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 312 毫秒
1.
北祁连山早古生代洋脊—洋岛和弧后盆地火山作用   总被引:50,自引:0,他引:50  
夏林圻  夏祖春 《地质学报》1998,72(4):301-312
北祁连山系内,分布着一套类型十分齐全的新元古代-早古生代海相火山岩系。它包括有大陆裂谷火山岩、洋脊-洋岛火山岩、岛弧火山岩、弧后盆地火山岩和陆缘被动裂谷火山岩。本文重点介绍北祁连山早古生代洋脊-洋岛火山岩和弧后盆地火山岩的岩石地球化学特点,并从地幔动力学角度探讨它们的岩石成因。这无疑对于深入了解地质历史古老增生板块边缘的火山作用有重要意义。  相似文献   

2.
祁连山地区的新元古代中—晚期至早古生代火山作用显示系统地时、空变化,其乃是祁连山构造演化的火山响应。随着祁连山构造演化从Rodinia超大陆裂谷化—裂解,经早古生代大洋打开、扩张、洋壳俯冲和弧后伸展,直至洋盆闭合、弧-陆碰撞和陆-陆碰撞,火山作用也逐渐从裂谷和大陆溢流玄武质喷发,经大洋中脊型、岛弧和弧后盆地火山活动,转变为碰撞后裂谷式喷发。850~604 Ma的大陆裂谷和大陆溢流熔岩主要分布于祁连和柴达木陆块。从大约550 Ma至446 Ma,在北祁连和南祁连洋-沟-弧-盆系中广泛发育大洋中脊型、岛弧和弧后盆地型熔岩。与此同时,在祁连陆块中部,发育约522~442 Ma的陆内裂谷火山作用。早古生代洋盆于奥陶纪末(约446 Ma)闭合。随后,从约445 Ma至约428 Ma,于祁连陆块北缘发育碰撞后火山活动。此种时-空变异对形成祁连山的深部地球动力学过程提供了重要约束。该过程包括:(1)地幔柱或超级地幔柱上涌,导致Rodinia超大陆发生裂谷化、裂解、早古生代大洋打开、扩张、俯冲,并伴随岛弧形成;(2)俯冲的大洋板片回转,致使弧后伸展,进而形成弧后盆地;(3)洋盆闭合、板片断离,继而发生软流圈上涌,诱发碰撞后火山活动。晚志留世至早泥盆世(420~400 Ma),先期俯冲的地壳物质折返,发生强烈的造山活动。400 Ma后,山体垮塌、岩石圈伸展,相应发生碰撞后花岗质侵入活动。  相似文献   

3.
钦-杭成矿带主要金属矿床成矿系列   总被引:7,自引:0,他引:7  
钦-杭成矿带是华南地区最重要的Cu-Pb-Zn-Au、W-Sn-Bi-Mo和Fe-Mn-S多金属成矿带。在前人工作基础上,根据矿床的成因组合、形成构造环境及其随地质历史演化的特点,将钦-杭成矿带主要金属矿床归纳为中新元古代海底喷流沉积型铜多金属矿床、新元古代海相沉积-变质型铁锰矿床、古生代海相沉积-叠生改造型铜铅锌铁锰矿床、加里东期与花岗岩类有关的钨钼金银多金属矿床、印支期与花岗岩类有关的钨锡铌钽铀多金属矿床、燕山期与花岗岩类有关的铜铅锌金钨锡多金属矿床、与区域动力变质热液作用有关的金银矿床等7个矿床成矿系列。进而讨论了各成矿系列的主要矿床类型、矿床地质特征和时空分布规律,初步认为,中新元古代海底喷流沉积型块状硫化物铜多金属矿床与大陆边缘岛弧火山作用有关,主要分布于扬子陆块东南缘和华夏陆块西北缘古岛弧褶皱区;新元古代受变质铁锰矿床与大陆裂谷火山作用有关,并经受了后期区域变质、热变质作用的改造,主要分布于加里东期隆起区;古生代层控型铜铅锌铁锰矿床与海底热水沉积成矿作用有关,且不同程度地受到后期岩浆-热液活动的叠加改造,主要分布于海西—印支期坳陷区与隆起区的过渡部位;加里东期斑岩-夕卡岩-热液脉型钨钼金银多金属矿床与奥陶纪末—志留纪陆内造山作用有关,主要分布于加里东期隆起区;印支期斑岩-夕卡岩-热液脉型钨锡铌钽铀多金属矿床与印支板块向华南板块的俯冲碰撞有关,成矿作用发生在后碰撞伸展阶段,主要分布于海西—印支期隆起区边缘;燕山期斑岩-夕卡岩-热液脉型铜铅锌金钨锡多金属矿床与岩石圈伸展引起的玄武岩底侵作用有关,广泛分布于海西—印支期拗陷区或中生代盆地边缘;与区域动力变质热液作用有关的金银矿床成矿系列,与印支—燕山期大规模的逆冲推覆作用有关,主要发育于钦-杭结合带两侧古陆边缘。  相似文献   

4.
阿尔泰山南缘克朗盆地泥盆纪火山沉积与矿产   总被引:12,自引:0,他引:12  
新疆阿尔泰山南缘克朗晚古生代火山-沉积盆地盆地,位于西伯利亚板块南缘泥盆纪陆缘裂谷带中,在早泥盆世发生了大规模多期次的火山活动,在康布铁堡组火山沉积地层中形成了恰夏、铁木尔特和阿巴宫多个VMS型铜铅锌铁多金属矿床;中泥盆世火山作用减弱,在阿勒泰镇组沉积地层中形成SEDEX型红墩铅锌矿床。  相似文献   

5.
中国镍矿成矿规律初探   总被引:12,自引:0,他引:12  
孙涛  王登红  钱壮志  付勇  陈郑辉  娄德波 《地质学报》2014,88(12):2227-2251
我国镍矿可分为岩浆型、海相沉积型和风化壳型3种预测类型.矿床形成时代较为连续,最早形成于中—新元古代,最晚形成于新生代,其中中—新元古代和晚古生代是形成矿床的两个高峰期;中—新元古代矿床主要分布在华北地块和扬子地块周缘,晚古生代镍矿主要分布在中亚造山带、峨眉山和塔里木大火成岩省范围内.岩浆型镍矿主要形成于大陆边缘裂解、造山带后碰撞伸展以及地幔柱3种构造背景,根据不同构造背景并结合主要岩浆作用特点,将与幔源基性—超基性岩有关的镍-铜-钴-铂族元素矿床成矿系列类型划分出与大陆裂解边缘幔源基性—超基性岩浆作用有关的镍-铜-钴-铂族元素矿床成矿亚类型、与地幔柱基性—超基性岩浆作用有关的镍-铜-钴-铂族元素矿床成矿亚类型、与造山带俯冲作用下幔源基性—超基性岩有关的镍-铜-钴-铂族元素矿床成矿亚类型、与造山带后碰撞伸展背景下幔源基性—超基性岩有关的镍-铜-钴-铂族元素矿床成矿亚类型等4种亚类型.分别对中—新元古代与大陆边缘裂解有关的镍铜(铂)矿床、寒武纪与黑色页岩有关的海相沉积型镍钼钒矿床、早二叠世与造山带伸展背景有关的镍铜矿床、晚二叠世与大火成岩省有关的镍铜(铂)矿床、新生代与风化壳有关的镍金矿床及其对应的典型矿床特征和成矿模式进行了叙述;认为大陆裂解边缘、地幔柱、造山带后碰撞伸展是我国镍矿形成的有利成矿地质背景,与邻近深大断裂、镁铁—超镁铁岩体、高MgO的原生岩浆(高镁玄武质岩浆)、深部岩浆作用、硫饱和与硫化物熔离共同组成岩浆型镍矿的6个重要地质条件.  相似文献   

6.
青海祁连县清水沟—白柳沟新元古代寒武纪大陆裂谷双峰式海相火山岩中产有Fe-S和Pb-Zn-Cu型块状硫化物矿床.这两类矿床除受所在火山岩陆壳幔源区的部分熔融程度和火山作用旋回性不同影响外,主要受产生构造位置和火山岩浆源区物性条件所控制.其中产Fe-S型矿床的石头沟-香子沟穹窿火山作用,相对形成于近裂谷扩张中心的深海环境,以低K2O钙碱性的拉斑玄武质或英安质下地壳为物源区环境;郭米寺-白柳沟穹窿的Pb-Zn-Cu型火山作用形成于远离扩张中心的陆缘弧环境,源区为一种由地幔源和壳源共同构成的混合源.在矿床成因类型方面,前者近似塞浦路斯的铜黄铁矿,后者为较典型的日本黑矿型.  相似文献   

7.
《西北地质》2001,34(1):62
1.国土资源部“九五”资源与环境科技攻关项目 ( 950 2 0 0 4 )——“北祁连山西段铜、多金属矿产成矿条件及找矿预测研究”,首次提出并查明北祁连山地区的大陆裂谷化起始于古元古代 ,发育以朱龙关群和镜铁山群为代表的元古宙大陆溢流玄武岩系。提出甘肃镜铁山铁矿田具有探得大型铜矿床的远景 ,认为铜矿床形成明显晚于铁矿床 ,是铁矿床形成期后俯冲造山阶段 ( 4 76± 15Ma)构造 -岩浆 -热液活动的产物 ;提出青海祁连县清水沟—白柳沟新元古代—寒武纪大型双峰式火山岩穹东端尕大坂矿区为探得大型铜多金属矿床的找矿靶区 ;研究指出北祁连山…  相似文献   

8.
白银厂矿区及外围是北祁连铜多金属成矿带的主要地段.新元古代以来的大陆裂谷作用-活动陆缘的洋壳俯冲、弧后扩张-陆-陆碰撞造山作用,及其所导致的强烈多期次的火山活动、岩浆侵入及变质作用,为本区提供了优越的成矿条件.区内既有与岛弧海相酸性火山作用有关的白银厂黑矿型Cu-Pb-Zn-Au-Ag成矿系列,又有与弧后扩张脊蛇绿岩套和基性火山岩有关的塞浦露斯型Cu-Zn(Co)系列;与大陆裂陷火山作用有关的喷流沉积型Fe-Cu-Zn-Pb系列以及陆内造山早期与韧-脆性剪切作用有关的Au-Pb系列和与酸性岩浆作用有关的Au-Cu系列等.石青硐-白银厂火山岩带是本区最有找矿潜力、也是快速实现找矿突破的首选区带;朵家滩-白银南-青城皋兰群变质火山岩带,是值得探索的大型喷流沉积型Fe-Cu-Zn-Pb矿床远景区;老虎山-银洞沟-崛吴山火山岩带的塞浦露斯型Cu-Zn(Co)矿床具有扩大资源量和进一步发现矿床的前景;韧-脆性剪切带型Au矿床及与酸性侵入体有关的岩浆期后热液型Au-Cu矿床是两个具有重要意义的找矿新方向.  相似文献   

9.
大陆再造与钦杭带北东段多期铜金成矿作用   总被引:6,自引:3,他引:3  
倪培  王国光 《岩石学报》2017,33(11):3373-3394
大陆再造与铜金成矿系统的研究是当前国际矿床学前沿领域。钦杭成矿带是我国21个重点成矿区带之一,也是扬子与华夏地块的拼贴带。近年,对钦杭带北东段一系列铜金矿床的系统研究表明,成矿作用与富铜金大陆地壳形成和随后的多期再造过程密切相关。晚中元古代-早新元古代,在被动大陆边缘的伸展环境,软流圈地幔部分熔融形成铁砂街岩群细碧岩和VMS型铁砂街铜矿。之后新元古代的洋壳俯冲,岛弧环境的俯冲板片部分熔融形成双溪坞岩群岛弧火山岩和VMS型平水矿铜矿体,其成矿流体主要来自于深循环海水,成矿物质主要来自于平水组幔源火山岩。随后发生的扬子与华夏地块的陆陆碰撞造山作用,新元古代双桥山群基底地层发生强烈再造,形成了受韧性剪切带控制的金山造山型金矿,富CO2变质流体的不混溶作用是金富集沉淀的最重要机制。早古生代,华南陆内造山作用导致新元古代双溪坞岩群和陈蔡岩群发生再造,形成了早古生代韧性剪切带及相应的造山型金矿(璜山、平水金矿等),金的富集沉淀与富CO2变质流体的演化密切相关。韧性剪切带及特征的富CO2变质流体,可以作为加里东期造山型金矿的找矿标志。晚中生代,古太平洋板块开始向华南大陆东南缘俯冲,位于华南内陆的德兴地区受到俯冲作用远程效应,导致德兴地区新元古代富铜金新生地壳部分熔融,形成低镁埃达克质岩及与其相关的银山和建德铜金多金属矿床,当部分熔融过程受到岩石圈地幔影响,则形成高镁埃达克质花岗闪长斑岩及超大型德兴斑岩铜矿。因此,钦杭成矿带北东段先后发生晚中元古-新元古代、早古生代和晚中生代多期铜金成矿。新元古代江南造山事件和稍早的板内岩浆作用形成了富铜金的新生地壳,为钦杭带北东段多期铜金成矿作用以及燕山期金属巨量堆积奠定了丰厚的物质基础,是该成矿带产出的关键控制要素。新元古代富铜金大陆再造是大型、超大型铜金矿床形成的一种重要机制。  相似文献   

10.
北祁连山构造-火山岩浆演化动力学   总被引:44,自引:0,他引:44  
笔者以区域构造-火山岩浆演化动力学为主线,从研究区域火山岩岩石学的角度探索北祁连山古板块构造体制与火山岩浆作用的关系,主要强调区域上不同特点火山岩的成因,其形成应直接与构造环境有关。作者的研究查明,从元古代末至泥盆纪,北祁连山经历了一个由大陆裂开→大洋化→洋盆扩张并俯冲消减→沟、弧、盆体系形成和完善→洋盆收缩闭合→碰撞造山的全过程,每一阶段均发育有相应岩石地球化学特征的海相火山活动。经确定有如下5种特定的火山岩浆产生环境:(1)元古代末-寒武纪大陆裂谷型火山作用,(2)寒武纪末-早奥陶世洋脊-洋岛型火山作用,(3)奥陶纪岛弧火山作用,(4)中-晚奥陶世弧后盆地火山作用,(5)晚奥陶世-志留纪海盆闭合期火山作用。作者的研究揭示,海底块状硫化物矿床的形成与拉张环境下火山岩浆的产生密切相关。因为海底循环的热卤水在此类矿床的形成中起着决定作用,而这种循环作用受与拉张环境相伴的局部高热流和海底火山活动所驱动。  相似文献   

11.
对红沟铜矿床含矿火山岩进行高精度锆石LA-ICP-MS U-Pb同位素测年,获得单颗粒锆石的加权平均年龄为443.2 Ma±1.2Ma。红沟铜矿床形成时代为晚奥陶世,形成环境为晚奥陶世陆缘裂谷环境。高精度年龄的获得对于整个祁连山地区产于陆缘裂谷环境的铜多金属矿床的成矿时代和成因研究具有重要意义。  相似文献   

12.
对红沟铜矿床含矿火山岩进行高精度锆石LA-ICP-MS U-Pb同位素测年,获得单颗粒锆石的加权平均年龄为443.2Ma±1.2Ma。红沟铜矿床形成时代为晚奥陶世,形成环境为晚奥陶世陆缘裂谷环境。高精度年龄的获得对于整个祁连山地区产于陆缘裂谷环境的铜多金属矿床的成矿时代和成因研究具有重要意义。  相似文献   

13.
喀腊大湾铜矿位于塔里木板块塔里木古陆缘地块红柳沟-拉配泉奥陶纪裂谷带,矿区位于阿尔金北缘断裂带南侧、喀腊达坂断裂与喀腊大湾断裂的交汇部位.矿体产于蓟县系卓阿布拉克组火山岩地层中,是一个以铜为主,共(伴)生铅锌的多金属矿床.推测成矿作用发生于火山旋回间歇式喷发期,岩石蚀变较强,蚀变分带明显,矿石类型主要为条带浸染状和条纹浸染状,成因类型属与火山作用有关的火山岩型硫化物矿床.  相似文献   

14.
普朗铜矿是义敦岛弧东多金属矿带的超大型斑岩型铜矿床.成矿带内岩浆构造活动频繁,裂隙构造叠加成矿-控矿作用显著,但研究程度薄弱.在对普朗铜矿区巷道进行构造岩相学综合调查研究的基础上,结合区域成矿构造背景,厘定矿区褶皱、断裂宏观特征,对典型中段进行节理(裂隙)测量分析.研究表明:1)古特提斯洋闭合过程斑岩铜矿成矿作用与晚三叠世构造演化、岩浆活动关系密切,普朗铜矿形成于俯冲造山阶段;2)区域深大断裂控制着矿区沉积建造和岩浆岩分布,矿床总体产于普朗背形核部,次级NEE及NE向断裂控制着含矿斑岩体和节理(裂隙)的发育,矿(化)体赋存于两组断裂交汇部位;3)矿区以张节理为主的复合型节理系统,为含矿热液的运移、扩散和富集提供导矿、储矿空间,裂隙发育程度与铜矿化呈正相关.通过对矿区岩浆侵入-构造裂隙系统特征与控矿规律的研究,认为热液脉状矿(化)体严格受控于构造-裂隙系统改造富集作用,裂隙构造发育部位是探寻富"脉状矿"的有利靶区.  相似文献   

15.
The pre-Sinian basement on the southwestern margin of the Yangtze paraplatform consists of threemetamorphic rock series of different ages. Being products of different tectonic events and environments, theydiffer markedly in original rock sequences, metamorphism. tectonic style and characteristics of granitoids andmineral deposits. The Late Archean Kangdian cration mainly comprises the Kangding and Julin Groups with ametamorphic age of nearly 2500 Ma. They are supracrustal rocks dominated by mafic volcanics enclosed introndhjemitic rocks The craton is believed to represent a granite-greenstone terrane of Late Archaean age.There occur mineral deposits such as graphite and kyanite deposits of metamorphic origin, muscovite depositsin pegmatites and gold quartz veins in gneissic granites, banded hornblende-magnetite mineralization and cop-per and zinc mineralizations related to felsic volcanics. Large V-Ti-bearing magnetite deposits were also formedin the mafic. ultramafic stratiform intrusions emplaced on the margins of the craton during the MiddleProterozoic. Copper and nickel deposits are found in several ultramafic intrusions. Extending in a north-southdirection, the Proterozoic mobile belt consists mainly of the Early Proterozoic Hekou Group and MiddleProterozoic Huili and Kunyang Groups. and they are thought to be accumulations in a Proterozoic rift troughor aulacogen. During the Early Proterozoic, the rift trough was characterized by intense volcanism and pres-ence of iron ore deposits of volcano-magmatic type, iron-copper deposits of exhalative-sedimentary type. TheMid-Late Proterozoic of the rift trough mainly witnessed the formation of sedimentary stratiform copper de-posits and submarine sedimentary iron deposits. In the wake of the emplacement of the Jinningian andChengjiangian granites in the Late Proterozoic, skarn-type tin and tin-iron ore deposits were formed.  相似文献   

16.
Duobaoshan is the largest porphyry-related Cu-Mo-Au orefield in northeastern(NE)Asia,and hosts a number of large-medium porphyry Cu(PCDs),epithermal Au and Fe-Cu skarn deposits.Formation ages of these deposits,from the oldest(Ordovician)to youngest(Jurassic),have spanned across over 300 Ma.No similar orefields of such size and geological complexity are found in NE Asia,which reflects its metallogenic uniqueness in forming and preserving porphyry-related deposits.In this study,we explore the actual number and timing of magmatic/mineralization phases,their respective magma genesis,fertility,and regional tectonic connection,together with the preservation of PCDs.We present new data on the magmatic/mineralization ages(LA-ICP-MS zircon U-Pb,pyrite and molybdenite Re-Os dating),whole-rock geochemistry,and zircon trace element compositions on four representative deposits in the Duobaoshan orefield,i.e.,Duobaoshan PCD,Tongshan PCD,Sankuanggou Fe-Cu skarn,and Zhengguang epithermal Au deposits,and compiled published ones from these and other mineral occurrences in the orefield.In terms of geochronology,we have newly summarized seven magmatic phases in the orefield:(1)Middle-Late Cambrian(506-491 Ma),(2)Early and Middle Ordovician(485-471 Ma and~462 Ma),(3)Late Ordovician(450-447 Ma),(4)Early Carboniferous and Late-Carboniferous to Early Permian(351-345 and 323-291 Ma),(5)Middle-Late Triassic(244-223 Ma),(6)Early-Middle and Late Jurassic(178-168 Ma and~150 Ma),and(7)Early Cretaceous(~112 Ma).Three of these seven major magmatic phases were coeval with ore formation,including(1)Early Ordovician(485-473 Ma)porphyry-type Cu-Mo-(Au),(2)Early-Middle Triassic(246-229 Ma)porphyry-related epithermal Au-(Cu-Mo),and(3)Early Jurassic(177-173 Ma)Fe-Cu skarn mineralization.Some deposits in the orefield,notably Tongshan and Zhengguang,were likely formed by more than one mineralization events.In terms of geochemistry,ore-causative granitoids in the orefield exhibit adakite-like or adakite-normal arc transitional signatures,but those forming the porphyry-/epithermal-type Cu-Mo-Au mineralization are largely confined to the former.The varying but high Sr/Y,Sm/Yb and La/Yb ratios suggest that the ore-forming magmas were mainly crustal sourced and formed at different depths(clinopyroxene-/amphibole-/garnet-stability fields).The adakite-like suites may have formed by partial melting of the thickened lower crust at 35-40 km(for the Early Ordovician arc)and>40 km(for the Middle-Late Triassic arc)depths.The Early Jurassic Fe-Cu skarn orecausative granitoids show an adakitic-normal arc transitional geochemical affinity.These granitoids were likely formed by partial melting of the juvenile lower crust(35-40 km depth),and subsequently modified by assimilation and fractional crystallization(AFC)processes.In light of the geological,geochronological and geochemical information,we proposed the following tectonometallogenic model for the Duobaoshan orefield.The Ordovician Duobaoshan may have been in a continental arc setting during the subduction of the Paleo-Asian Ocean,and formed the porphyry-related deposits at Duobaoshan,Tongshan and Zhengguang.Subduction may have ceased in the latest Ordovician,and the regional tectonics passed into long subsidence and extension till the latest Carboniferous.This extensional tectonic regime and the Silurian terrestrial-shallow marine sedimentation had likely buried and preserved the Ordovician Duobaoshan magmatic-hydrothermal system.The south-dipping Mongol-Okhotsk Ocean subduction from north of the orefield had generated the Middle-Late Triassic continental arc magmatism and the associated Tongshan PCD and Zhengguang epithermal Au mineralization(which superimposed on the Ordovician PCD system).The Middle Jurassic closure of Mongol-Okhotsk Ocean in the northwestern Amuria block(Erguna terrane),and the accompanying Siberia-Amuria collision,may have placed the Paleo-Pacific subduction system in NE China(including the orefield)under compression,and formed the granodiorite-tonalite and Fe-Cu skarn deposits at Sankuanggou and Xiaoduobaoshan.From the Middle Jurassic,the consecutive accretion of Paleo-Pacific arc terranes(e.g.,Sikhote-Alin and Nadanhada)onto the NE Asian continental margin may have gradually distant the Duobaoshan orefield from the subduction front,and consequently arc-type magmatism and the related mineralization faded.The minor Late Jurassic and Cretaceous unmineralized magmatism in the orefield may have triggered mainly by the far-field extension led by the post-collisional(Siberia-Amuria)gravitational collapse and/or Paleo-Pacific backarc-basin opening.  相似文献   

17.
环巴尔喀什-西准噶尔成矿省地处中亚成矿域核心区,古生代构造和岩浆活动强烈,成矿作用丰富多样,发育许多大型-超大型乃至世界级的金属矿床,包括斑岩型铜矿床、斑岩-石英脉-云英岩型钨钼矿床、矽卡岩型铜(多金属)矿床、火山成因块状硫化物型(VMS)多金属矿床、浅成低温热液型金矿床、石英脉-蚀变岩型中温热液金矿床、与花岗岩有关的Be-U矿床、岩浆熔离型铜镍硫化物矿床和豆荚状铬铁矿等,这些矿床集中分布,形成多处成矿带,包括哈萨克斯坦的扎尔玛-萨吾尔、波谢库尔-成吉斯和北巴尔喀什等成矿带以及新疆西准噶尔的萨吾尔、谢米斯台-沙尔布提和巴尔鲁克-克拉玛依等成矿带。哈萨克斯坦包含大型-超大型和世界级金属矿床的成矿带向东是否延入新疆西准噶尔?能否实现新疆西准噶尔找矿重大突破?都是备受关注的重大地质找矿问题。本文在前人研究并结合作者工作基础上,根据成矿带的成矿构造环境、矿床类型、成矿特点和成矿时代,总结出成矿省至少发育九类成矿系统,即(1)奥陶纪-志留纪岛弧斑岩型Cu-Au成矿系统;(2)奥陶纪岛弧VMS型多金属成矿系统;(3)泥盆纪岛弧岩浆熔离型铜镍硫化物成矿系统;(4)泥盆纪与蛇绿岩有关的豆荚状铬铁矿成矿系统;(5)早石炭世岛弧斑岩-浅成低温热液型Cu-Au成矿系统;(6)石炭纪岛弧斑岩型-矽卡岩型Cu-Mo-Au成矿系统;(7)晚石炭世弧后盆地与花岗岩有关的Be-U成矿系统;(8)早二叠世岛弧或岛弧和陆缘弧过渡弧斑岩-石英脉-云英岩型Mo-W成矿系统;(9)早二叠世岛弧石英脉-蚀变岩型中温热液金成矿系统。对比研究发现境内外相邻成矿带具有相同或相似的成矿系统,二者可以对接,新疆西准噶尔三条成矿带分别是哈萨克斯坦三条成矿带的东延部分,构成了成矿省北部的扎尔玛-萨吾尔Cu-Au成矿带、中部的波谢库尔-成吉斯-谢米斯台Cu-Au-Be-U多金属成矿带和南部的北巴尔喀什-克拉玛依Cu-Mo-W-Au-Cr成矿带。新疆西准噶尔具有形成大型-超大型矿床的成矿系统和成矿条件,有望实现找矿勘探的更大突破。  相似文献   

18.
The northeast (NE) Honshu arc was formed by three major volcano-tectonic events resulting from Late Cenozoic orogenic movement: continental margin volcanism (before 21?Ma), seafloor basaltic lava flows and subsequent bimodal volcanism accompanied by back-arc rifting (21 to 14?Ma), and felsic volcanism related to island arc uplift (12 to 2?Ma). Eight petrotectonic domains, parallel to the NE Honshu arc, were formed as a result of the eastward migration of volcanic activity with time. Major Kuroko volcanogenic massive sulfide (VMS) deposits are located within the eastern marginal rift zone (Kuroko rift) that formed in the final period of back-arc rifting (16 to 14?Ma). Volcanic activity in the NE Honshu arc is divided into six volcanic stages. The eruption volumes of volcanic rocks have gradually decreased from 4,600?km3 (per 1?my for a 200-km-long section along the arc) of basaltic lava flows in the back-arc spreading stage to 1,000?C2,000?km3 of bimodal hyaloclastites in the back-arc rift stage, and about 200?km3 of felsic pumice eruptions in the island arc stage. The Kuroko VMS deposits were formed at the time of abrupt decrease in the eruption volume and change in the mode of occurrence of the volcanic rocks during the final period of back-arc rifting. In the area of the Kuroko rift, felsic volcanism changed from aphyric or weakly plagioclase phyric (before 14?Ma), to quartz and plagioclase phyric with minor clinopyroxene (12 to 8?Ma), to hornblende phyric (after 8?Ma), and hornblende and biotite phyric (after 4?Ma). The Kuroko VMS deposits are closely related to the aphyric rhyolitic activity before 14?Ma. The rhyolite was generated at a relatively high temperature from a highly differentiated part of felsic magma seated at a relatively great depth and contains higher Nb, Ce, and Y contents than the post-Kuroko felsic volcanism. The Kuroko VMS deposits were formed within a specific tectonic setting, at a specific period, and associated with a particular volcanism of the arc evolution process. Therefore, detailed study of the evolutional process from rift opening to island arc tectonics is very important for the exploration of Kuroko-type VMS deposits.  相似文献   

19.
论中国东北大陆裂谷系的形成与演化   总被引:19,自引:0,他引:19       下载免费PDF全文
刘嘉麒 《地质科学》1989,7(3):209-216
自中生代末期以来,东北地区形成了以松辽地堑为主体,联合下辽河裂谷、伊通-依兰裂谷、抚顺-密山裂谷以及邻近断陷盆地的大陆裂谷系,并向南北两端延伸,在亚洲东部构成一条大的裂谷带。这个大陆裂谷系的形成和发展是由中央向两侧展开的,与板块俯冲、弧后扩张密切相关。  相似文献   

20.
刘学龙  李文昌  尹光侯 《中国地质》2012,39(4):1007-1022
格咱岛弧带是西南三江多岛弧盆系中一个主要的地质构造单元,它始于晚三叠世甘孜—理塘洋壳的向西俯冲,燕山期经历了陆内汇聚和造山后伸展作用阶段,区内岩浆活动和成矿作用强烈,是近年来新发现的重要铜多金属成矿带。根据区内岩浆岩和矿床的时空分布,同位素年代学证据,构造环境及成矿作用,将格咱岛弧成矿系统划分为印支期成矿亚系统和燕山期成矿亚系统。印支期主要发育了与安山岩同源的壳幔型中酸性岩浆作用,形成斑岩型Cu矿成矿系统,燕山期伴随着同碰撞中酸性岩浆活动形成斑岩型Mo(Cu)及热液型W(Mo)成矿系统。研究表明,格咱岛弧深部找矿具有较好的资源潜力,其中燕山期Mo多金属成矿已显现出良好的找矿前景。  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