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51.
夏甸金矿床是胶西北地区典型的蚀变岩型金矿床,金矿化主要受招平断裂带控制。本文对夏甸金矿床进行了野外地质调查,三维地质建模和构造空间分析,以期从三维空间和勘查数据中厘清矿化分布规律、探明构造控矿作用。研究结果显示,夏甸金矿床矿化主要为蚀变岩型和硫化物脉型,主要受招平断裂带及其次级构造控制,在空间中呈现出不均一分布的特征。夏甸金矿床的矿化侧伏规律,在空间中存在差异性,其中南部为NE侧伏,中段侧伏规律不明显但分支复合特征明显,而北段呈SE侧伏。这种侧伏规律与招平断裂带主裂面在走向方向的转折密切相关。进一步的空间分析显示,夏甸金矿床不同类型的矿体是不同空间范围内构造变形差异的结果。  相似文献   
52.
塔克拉玛干沙漠地下水矿化度与电导率关系的研究   总被引:5,自引:0,他引:5  
吴诗怡 《中国沙漠》1996,16(4):374-378
用数理统计的方法推导水质矿化度与电导率的回归方程, 并绘制其关系曲线。经测定, 新疆塔克拉玛干沙漠84°E沿线水化学类型主要为Cl-·SO42--Na+, 通过推导得出, 25℃情况下, 当电导率为4.5~12ms/cm, 矿化度依电导率的回归方程为: y=-0.3016+0.6936x; 当电导率<5.4ms/cm, y=-0.171+0.6833x, 建立矿化度与电导率的关系后, 测定地下水的电导率, 即可获得待测样的矿化度, 为野外考察或定点观测提供获得地下水矿化度的简便、快速而准确的方法。  相似文献   
53.
东太平洋铁锰结核区微生物的丰度及其成矿作用研究   总被引:8,自引:3,他引:5  
于1994年4-11月东太平洋铁锰结核期探区,随向阳红09号船,采集了39个表层沉积物,12个上覆水和7个结核样,在现场用平板法测定了异养细菌和铁,锰细菌丰度,用稀释法(MPN法)测定硫酸盐还原菌丰度,在实验室对船上带回的异养细菌和锰细菌进一步纯分分离,进行了12项生化试验,对照伯杰氏手册第八版鉴定至属。为了探讨微生物在大洋成矿过程的作用,使用分光光度法,测定锰细菌对锰,铁离子的转化作用和不同培养  相似文献   
54.
新疆东部马庄山金矿成矿作用同位素年代学研究   总被引:30,自引:0,他引:30       下载免费PDF全文
李华芹  陈富文 《地质科学》1999,34(2):251-256
马庄山金矿位于新(疆)甘(肃)边境。地质、地球化学研究表明,马庄山金矿床受马庄山古火山机构控制,与矿区内同期火山-次火山作用有直接的成因联系,成因类型为浅成中-低温热液型。次火山岩及含金石英脉年代学研究表明,马庄山火山机构形成时代与金矿成矿时代均为中-晚石炭世:次流纹斑岩和次英安斑岩全岩及含金石英细(网)脉石英流体包裹体Rb-Sr等时线年龄分别为301±21Ma、303Ma±26Ma和298Ma±28Ma(95%置信度)。  相似文献   
55.
超大型铜镍硫化物矿床研究进展   总被引:4,自引:0,他引:4  
超大型铜镍硫化物矿床不仅赋存有巨大的铂族贵金属资源,而且赋存有非常重要的深源信息,对其成矿理论的多学科综合研究具有重要的理论和实际意义。通过对超大型铜镍硫化物矿床的产出特征、时空分布、构造环境、控矿条件、母岩浆系列、成矿机理等研究现状的总结,认为以下几方面研究具有较大潜力:(1)矿床成因;(2)通过构造—流体—岩浆—成矿动力学综合研究,揭示成矿机制与全球变化的内在关系;(3)元古宙板块构造演化与超大型矿床形成的关系。  相似文献   
56.
西天山石炭纪火山-沉积盆地铁锰矿成矿规律浅析   总被引:10,自引:1,他引:10  
西天山石炭纪火山-沉积盆地是在穆云库姆-克齐尔库姆-伊犁微板块上形成的陆缘盆地,在伊犁石炭—二叠纪裂谷带发展过程中,经历了拉张至稳定再拉张、火山活动剧烈→平静→强烈的地质构造及火山活动发展过程,控制了盆地内以铁为主的火山成矿作用、火山-沉积成矿作用及化学沉积成矿作用,形成了西天山海相火山-沉积型铁(锰)矿床,具有距火山活动中心由近到远,成矿类型由火山喷溢堆积型至火山沉积型再到化学沉积型的变化规律.  相似文献   
57.
吉林省夹皮沟金矿带几个重要地质问题的讨论   总被引:1,自引:0,他引:1       下载免费PDF全文
夹皮沟金矿带位于吉林省东南部桦甸地区。自1820 年发现以来,已累计探明黄金地质储量150 吨左右。该金矿带位于中朝古板块北缘东段与布列亚-佳木斯地块南缘的碰撞对接部位附近。区内发育5 条平行的NW 向含矿构造带,其北端均以锐角交汇于挥发河断裂。有别于前人的研究成果,本文提出夹皮沟金矿带恰好位于高级区与夹皮沟花岗-绿岩带的接触部位,形成以夹皮沟金矿化带为中心的矿化分带。夹皮沟金矿带为中生代成矿,夹皮沟NW 向弧形构造片理化带及其上盘扇状断裂系控制着金矿床的分布。在主要NW 构造带之间,还存在一系列与之平行的次级构造,它们与扇状断裂的交汇点及扇状构造系中的横向应力集中带是金矿化定位的有利部位。  相似文献   
58.
Tropical rivers display profound temporal and spatial heterogeneity in terms of environmental conditions. This aspect needs to be considered when designing a monitoring program for water quality in rivers. Therefore, the physico-chemical composition and the nutrient loading of the Upper Mara River and its two main tributaries, the Amala and Nyangores were monitored. Initial daily, and later a weekly monitoring schedule for 4 months spanning through the wet and dry seasons was adopted. Benthic macro-invertebrates were also collected during the initial sampling to be used as indicators of water quality. The aim of the current study was to investigate the physico-chemical status and biological integrity of the Upper Mara River basin. This was achieved by examining trends in nutrient concentrations and analyzing the structure, diversity and abundance of benthic macro-invertebrates in relation to varying land use patterns. Sampling sites were selected based on catchment land use and the level of human disturbance, and using historical records of previous water quality studies. River water pH, dissolved oxygen, electrical conductivity (EC), temperature, and turbidity were determined in situ. All investigated parameters except iron and manganese had concentration values within allowable limits according to Kenyan and international standards for drinking water. The Amala tributary is more mineralized and also shows higher levels of pH and EC than water from the Nyangores tributary. The latter, however, has a higher variability in both the total phosphorus (TP) and total nitrogen (TN) concentrations. The variability in TP and TN concentrations increases downstream for both tributaries and is more pronounced for TN than for TP. Macro-invertebrate assemblages responded to the changes in land use and water quality in terms of community composition and diversity. The study recommends detailed continuous monitoring of the water quality at shorter time intervals and to identify key macro-invertebrate taxa that can be used to monitor changes of the water quality in rivers of the Mara basin as a result of anthropogenic changes.  相似文献   
59.
60.
The Changjiang uranium ore field, which contains >10,000 tonnes of recoverable U with a grade of 0.1–0.5%, is hosted by Triassic two-mica and Jurassic biotite granites, and is one of the most important uranium ore fields in South China. The minerals associated with alteration and mineralization can be divided into two stages, namely syn-ore and post-ore. The syn-ore minerals are primarily quartz, pitchblende, hematite, hydromica, chlorite, fluorite, and pyrite; the post-ore minerals include quartz, calcite, fluorite, pyrite, and hematite. The fluid inclusions of the early syn-ore stage characteristically contain O2, and those of the late syn-ore and post-ore stage contain H2 and CH4. The fluid inclusions in quartz of the syn-ore stage include H2O, H2O–CO2, and CO2 types, and they occur in clusters or along trails. Homogenization temperatures (Th) for the H2O–CO2 and two-phase H2O inclusions range from 106 °C to >350 °C and cluster in two distinct groups for each type; salinities are lower than 10 wt% NaCl equiv. The ore-forming fluids underwent CO2 effervescence or phase separation at ∼250 °C under a pressure of 1000–1100 bar. The U/Th values of the altered granites are lowest close to the ore, increase outwards, but subsequently decrease close to unaltered granites. From the unaltered granites to the ore, the lowest Fe2O3/FeO values become lower and the highest values higher. The REE patterns of the altered granites and the ores are similar to each other. The U contents of the ores show a positive correlation with total REE contents but a negative correlation with LREE/HREE ratios, indicating the pitchblende is REE-bearing and selectively HREE-rich. The δEu values of the ore show a positive correlation with U contents, indicating the early syn-ore fluids were oxidizing. The δCe values show a negative correlation, indicating the later mineralization environment became reducing. The water–rock interactions of the early syn-ore stage resulted in oxidization of altered granites and reduction of the ore-forming fluids, and it was this reduction that led to the uranium mineralization. During alteration in the early syn-ore stage, the oxidizing fluids leached uranium from granites close to faults, and Fe2O3/FeO ratios increased in the alteration zones. The late syn-ore and post-ore alteration decreased the Fe2O3/FeO ratios in the alteration zones. The δ18OW–SMOW values of the ore-forming fluids range from −1.8‰ to 5.4‰, and the δDW–SMOW values range from −104.4‰ to −51.6‰, suggesting meteoric water. The meteoric water underwent at least two stages of water–rock interaction: the first caused the fluids to become uranium-bearing, and the second stage, which was primarily associated with ore-bearing faults, led to uranium deposition as pitchblende, accompanied by CO2 effervescence.  相似文献   
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