作等误差,精密度、可靠性相对较差。基于此,本文建立了精确测定铜矿石中高含量铜的分析方法,采用智能型自动电位滴定仪自动判定终点,高分辨加液器精确控制硫代硫酸钠标准溶液加入量至0.001 m L,并且通过加大碘化钾用量使得滴定中产生的碘化亚铜被高浓度的I-溶解,消除对碘的吸附影响。本法应用于铜含量为24.2%~59.09%的铜精矿、黄铜矿、铅黄铜国家标准物质分析,相对标准偏差(RSD,n=10)0.3%,极差仅为0.13%、0.21%、0.29%,优于手动目视滴定法。本法提高了铜矿石分析的自动化程度,适用于精确测定铜含量大于0.5%尤其是10%以上的铜矿石。  相似文献   
80.
湘西北地区铅锌矿床成矿地质特征及矿床成因研究   总被引:3,自引:1,他引:2  
湘西北铅锌矿带属于中国16个重点成矿区带之湘西-鄂西成矿带的南西段,区内成矿地质条件优越,形成保靖、洛塔、花垣渔塘、凤凰4个矿田。文章在野外考察和室内研究的基础上,以洛塔矿田中的下光荣、江家垭等铅锌矿床、花垣渔塘矿田中的李梅铅锌矿床为例,从地层、岩性、构造等分析入手,采用同位素测试、包裹体分析等手段,对湘西北铅锌矿带的成矿地质特征及成矿机制进行了探讨,认为区内成矿物质主要来源于寒武纪地层,成矿作用过程中,油田卤水在构造作用下的大规模运移、循环,导致了成矿物质的富集和沉淀,主要成矿时代为加里东期。  相似文献   
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