首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 140 毫秒
1.
新疆北部晚古生代独特的构造-成矿作用以发育大量石炭纪-二叠纪构造-成矿事件为特征,其中包括:(1)发育于晚石炭世-二叠世的阿尔泰岛弧及其变质事件、阿尔泰麻粒岩与基性杂岩、西南天山放射虫硅质岩和高压-超高压-低压麻粒岩相变质事件;(2)北疆发育的石炭纪(-二叠世)埃达克岩-高镁安山岩-富Nd玄武质岩组合、阿拉斯加型基性-超基性杂岩和大量的与俯冲相关的钙碱性岩浆活动与斑岩型铜矿床成矿作用;(3)天山晚石炭世晚期蛇绿岩与岛弧火山岩等。结合北疆地区相关的前陆盆地发育不明显、碰撞型花岗岩欠发育与大量发育平行造山带大型走滑构造等现象,可以认为新疆北部在石炭纪-二叠纪挤压-伸展-走滑并存,岩浆活动与成矿作用活跃。这些新进展表明新疆北部在晚石炭世-二叠纪可能仍存在活动陆缘,因此,古亚洲洋构造域南部复杂增生造山作用最后延至晚石炭世晚期-二叠纪。  相似文献   

2.
西准噶尔萨吾尔地区主要矿床类型及成矿规律   总被引:3,自引:2,他引:1  
本文基于萨吾尔地区目前发育的主要矿床(点)吐尔库班套铜镍矿点、阔尔真阔腊金铜矿床、布尔克斯岱金矿床、罕哲尕能铜矿床、塔斯特金矿床、黑山头金矿点、那林卡拉铜钼矿点等的研究,分析了区域矿化类型及成矿规律。认为萨吾尔地区矿床成因类型可分为三类,岩浆Cu-Ni硫化物矿床、斑岩型-浅成低温热液型Au-Cu-Mo矿床、与中酸性侵入岩有关的构造蚀变岩型Au矿床。矿化以Au、Cu矿化为主,Cu-Ni、Mo矿化次之。成矿时代分布在中泥盆世、早石炭世、晚石炭世,集中于早石炭世(354~336Ma)。空间上,岩浆Cu-Ni硫化物矿床分布于萨吾尔北部科克森套地区,斑岩型-浅成低温热液型Au-Cu-Mo矿床、与中酸性侵入岩有关的构造蚀变岩型Au矿床主要分布于萨吾尔山南部。成矿构造背景分别对应于区域中泥盆世岛弧环境、早石炭世岛弧环境、晚石炭世碰撞造山后环境。区域成矿规律显示了进一步的找矿潜力:萨吾尔北部科克森套地区发育的镁铁-超镁铁岩体的岩浆Cu-Ni硫化物矿床的找矿潜力;阔尔真阔腊-布尔克斯岱地区斑岩型-浅成低温热液型金铜矿床的找矿潜力;区域晚石炭世-早二叠世斑岩型Cu-Mo矿床的找矿潜力;萨吾尔断裂及其次级断裂控制范围内的Au-Cu找矿潜力。  相似文献   

3.
新疆北部地质构造演化复杂,多阶段演化中岩浆活动与成矿作用规模并不均衡。而二叠纪却是天山成矿带大规模岩浆活动和金属成矿作用的高爆发期。本研究紧紧围绕镁铁-超镁铁质侵入岩体及岩浆铜镍硫化物矿床,从地质分布特点、含矿岩体的岩浆起源、岩浆演化及成矿特点,系统研究深部相应岩浆作用的地质背景。通过典型矿床的深入剖析,破解制约找矿突破的控制因素,系统阐述了板块构造与地幔柱体制叠加并存的地质特征与成矿表现。新疆北部发育了5条镁铁-超镁铁质侵入岩带,东天山、北山及喀拉通克岩带具有较好的成矿表现,在时间上与塔里木隐伏大火成岩省密切相关。塔里木克拉通深部熔融的地幔物质,围绕刚性塔里木克拉通边缘不断上涌,并与表壳物质发生交换,随着俯冲板块的持续和减弱,深部上涌的地幔物质不断加强,先后形成因深部地幔物质多寡而金属聚集的不同矿床类型。围绕塔里木大火成岩省的周缘或造山带中,是岩浆铜镍硫化物矿床重要的理论研究基地和找矿方向。  相似文献   

4.
众所周知,中酸性侵入岩是稀土、铀、铜、铅、锌、金、银等众多矿床的重要成矿母岩,由中酸性岩浆侵入作用形成的矿床,包括接触交代(矽卡岩)型矿床、斑岩型矿床及高中温气液型矿床等.新疆东天山东段哈密北部巴里坤塔格-哈尔里克一带属于中亚成矿域的重要组成部分,区内广泛发育晚古生代,尤其是石炭二叠纪中酸性侵入岩,且主要集中在晚石炭世一早二叠世,二叠纪后造山拉张阶段幔源岩浆底侵成因的侵入岩体广泛遍布该区.  相似文献   

5.
新疆北部后碰撞与幔源岩浆有关的成矿谱系   总被引:18,自引:12,他引:6  
新疆北部与后碰撞幔源岩浆作用有关的矿床主要有四类:铜镍硫化物矿床、钒钛磁铁矿矿床、钛铁矿-铜镍硫化物复合矿床和玄武岩型自然铜矿床。上述四类矿床成矿时代相近(主成矿期为二叠纪),空间相邻,跨构造单元分布,彼此之间可出现过渡或复合矿床类型,构成了独特的后碰撞与幔源岩浆作用有关的成矿谱系,也是中亚型造山后碰撞阶段颇具特色的成矿组合。依据其成矿专属性的不同,新疆北部与幔源岩浆有关的矿床可分为两个系列:钛铁系列和铜镍系列。钛铁系列以尾亚矿床为代表,以高钛富碱为特征,为碱性系列,REE总量高,LREE富集,ε_(Nd)(t)近0值,其含矿岩体的地球化学特征与峨嵋大火成岩省钒钛磁铁矿含矿岩体特征一致,推测其含矿岩浆来源与地幔柱活动有关;而以黄山、喀拉通克为代表的铜镍矿床成矿岩体,以相对富镁为特征,属钙碱系列和拉斑玄武岩系列,REE总量较低,模式曲线呈LREE略富集的平缓型分布,ε_(Nd)(t)为明显的正值,可能来自亏损岩石圈地幔的部分熔融。新疆北部后碰撞阶段除发育了与幔源岩浆有关的成矿谱系外,还发育了与造山带有关的构造-岩浆-成矿体系。这种既有地幔柱成矿又有造山带成矿的双重特性,可能是二叠纪地幔柱活动与造山(后碰撞)作用叠加的结果。  相似文献   

6.
澜沧老厂银铅锌铜多金属矿床成因探讨   总被引:11,自引:1,他引:11  
总结老厂银铅锌铜多金属块状硫化物矿床地质特征的基础上,重点讨论老厂矿床存在的早石炭世火山喷流沉积成矿作用、中晚石炭世火山期后喷流沉积成矿作用及燕山期~喜马拉雅山早期(中)酸性岩浆热液叠加改造成矿作用,建立老厂多因复成矿床成矿模式。  相似文献   

7.
新疆北部晚古生代铜矿床主要类型和地质特征   总被引:13,自引:1,他引:13  
铜矿床广泛地分布于新疆北部,已构成我国重要的铜及多金属矿床产地和后备基地。根据容矿岩石和矿床成因特征,新疆北部的铜矿床可以划分为以下几种类型:①斑岩Cu-Mo-(Au)型;②岩浆Cu-Ni硫化物型;③VMSCu-Pb-Zn型;④夕卡岩Cu-Mo-Au-Ag型。这些矿床的形成与西伯利亚、哈萨克斯坦—准噶尔和塔里木板块汇聚碰撞和碰撞后的弛张作用密切相关。早泥盆世(~400)斋桑洋盆沿着阿尔泰—富蕴一带向北俯冲,由于板片后退和拆沉作用,在阿尔泰南缘形成弧后盆地并伴有大量的火山喷发和成矿流体活动,导致阿舍勒和可可塔勒等VMS铜铅锌型矿床的形成;而在西天山的博罗霍努一带,此次构造事件导致喇嘛苏铜矿床的形成。晚泥盆世—早石炭世,由于北天山洋盆向北俯冲,形成大南湖—头苏泉岛弧,并伴有高侵位的花岗岩体分布和铜-钼-金-银矿体的形成。在晚石炭世—早二叠世,新疆北部进入后碰撞构造演化阶段,大量镁铁—超镁铁质和碱性花岗岩岩浆侵位,形成大量的岩浆铜镍硫化物(喀拉通克、黄山和黄山东)和夕卡岩型矿床(索尔库都克、维权)。  相似文献   

8.
长仁铜镍矿床位于华北克拉通铜镍硫化物矿床成矿带-吉黑成矿亚带,为一处岩浆硫化物矿床,成矿作用与镁铁质-超镁铁质岩体密切相关。文章对吉林省长仁铜镍矿区Σ11基性-超基性岩体中橄榄辉石岩进行了锆石LA-ICP-MS U-Pb年代学的研究,获得谐和年龄为(226±1)Ma,为印支晚期,限定长仁铜镍矿成岩成矿时代为晚三叠世,与红旗岭、漂河川、茶尖岭等矿床为同期岩浆活动的产物。结合区域内前人研究成果,认为古亚洲洋最终闭合时间为晚二叠世到早三叠世,晚三叠世已进入古亚洲洋闭合后伸展环境,长仁矿区成岩成矿大地构造背景为古亚洲洋闭合后的造山后伸展环境。  相似文献   

9.
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   

10.
东天山自然铜矿化带玄武岩的起源、演化及成岩构造背景   总被引:9,自引:5,他引:4  
新疆东天山地区与玄武岩有关的自然铜矿化带位于东天山觉罗塔格构造带内,自西向东有十里坡、黑龙峰、长城山、东尖峰等主要矿(化)点,自然铜矿化主要发育在玄武岩、杏仁状玄武岩及凝灰岩夹层中。本文基于玄武岩的地球化学特征,研究东天山自然铜矿化带玄武岩是否与地幔柱有关、岩浆源区性质、岩浆演化、成岩构造背景等问题。研究显示,东天山自然铜矿化带玄武岩与地幔柱岩浆活动无直接关系,整个天山地区是否存在石炭-二叠纪地幔柱岩浆活动也需要进一步的研究; 玄武岩起源于亏损岩石圈地幔,是演化岩浆的产物; 演化的玄武质岩浆形成后,在岩浆房中或上升至地表的过程中没有发生明显的分离结晶作用,也没有受到明显的地壳物质混染; 与玄武岩对应的地幔橄榄岩平衡原生岩浆演化的高镁岩浆的产物,可能为东天山地区与铜镍硫化物成矿有关的基性-超基性岩,指示这些铜镍硫化物矿床可能与地幔柱岩浆活动也没有关系; 玄武岩形成于新疆北部后碰撞构造阶段的伸展期,是在拉张应力体制下,由于软流圈上涌导致岩石圈地幔部分熔融而形成。  相似文献   

11.
The northwestern corner of New South Wales consists of the paratectonic Late Proterozoic to Early Cambrian Adelaide Fold Belt and older rocks, which represent basement inliers in this fold belt. The rest of the state is built by the composite Late Proterozoic to Triassic Tasman Fold Belt System or Tasmanides.In New South Wales the Tasman Fold Belt System includes three fold belts: (1) the Late Proterozoic to Early Palaeozoic Kanmantoo Fold Belt; (2) the Early to Middle Palaeozoic Lachlan Fold Belt; and (3) the Early Palaeozoic to Triassic New England Fold Belt. The Late Palaeozoic to Triassic Sydney—Bowen Basin represents the foredeep of the New England Fold Belt.The Tasmanides developed in an active plate margin setting through the interaction of East Gondwanaland with the Ur-(Precambrian) and Palaeo-Pacific plates. The Tasmanides are characterized by a polyphase terrane accretion history: during the Late Proterozoic to Triassic the Tasmanides experienced three major episodes of terrane dispersal (Late Proterozoic—Cambrian, Silurian—Devonian, and Late Carboniferous—Permian) and six terrane accretionary events (Cambrian—Ordovician, Late Ordovician—Early Silurian, Middle Devonian, Carboniferous, Middle-Late Permian, and Triassic). The individual fold belts resulted from one or more accretionary events.The Kanmantoo Fold Belt has a very restricted range of mineralization and is characterized by stratabound copper deposits, whereas the Lachlan and New England Fold Belts have a great variety of metallogenic environments associated with both accretionary and dispersive tectonic episodes.The earliest deposits in the Lachlan Fold Belt are stratabound Cu and Mn deposits of Cambro-Ordovician age. In the Ordovician Cu deposits were formed in a volcanic are. In the Silurian porphyry Cu---Au deposits were formed during the late stages of development of the same volcanic are. Post-accretionary porphyry Cu---Au deposits were emplaced in the Early Devonian on the sites of the accreted volcanic arc. In the Middle to Late Silurian and Early Devonian a large number of base metal deposits originated as a result of rifting and felsic volcanism. In the Silurian and Early Devonian numerous Sn---W, Mo and base metal—Au granitoid related deposits were formed. A younger group of Mo---W and Sn deposits resulted from Early—Middle Carboniferous granitic plutonism in the eastern part of the Lachlan Fold Belt. In the Middle Devonian epithermal Au was associated with rifting and bimodal volcanism in the extreme eastern part of the Lachlan Fold Belt.In the New England Fold Belt pre-accretionary deposits comprise stratabound Cu and Mn deposits (pre-Early Devonian): stratabound Cu and Mn and ?exhalite Au deposits (Late Devonian to Early Carboniferous); and stratabound Cu, exhalite Au, and quartz—magnetite (?Late Carboniferous). S-type magmatism in the Late Carboniferous—Early Permian was responsible for vein Sn and possibly Au---As---Ag---Sb deposits. Volcanogenic base metals, when compared with the Lachlan Fold Belt, are only poorly represented, and were formed in the Early Permian. The metallogenesis of the New England Fold Belt is dominated by granitoid-related mineralization of Middle Permian to Triassic age, including Sn---W, Mo---W, and Au---Ag---As Sb deposits. Also in the Middle Permian epithermal Au---Ag mineralization was developed. During the above period of post-orogenic magmatism sizeable metahydrothermal Sb---Au(---W) and Au deposits were emplaced in major fracture and shear zones in central and eastern New England. The occurrence of antimony provides an additional distinguishing factor between the New England and Lachlan Fold Belts. In the New England Fold Belt antimony deposits are abundant whereas they are rare in the Lachlan Fold Belt. This may suggest fundamental crustal differences.  相似文献   

12.
位于柴达木地块北缘构造带内欧龙布鲁克微陆块东缘的2个镁铁-超镁铁质岩体——含Cu-Ni的尕秀雅平东岩体和含Ti-Fe的红柳沟北岩体,前者的LA-ICP-MS锆石U-Pb年龄为408.0±1.5Ma,属早泥盆世;后者的SHRIMP锆石U-Pb年龄为418.3±2.8Ma,属晚志留世。区域地质资料研究表明,东昆仑地区、柴北缘在晚志留世—晚泥盆世处于后造山伸展阶段,尕秀雅平东岩体和红柳沟北岩体正是拉张环境下幔源岩浆活动的产物。在东昆仑地区、柴北缘发现的铜镍矿床和铜镍矿点(除夏日哈木有争议外)基本都形成于晚志留世—晚泥盆世。结合区域成矿年代学研究,认为晚志留世—晚泥盆世期间,东昆仑造山带和祁连造山带之间的柴达木地块、欧龙布鲁克微陆块,以及位于这两大造山带内部的微型古陆块区,是形成岩浆铜镍硫化物矿床和钛铁氧化物矿床的有利环境。  相似文献   

13.
The northern part of the Tasman Fold Belt System in Queensland comprises three segments, the Thomson, Hodgkinson- Broken River, and New England Fold Belts. The evolution of each fold belt can be traced through pre-cratonic (orogenic), transitional, and cratonic stages. The different timing of these stages within each fold belt indicates differing tectonic histories, although connecting links can be recognised between them from Late Devonian time onward. In general, orogenesis became younger from west to east towards the present continental margin. The most recent folding, confined to the New England Fold Belt, was of Early to mid-Cretaceous age. It is considered that this eastward migration of orogenic activity may reflect progressive continental accretion, although the total amount of accretion since the inception of the Tasman Fold Belt System in Cambrian time is uncertain.The Thomson Fold Belt is largely concealed beneath late Palaeozoic and Mesozoic intracratonic basin sediments. In addition, the age of the more highly deformed and metamorphosed rocks exposed in the northeast is unknown, being either Precambrian or early Palaeozoic. Therefore, the tectonic evolution of this fold belt must remain very speculative. In its early stages (Precambrian or early Palaeozoic), the Thomson Fold Belt was probably a rifted continental margin adjacent to the Early to Middle Proterozoic craton to the west and north. The presence of calc-alkaline volcanics of Late Cambrian Early Ordovician and Early-Middle Devonian age suggests that the fold belt evolved to a convergent Pacific-type continental margin. The tectonic setting of the pre-cratonic (orogenic) stage of the Hodgkinson—Broken River Fold Belt is also uncertain. Most of this fold belt consists of strongly deformed, flysch-type sediments of Silurian-Devonian age. Forearc, back-arc and rifted margin settings have all been proposed for these deposits. The transitional stage of the Hodgkinson—Broken River Fold Belt was characterised by eruption of extensive silicic continental volcanics, mainly ignimbrites, and intrusion of comagmatic granitoids in Late Carboniferous Early Permian time. An Andean-type continental margin model, with calc-alkaline volcanics erupted above a west-dipping subduction zone, has been suggested for this period. The tectonic history of the New England Fold Belt is believed to be relatively well understood. It was the site of extensive and repeated eruption of calc-alkaline volcanics from Late Silurian to Early Cretaceous time. The oldest rocks may have formed in a volcanic island arc. From the Late Devonian, the fold belt was a convergent continental margin above a west-dipping subduction zone. For Late Devonian- Early Carboniferous time, parallel belts representing continental margin volcanic arc, forearc basin, and subduction complex can be recognised.A great variety of mineral deposits, ranging in age from Late Cambrian-Early Ordovician and possibly even Precambrian to Early Cretaceous, is present in the exposed rocks of the Tasman Fold Belt System in Queensland. Volcanogenic massive sulphides and slate belt-type gold-bearing quartz veins are the most important deposits formed in the pre-cratonic (orogenic) stage of all three fold belts. The voicanogenic massive sulphides include classic Kuroko-type orebodies associated with silicic volcanics, such as those at Thalanga (Late Cambrian-Early Ordovician. Thomson Fold Belt) and at Mount Chalmers (Early Permian New England Fold Belt), and Kieslager or Besshi-type deposits related to submarine mafic volcanics, such as Peak Downs (Precambrian or early Palaeozoic, Thomson Fold Belt) and Dianne. OK and Mount Molloy (Silurian—Devonian, Hodgkinson Broken River Fold Belt). The major gold—copper orebody at Mount Morgan (Middle Devonian, New England Fold Belt), is considered to be of volcanic or subvolcanic origin, but is not a typical volcanogenic massive sulphide.The most numerous ore deposits are associated with calc-alkaline volcanics and granitoid intrusives of the transitional tectonic stage of the three fold belts, particularly the Late Carboniferous Early Perman of the Hodgkinson—Broken River Fold Belt and the Late Permian—Middle Triassic of the southeast Queensland part of the New England Fold Belt. In general, these deposits are small but rich. They include tin, tungsten, molybdenum and bismuth in granites and adjacent metasediments, base metals in contact meta somatic skarns, gold in volcanic breccia pipes, gold-bearing quartz veins within granitoid intrusives and in volcanic contact rocks, and low-grade disseminated porphyry-type copper and molybdenum deposits. The porphyry-type deposits occur in distinct belts related to intrusives of different ages: Devonian (Thomson Fold Belt), Late Carboniferous—Early Permian (Hodgkinson—Broken River Fold Belt). Late Permian Middle Triassic (southeast Queensland part of the New England Fold Belt), and Early Cretaceous (northern New England Fold Belt). All are too low grade to be of economic importance at present.Tertiary deep weathering events were responsible for the formation of lateritic nickel deposits on ultramafics and surficial manganese concentrations from disseminated mineralisation in cherts and jaspers.  相似文献   

14.
阿尔泰是中亚成矿域重要的内生金属矿产集中区,该矿集区晚古生代发育有 5类内生摘金属要矿床:1)块状硫化物Cu-Pb-Zn矿床,2)斑岩型Cu-Au矿床,3)岩浆 Cu-Ni硫化物矿床,4)矽卡岩型Cu-Mo-Fe矿床,5)造山型金矿床和伟晶岩型稀有金属矿床。在构造上,这些矿床的形成与阿尔泰造山带俯冲—增生作用密切相关。阿尔泰晚古生代矿床的形成可以划分为3个主要阶段:Ⅰ)早-中泥盆世,沿阿尔泰南缘古生代活动大陆边缘弧后伸展,导致在阿尔泰西部琼库尔—塔拉特地质体中形成的多金属火山成因块状硫化物矿床,以及阿尔泰东段铁—铜矽卡岩矿床;Ⅱ)石炭纪—二叠纪的地体增生和弧岩浆作用,在布尔津—二台和额尔齐斯地体中形成了广泛分布的斑岩型矿床、岩浆铜镍硫化物矿床,在额尔齐斯地体中形成的铜铁矽卡岩矿床;Ⅲ)早二叠世的持续增生导致阿尔泰南部的杜拉特岛弧形成,并伴随有矽卡岩铜钼矿床和造山型金矿的形成;晚二叠世阿尔泰地区进入造山带演化阶段,并发生区域动力热流变质作用和片麻岩穹隆,伴随有花岗岩化和重熔岩浆活动和大量伟晶岩矿床的形成。晚古生代阿尔泰南缘的俯冲—增生构造演化过程,导致了不同类型内生金属矿床的形成,构成了我国重要的内生金属矿集区和矿山后备基地。  相似文献   

15.
新疆北部晚古生代地质构造演化复杂,岩浆作用形式多样,造就了大规模的成矿作用。本研究紧紧围绕岩浆铜镍矿床、斑岩型铜(钼)矿床及火山岩型磁铁矿矿床,从含矿岩体的岩浆起源、岩浆演化及成矿特点,系统研究深部相应岩浆活动的地质过程。通过典型矿床的深入剖析,建立相应矿床类型的成矿模式,破解制约找矿突破的控制因素,系统阐述了板块构造与地幔柱体制叠加并存的地质特征与成矿表现。鉴于塔里木地幔柱的活动特点和成矿表现,将其与新疆北部三类主要矿床类型建立关联,对比岩石学、年代学及地球化学特点,发现其成矿类型与塔里木地幔柱及板块构造存有密切关系,可能是两种构造体制叠加并存的结果。塔里木克拉通深部熔融的地幔物质,围绕刚性塔里木克拉通边缘不断上涌,并与表壳物质发生交换,随着俯冲板块的持续和减弱,深部上涌的地幔物质不断加强,先后形成因深部地幔物质多寡而金属聚集的不同矿床类型。  相似文献   

16.
中亚造山带以晚古生代成矿为特色,但最近十几年来在新疆阿尔泰、东天山等发现越来越多的三叠纪矿床,包括3个超大型矿床。在古生代造山带中为什么三叠纪能够成矿和成大矿,不同类型矿产特征和分布规律是值得关注的重要科学问题。目前确定新疆中亚造山带19个三叠纪矿床主要为花岗伟晶岩型稀有金属矿床、斑岩型钼矿床和矽卡岩型钨矿床。花岗伟晶岩型稀有金属矿床分布于阿尔泰,斑岩型钼矿床、矽卡岩型钨矿床和钨(钼)矿床分布于东天山。19个矿床的成矿年龄变化于193~248 Ma,峰值为215 Ma。不同矿床类型成矿时代略有差别,形成时间相对较早的有矽卡岩型,其次是斑岩型,伟晶岩型形成时间跨度最大,多数形成于晚三叠世,少数延续到早侏罗世。东天山沙东-小白石头一带钨矿和阿尔泰稀有金属矿最具找矿潜力。  相似文献   

17.
《地学前缘(英文版)》2020,11(4):1271-1287
The northern Xinjiang region is one of the most significant iron metallogenic provinces in China.Iron deposits are found mainly within three regions:the Altay,western Tianshan,and eastern Tianshan orogenic belts.Previous studies have elaborated on the genesis of Fe deposits in the Altay orogenic belt and western Tianshan.However,the geological characteristics and mineralization history of iron deposits in the eastern Tianshan are still poorly understood.In this paper I describe the geological characteristics of iron deposits in the eastern Tianshan,and discuss their genetic types as well as metallogenic-tectonic settings,Iron deposits are preferentially distributed in central and southern parts of the eastern Tianshan.The known iron deposits in the eastern Tianshan show characteristics of magmatic Fe-Ti-V(e.g.,Weiya and Niumaoquan),sedimentary-metamorphic type(e.g.,Tianhu),and iron skarn(e.g.,Hongyuntan).In addition to the abovementioned iron deposits,many iron deposits in the eastern Tianshan are hosted in submarine volcanic rocks with well-developed skarn mineral assemblages.Their geological characteristics and magnetite compositions suggest that they may belong to distal skarns.SIMS zircon U-Pb analyses suggest that the Fe-Ti oxide ores from Niumaoquan and Weiya deposits were formed at 307.7±1.3 Ma and 242.7±1.9 Ma,respectively.Combined with available isotopic age data,the timing of Fe mineralization in the eastern Tianshan can be divided into four broad intervals:Early Ordovician-Early Silurian(476-438 Ma),Carboniferous(335-303 Ma),Early Permian(295-282 Ma),and Triassic(ca.243 Ma).Each of these episodes corresponds to a period of subduction,post-collision,and intraplate tectonics during the Paleozoic and Mesozoic time.  相似文献   

18.
新疆准噶尔北缘早石炭世金-铜-钼成矿事件:年代学证据   总被引:2,自引:0,他引:2  
新疆准噶尔北缘地区已发现多处大中型内生金属矿床,它们主要形成于2个构造-岩浆活动期,即泥盆纪洋陆俯冲期的岛弧型斑岩铜(金)矿,二叠纪后碰撞造山期的铜镍硫化物型矿床和造山型(或剪切带型)Au矿。作者近年来在对该区地质构造和矿床研究中获得了一批早石炭世成岩成矿年代学数据:除已发表的希勒库都克斑岩铜钼矿床流纹斑岩(329Ma)和辉钼矿(327Ma)年龄外,本文工作新近获得201金矿闪长岩年龄为324Ma、科克森套地区花岗闪长斑岩年龄为328Ma、库尔吐班套地区花岗岩年龄为323Ma、阿克塔斯Au矿区花岗闪长岩年龄为327Ma,这些年龄数据集中在323~328Ma,即早石炭世(主要在维宪阶和谢尔普霍夫阶)。综合分析认为,该区在早石炭世洋盆已经闭合进入碰撞造山阶段,该阶段岩浆活动以出露小规模中酸性岩脉、岩株为特征,构造活动和壳幔相互作用强烈,主要成矿类型有斑岩型Cu Mo矿、浅成低温热液型Au矿、脉岩-构造蚀变岩型Au矿,构成一独特的与浅成岩有关的早石炭世金-铜-钼成矿带。  相似文献   

19.
中亚造山带东部岩浆热液矿床时空分布特征及其构造背景   总被引:1,自引:0,他引:1  
中亚造山带东部是古亚洲洋构造域、鄂霍茨克洋构造域和古太平洋构造域复合叠加区域,矿产资源丰富。本文收集2000—2014年公开发表文献中岩浆热液矿床约1 200个同位素年龄数据,整理出201个较为可靠的年龄数据,通过数字化编图,揭示成矿的时空分布特征及形成背景。结果显示:中亚造山带东部成矿作用始于寒武纪,出现6个重要成矿期:510~473、373~330、320~253、250~210、210~167、155~100 Ma。510~473 Ma(峰值507 Ma),矿床主要分布在大兴安岭—小兴安岭—张广才岭和北山地区,零星发育热液脉型和斑岩型铁铜金钨矿床,与古亚洲洋开始俯冲及微陆块碰撞拼合有关。373~330 Ma(峰值372Ma),矿床主要分布在南蒙古奥尤陶勒盖地区,发育超大型斑岩型铜金矿床,形成于古亚洲洋俯冲环境。320~253 Ma,矿床主要分布在大兴安岭南段,发育少量斑岩型铜矿床和造山型金矿床;其中,298 Ma在大兴安岭南段首次出现以钼为主的斑岩型矿床,指示该区板块俯冲增生向拼贴转变逐渐过渡。250~210 Ma(峰值244 Ma),在蒙古—鄂霍茨克造山带东侧额尔古纳—中蒙古地块主要形成斑岩型铜矿床,可能与蒙古—鄂霍茨克洋俯冲有关;以东地区,主要在大兴安岭南段和辽远地块形成斑岩型钼矿床,在张广才岭发育岩浆熔离型铜镍矿床,反映了古亚洲洋闭合后伸展环境。210~167 Ma(峰值170 Ma),在蒙古—鄂霍茨克造山带西侧乌兰巴托西北部发育造山型-斑岩型金矿床,其东侧额尔古纳地区形成斑岩型铜钼矿床,可能与蒙古—鄂霍茨克洋俯冲碰撞有关;在吉黑东部—张广才岭—小兴安岭—大兴安岭,发育斑岩型钼铜矿床和矽卡岩型铅锌钨金矿床组合,可能属于古太平洋板块向西俯冲成矿体系。155~100 Ma(峰值136 Ma),中亚造山带东部整体处于伸展环境;其中,155~120 Ma在额尔古纳地区主要发育浅成低温热液型银铅锌矿床和造山型金矿床,大兴安岭北段发育斑岩型钼矿床,可能反映了额尔古纳地区和大兴安岭北段受蒙古—鄂霍茨克洋碰撞后伸展环境控制,而在吉黑东部形成浅成低温热液型金矿床,大兴安岭南段发育热液脉型-矽卡岩型锡矿床,可能受古太平洋板块向北俯冲弧后伸展的控制;120~100 Ma沿着华北克拉通和佳蒙陆块边缘发育浅成低温热液型-斑岩型金钼矿床。本研究综合岩浆热液矿床时空分布和矿床类型,进一步揭示了古亚洲洋构造域控制中亚造山带东部古生代成矿作用持续到晚二叠世(到早三叠世),并在晚三叠世叠加古太平洋构造域成矿体系,而额尔古纳—中蒙古地块成矿作用在三叠纪开始主要受蒙古—鄂霍茨克洋构造域限定,并持续到早白垩世早期。  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