首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 46 毫秒
1.
中国银矿的资源特征及成矿规律概要   总被引:1,自引:0,他引:1  
中国银矿资源丰富,成矿地质条件优越,主要以共伴生为主,近年来独立银矿找矿也取得一些进展。本文系统搜集了国内外银矿数量与规模、储量和分布等内容,梳理了中国银矿资源分布及储量分布规律,总结了中国银矿资源特点。在对全国490处银矿矿产地资料系统梳理的基础上,深入总结了中国银矿的成矿规律,划分了海相火山沉积型、陆相火山次火山岩型、矽卡岩型、热液型(脉型和层控型)、沉积变质型、沉积型和新生风化淋积型等7个银矿预测类型,其中前4个应该作为重点预测类型,并划分出32个成银带,编制了"中国成银带分布图",为中国银矿资源潜力评价和勘查部署提供了理论依据。  相似文献   

2.
王静纯  陈民扬 《地质论评》1999,45(7):167-173
我国与火山作用有关的银矿床占大、中型银矿床总数的33.5 %。燕山旋回是我国与火山岩和潜火山岩有关的银矿最重要的成矿期。这类银矿几乎都产于深大断裂边缘或次级构造交汇部位、 地槽区海相火山活动地带及地台活化区陆相火山活动地带。硅化和钠化与银矿化最为密切。矿液中的Au、Pb、Sc、Mn、Cd对银的成矿作用有积极影响。银在矿石中的分布特点显示,矿石中95%以上的银呈独立银矿物存在,方铅矿、闪锌矿和黄铜矿是银的最重要载体矿物,这为银的充分回收利用提供了地质依据。  相似文献   

3.
特大型银矿床地质特征及找矿方向   总被引:1,自引:0,他引:1  
特大型银矿床在资源占有量上占举足轻重的地位,使之已经成为近年来重要的研究课题之一.从已知的国内外特大型银矿床入手,在成矿时间、空间以及成矿特征方面进行了深入的研究.提出了特大型银矿床的主要成矿地质特征、矿床类型划分方案及在我国的找矿方向.概括如下:(1)已知特大型银矿床均分布于环太平洋成矿带内,主要受控于中生代、新生代的火山岩带和裂谷带之中,多数矿床与中酸性-酸性岩浆活动有关;(2)特大型银矿床以成矿系列为主要线索,划分为浅成低温热液型、斑岩型、矽卡岩型和5元素型;(3)中国在中新生代火山岩及裂谷发育地区,如大兴安岭-太行山带等,具有特大型银矿床的成矿潜力.  相似文献   

4.
西天山是我国古生代造山带重要的金、铜矿成矿单元之一,具有Au、Cu地球化学场.各种地球物理场也显示具有良好的金、铜矿成矿地质背景.金、铜矿主要生成于海西期的构造岩浆地质热事件中,形成了浅成低温热液型和韧性剪切带型金矿以及海底火山喷气热水沉积型、矽卡岩型、斑岩型、陆相火山热液充填型铜矿.可划分出赛里木铜金成矿带、吐拉苏也里莫墩金成矿带、察布查尔铜成矿带及胜利达坂金成矿带.主要矿床有阿希金矿、望峰金矿、喇嘛苏铜矿和预须开普台铜矿.  相似文献   

5.
全国火山岩型铀矿资源潜力评价   总被引:7,自引:0,他引:7  
火山岩型铀矿床均产于古陆壳之上的酸性(或偏碱性)陆相火山岩系中,文章根据中国陆相火山岩系的产出环境,结合铀矿床、矿点及矿化点的分布,划分出6条火山岩型铀矿成矿带和8条火山岩型铀矿远景带(预测工作区),对铀矿化集中区进一步划分出21个预测区。根据含矿主岩及控矿构造特征,将火山岩型铀矿床分为5个亚类、16个矿床式(29个典型矿床),建立了成矿模式,并在此基础上划分出4个预测类型,总结了火山岩型铀矿的成矿要素、预测要素及成矿规律。对14个预测工作区和21个预测区编制了系列图件,圈出了预测工作区靶区近200个,并分别采用数量化理论Ⅰ、品位吨位法、体积法及德尔菲法对各预测工作区和预测区500m以浅及1 000m以浅的铀矿资源量进行了估算。编制了火山岩型铀矿勘查工作部署图,对今后铀矿地质工作及铀矿大基地建设提出建议。  相似文献   

6.
《China Geology》2022,5(4):595-613
By the end of 2020, 83 silver deposits (or ore occurrences), including four super-large-scale deposits, nine large-scale deposits, 33 medium-scale deposits and 37 small-scale deposits or ore occurrences, have been proved. The amount of silver metal exceeds 86000 t with average grade of 100 g/t, which makes Daxing’ anling region one of the the most important silver ore belt in China. However, the metallogenic characteristics and metallogenesis need to be clarified. The silver deposits in the study area are classified into three main types, which are magmatic hydrothermal vein type, continental volcano-subvolcanic type and skarn type, respectively. The supergiant deposits include the Shuangjianzishan deposit (silver metal amount of 15214 t with average grade of 138 g/t), the Baiyinchagandongshan deposit (silver metal amount of 9446 t with average grade of 187 g/t), the Huaobaote deposit (silver metal amount of 6852 t with average grade of 170 g/t), and the Fuxingtun deposit (silver metal amount of 5240 t with average grade of 196 g/t). The silver deposits are mainly distributed in the central and south of the Daxing’anling area, and mainly formed in the Yanshanian period. The silver polymetallic deposits in the Daxinganling area are significantly controlled by regional faults and the junction zone of volcanic rock basins and their margins. The north-east trending deep faults are the most important ore-controlling structures in this area. The distribution of silver polymetallic deposits along the main faults is obvious, and the intersection area of multiple groups of faults often form important mine catchments. The Permian is the most important ore-bearing formation in this area, but some important silver polymetallic deposits occur in Mesozoic volcanic basins or pre-Mesozoic strata. The magmatic rocks related to mineralization are mainly intermediate acidic or acidic intrusions, intermediate acidic lavas, pyroclastic rocks, and small intrusions of ultra-shallow or shallow facies of the Yanshanian Period. The mineralization element combination is mainly determined by the elemental geochemical background of surrounding rocks or source layers. In addition, the type of deposit, the distance from the mineralization center, and the degree of differentiation of ore-forming rock mass are also important influence factors. The article analyzes the prospecting prospects of each silver deposit type in the study area, discusses the relationship between mineralization center and deep prospecting, and proposes that porphyry silver deposits should be paid attention to. In the prospecting and exploration of silver deposits, comprehensive evaluation and multi-target prospecting need to be strengthened because silver can coexist or be associated with a variety of metals.©2022 China Geology Editorial Office.  相似文献   

7.
中国存在两种类型的VHMS型银矿床.其一为裂谷VHMS型银矿床,产于大陆裂谷构造环境中,受碱性橄榄玄武岩系列火山活动控制.银、铜为主要成矿元素;其二为岛弧VHMS型银矿床,产于岛弧带之上,其成矿作用与岛弧钙碱性系列火山活动关系密切.两种银矿床分别就位于粗安岩和流纹岩之中,它们的主成矿作用均发生于整个火山活动的晚期阶段.  相似文献   

8.
我国既是钴矿资源消费大国,又是钴矿资源进口大国,受新能源电动汽车工业的影响,近年来钴矿资源得到越来越多的关注.为了科学地评估我国钴矿资源潜力,指导找矿勘查部署工作,立足国内,提高我国钴矿资源的保障能力,笔者2019—2021年开展了9个重点省(自治区)的钴矿资源潜力评价工作.本文从我国钴矿床分布和地质特征角度,先以成矿地质作用为主线,厘定我国找矿预测矿床类型,包括与沉积地质作用有关的风化型、化学沉积型、砂岩型和海底喷流沉积型,与火山地质作用有关的海相火山岩型、陆相火山岩型,与侵入岩浆地质作用有关的岩浆型、矽卡岩型(接触交代型)、热液脉型和斑岩型,与变质地质作用有关的沉积变质型,以及少量与大型变形地质作用有关的变质核杂岩型;进而梳理并总结了各类型钴矿有关的成矿地质体.通过分析我国钴矿的矿床地质特征和时空分布规律,综合地质、物探、化探和遥感信息等预测要素,建立找矿预测模型,并在此基础上圈定找矿远景区,估算资源量.结果表明:我国钴矿包括风化型镍钴矿、海底喷流沉积型铜钴矿、海相火山岩型铁铜钴矿、海相火山岩型块状硫化物铜锌钴矿、岩浆型铜镍钴矿和热液脉型钴矿6种主要找矿预测类型;圈定416个钴矿最小预测区,圈定64个找矿远景区,优选99个找矿靶区,提出下一步勘查建议;9个重点省(自治区)累计查明钴资源储量45.3万t,预测钴资源量约420万t.  相似文献   

9.
西藏冈底斯造山带西段铁铜多金属(金、银)成矿远景   总被引:1,自引:0,他引:1  
综合近年来在西藏冈底斯地区地质与矿产勘查工作所取得的新成果,在对区域成矿地质背景和成矿条件进行初步分析与对比研究的基础上,指出冈底斯造山带西段的地质构造演化过程、成矿构造环境、与铜铁铅锌(金、银)成矿作用有关的花岗岩类岩体的成岩时代、岩石类型及其岩石化学和成矿元素含量方面均可与东段进行对比,显示西段同样具有巨大的找矿潜力和资源远景.区内的优势或潜在优势金属矿种是铜、铁、铅、锌和金(银).它们的成因类型主要是与中酸性岩浆侵入作用有关的矽卡岩型、斑岩型和热液型(包括破碎带蚀变岩型),其次为火山热液型.在总结区内已知矿床(点)成矿特征和进行区域成矿区(带)划分的基础上,优选出江巴复式花岗岩基的西缘等7个成矿远景区,并对各远景区提出了进一步勘查工作的建议.  相似文献   

10.
火山活动与金矿床   总被引:2,自引:2,他引:2       下载免费PDF全文
火山活动不仅对铁、铜多金属矿床的形成具有重要意义,而且对金矿形成也是至关重要的。笔者多年在火山岩分布区的工作的整理大量国内外大型超大型矿床矿田地质资料,深切地认识到火山作用在金矿形成过程中的重要意义。本文将从金矿床地质成因类型划分及其规模和资源量、各类型矿床的地质条件分析来说明这一认识,并初步总结了找矿工作中应注意的问题和标志,试图来推动火山岩地区金矿找矿工作。由于陆相火山岩金矿较为直观,因此本文着墨较少,而着重说明海底火山活动与金矿形成的内在联系。  相似文献   

11.
牛翠祎  刘烊  张岱 《地学前缘》2018,25(3):1-12
为了摸清全国金矿资源潜力,科学合理地部署金矿地质勘查工作,在全国金矿资源潜力评价成果的基础上,总结了金矿成矿规律、时空分布及资源潜力特征,跟踪金矿勘查进展,提出金矿勘查部署建议。中国金矿床虽以小型居多,但大中型金矿床的资源储量约占80%。金矿床在中生代呈大规模成矿特征,其矿床数和资源储量均居主要地位,其次为新生代、晚古生代、中新元古代、早古生代。金矿床在空间上呈区域集中分布特征,根据成矿地质背景、成矿条件和金矿床空间分布,结合地球物理、地球化学特征、预测资源量,修订了金矿成矿区带划分方案,确定了57个Ⅲ级金矿成矿区带,其中胶东、小秦岭-伏牛山、滇黔桂、西秦岭、燕辽、松潘-摩天岭、东秦岭、长江中下游、丽江-哀牢山和吉南-辽东成矿区带,其查明资源储量和预测资源量在全国均居前列。以服务于矿产资源潜力评价为目的,提出了金矿预测类型划分方案,将金矿床类型归纳为12类,分别为与中深成侵入岩有关的热液型、微细浸染型、构造破碎蚀变岩型、陆相火山岩型、变质碎屑岩地层中热液型、斑岩型、夕卡岩型、砂金型、花岗绿岩型、海相火山岩型、风化壳型、砾岩型,其中以前5种矿产预测类型为主。在总结金矿床地质背景、地质特征和找矿标志的基础上,建立主要类型金矿预测评价模型。全国金矿资源潜力评价预测金资源量31 125.6 t,预测深度大多小于1 000 m,50%的预测资源量分布于已知矿床外围及深部。根据资源潜力评价成果,结合近年来金矿勘查取得新的找矿进展,找矿主攻矿床类型为中深成侵入岩有关的热液型、微细浸染型、构造破碎蚀变岩型、陆相火山岩型;中国东部胶东、小秦岭-伏牛山、西秦岭、滇黔桂为金矿重点勘查区带,已知矿床深部和外围仍是金矿重点找矿地段;西部地区如东昆仑、巴颜喀拉、冈底斯、班公湖-怒江、丽江-哀牢山等区带的金矿勘查突破,基础性地质勘查和科研工作投入,为西部地区金矿勘查开发提供理论和技术支撑,有利于开创西部地区金矿勘查的新局面。  相似文献   

12.
The Metallogenetic Regularities of Lithium Deposits in China   总被引:2,自引:0,他引:2  
Lithium resources support the development of high-technology industries. China has abundant lithium resources which are mainly distributed in Tibet,Qinghai,Sichuan and Jiangxi. Salt lakes in China have significant lithium reserves,but lithium is mainly produced from hard rock lithium deposits because the extraction from salt lakes requires further improvements. The hard rock lithium deposits mainly occur in granitic pegmatite in the Altay region of Xinjiang and the Jiajika deposit in western Sichuan Province; they mainly formed in the Mesozoic and occurred in a relatively stable stage during orogenic processes. On the basis of the information from 151 lithium deposits or spots,14 lithium metallogenic series were identified,and granitic pegmatite,granite,and sedimentary types were considered to be the main prediction types of lithium resources. Twelve lithium mineralization belts were divided and a series of maps showing the lithium metallogenetic regularity in China were drawn. We conclude that the hard rock and brine type of lithium resources possibly have a similar lithium source related to magmatism. The metallogenic features of the lithium in China were related with the distinct history of tectonic-magmatic activity in China. This study benefits the assessment of,and prospecting for,lithium resources in China.  相似文献   

13.
联生矿床是指在内生和外生因素共同作用下,在地表或地下一定深度所形成的矿床.根据成矿要素的配置关系,联生矿床可以分为内源外成和外源内成两种类型;根据宏观地质环境可分为海相和陆相两类.海底火山喷气(喷流)沉积矿床(热水沉积矿床)是典型的海相联生矿床,陆相油气资源和地热资源属于陆相联生矿床,而陆相火山-次火山高度开放型的容矿构造中通过流体的沸腾浓缩形成的浅成高温热液矿床也具有联生矿床的属性.联生矿床概念的提出有助于对成矿物质运动时空结构的全面理解.  相似文献   

14.
The superlarge continental volcanic rock-type uranium deposits,which were discovered abroad long ago,have not ye been reported up to now in China.This is an important problem that needs to be urgently solved by uranium geologists at present.In this paper,on the basis of analyzing the metallogenic settings and geological conditions of the superlarge continental volcanic rock-type uranium deposits discovered in the world along with the metallogenic characteristics of those of the same type in China,the space-time distribution patterns of continental volcanics and the metallogenic potential of main tectono-volcanic belts in China are discussed,and a synthetic conclusion has been drawn that there is a possibility to discover the superlarge continental volcanic rock-type uranium deposits in China.Moreover,it is evidenced that the Ganhang,Nanling,Yanliao,Da Hinggan Ling and other tectono-volcanic belts possess favorable geological conditions for the formation of ssuperlarge ore deposits of the continental volcanic rock type.The intersecting and overlapping locations of the aforementioned main belts with other tectono-volcanic(-intrusive)belts are the most potential areas where the superlarge continental volcanic rock-type uranium deposits would be found.  相似文献   

15.
本文在前人研究的基础上,概述了地层、构造和岩浆岩对我国银矿产出和分布的控制特点和规律:银矿赋矿地层以泥盆系最多,其次是中元古界、石炭系等,按赋矿岩性则以碳酸盐岩最多,变质岩次之;古老地块边缘裂陷槽和增生带、区域性深大断裂及多组构造汇聚部位及陆相断陷盆地是我国银矿产出和分布的重要控制因素;海相火山岩、陆相火山岩、侵入岩控制着我国不同地区和类型的银矿产出。分析了我国大型、超大型银矿的找矿前景和方向,提出川西义敦岛弧带、川滇黔接壤地区和大兴安岭成矿带是大型、超大型银矿的重要找矿区,继续加强我国陆相火山岩型大型、超大型银矿的寻找和研究;重视在萤石矿床分布区、黑色岩系分布区找银矿及火山岩地区找银锰型矿床;充分利用银矿找钨、锡等其他矿种。  相似文献   

16.
戴云山构造带的断裂活动、岩浆活动及火山作用强烈,不同期次的岩浆侵入和火山活动对Au、Ag、Cu、Pb、Zn矿床的形成起着一定的控制作用.元古界变质基底和上古生界在火山岩中呈"天窗"出露.戴云山构造带内主要有层间破碎带蚀变岩型金矿床、沉积变质-热液叠加改造型铅锌银矿床、接触交代型矿床、斑岩型铜(钼)矿床、火山热液型矿床.研究表明:晋宁-加里东期是该区最重要的成矿期,燕山晚期为另一重要成矿期.区域断裂、褶皱构造、构造界面以及2组构造的交汇都对矿床的产出起着重要的控制作用.  相似文献   

17.
中国新疆矿床成矿系列类型   总被引:6,自引:0,他引:6  
研究认为在不同时代、不同地质构造单元中重复出现的矿床成矿系列,可称为矿床成矿系列类型。新疆主要矿床成矿系列类型带有鲜明的古生代造山带成矿作用特点,它们联系于新疆各造山带古生代地壳发展的拉张型过渡壳-洋壳-汇聚型过渡壳-古生代新陆壳的各特定阶段,与各阶段地质构造作用密不可分。矿床成矿系列类型本身也随着地壳发展、地壳成熟度的提高而有规律地演化  相似文献   

18.
Long-standing controversy persists over the presence and role of iron–rich melts in the formation of volcanic rock-hosted iron deposits. Conjugate iron–rich and silica–rich melt inclusions observed in thin-sections are considered as direct evidence for the presence of iron-rich melt, yet unequivocal outcrop-scale evidence of iron-rich melts are still lacking in volcanic rock-hosted iron deposits. Submarine volcanic rock-hosted iron deposits, which are mainly distributed in the western and eastern Tianshan Mountains in Xinjiang, are important resources of iron ores in China, but it remains unclear whether iron-rich melts have played a role in the mineralization of such iron ores. In this study, we observed abundant iron-rich agglomerates in the brecciated andesite lava of the Heijianshan submarine volcanic rock–hosted iron deposit, Eastern Tianshan, China. The iron-rich agglomerates occur as irregular and angular masses filling fractures of the host brecciated andesite lava. They show concentric potassic alteration with silicification or epidotization rims, indicative of their formation after the wall rocks. The iron-rich agglomerates have porphyritic and hyalopilitic textures, and locally display chilled margins in the contact zone with the host rocks. These features cannot be explained by hydrothermal replacement of wall rocks(brecciated andesite lava) which is free of vesicle and amygdale, rather they indicate direct crystallization of the iron-rich agglomerates from iron-rich melts. We propose that the iron-rich agglomerates were formed by open-space filling of volatile-rich iron-rich melt in fractures of the brecciated andesite lava. The iron-rich agglomerates are compositionally similar to the wall-rock brecciated andesite lava, but have much larger variation. Based on mineral assemblages, the iron-rich agglomerates are subdivided into five types, i.e., albite-magnetite type, albite-K-feldsparmagnetite type, K-feldspar–magnetite type, epidote-magnetite type and quartz-magnetite type, representing that products formed at different stages during the evolution of a magmatic-hydrothermal system. The albite-magnetite type represents the earliest crystallization product from a residual ironrich melt; the albite-K-feldspar-magnetite and K-feldspar-magnetite types show features of magmatichydrothermal transition, whereas the epidote-magnetite and quartz-magnetite types represent products of hydrothermal alteration. The occurrence of iron-rich agglomerates provides macroscopic evidence for the presence of iron-rich melts in the mineralization of the Heijianshan iron deposit. It also indicates that iron mineralization of submarine volcanic rock-hosted iron deposits is genetically related to hydrothermal fluids derived from iron-rich melts.  相似文献   

19.
王登红  陈毓川 《矿床地质》2001,20(2):112-118
文章初步厘定了与海相火作用有关的铁、铜、铅、锌矿床成矿系列类型的概念,并对其进行了分类,讨论了其成因,认为内生外成(沉)是其主要特征,即成矿物质主要由火山作用从深部提供,而矿石又是通过沉积作用在海底形成的。在一定程度上,可从成矿类型的角度将块状硫化物矿床与BIF型或磁铁石英岩型矿床联系起来考虑。该类矿床成矿系列类型的演化特点在一定程度上可以反映地球演化的历史轨迹。  相似文献   

20.
A Study of Occurrences of Ag in Pb-Zn-Cu Ore Deposits in China   总被引:2,自引:0,他引:2  
A systematic study of occurrences of silver in 156 Pb-Zn-Cu ore deposits indicates that silver mainly occurs in nonferrous metal ore deposits in forms of association and paragenesis. It occurs mainly as independent minerals in nature and occasionally as ion adsorption, isomorphous or amorphous silver minerals. Nearly 190 silver minerals have been discovered in China. Their shapes, constituents, textures, grain sizes, embedded types, distribution patterns, mineral assemblages and metallogenic series suggest that these characteristics are closely related to geneses of deposits and dependent of ore-forming conditions. Pb, Zn and Cu sulphides are the main carrier minerals of silver. The partition of silver in ore is constrained by the mineralization intensity, grain size and embedded form of silver minerals and mineral assemblages.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号