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 29 毫秒
1.
The Pulang complex is located tectonically at the southern margin of the Yidun–Zhongdian island arc belt in Yunnan province, China, and is closely related to formation of the Pulang copper deposit, which is the largest copper deposit in Asia. The Pulang complex can be divided into three intrusion stages based on contact relationships and petrological characteristics: (1) a first stage of quartz dioritic porphyry; (2) a second stage of quartz monzonitic porphyry; and (3) a third stage of granodioritic porphyry. The crystallization ages of these intrusion stages were determined by single-zircon U–Pb dating, yielding ages of 221.0 ± 1.0, 211.8 ± 0.5, and 206.3 ± 0.7 Ma for the first, second, and third stages, respectively. These dates, integrated with previous geochronological data and field investigations, indicate that the second-stage quartz monzonitic porphyry has a close spatial and temporal relationship with the large Pulang porphyry copper deposit. These age data, geochemical and Sr–Nd isotopic results suggest that the Pulang complex formed in the Indo-Chinese epoch (257 ~ 205 Ma) by multiphase intrusion of a mixture of mantle- and crust-derived magmas.  相似文献   

2.
云南格咱岛弧是西南三江构造-岩浆岩带中义敦岛弧的重要组成部分,位于义敦岛弧带的南端,是中国西部地区一个重要的铜铅锌多金属成矿带和印支期斑岩铜矿带,其中普朗斑岩型铜矿是印支期斑岩铜矿的典型代表。本文在前人研究基础上,采用大数据分析技术,对普朗斑岩铜矿与成矿有关的花岗岩与全球埃达克岩进行了对比研究,得到506个元素组合,获得交叠率比值127765个。结果表明,普朗斑岩与全球埃达克岩的地球化学数据基本上重叠,具有与全球埃达克岩类似的特征;但Cu、Mo、Pb、Zn成矿元素明显超出全球埃达克岩的分布范围,REE和Ga与主元素的比值虽然在全球埃达克岩范围内,却显示了位于全球埃达克岩某个端元的现象。另外,与斑岩铜矿有关的埃达克岩分布于全球埃达克岩范围的局部,数据部分或大部分逸出了全球埃达克岩分布的范围,具有低Sr/Cu、Ta/Cu、Al/Mo、Mn/Zn、Mn/Cu、Mn/Mo以及Hf、K、Ti、P、Co、Th、Ca/Cu比值的特征,数据点偏离全球埃达克岩范围越远,蚀变与矿化作用越强烈,与铜钼成矿关系越密切。本文地球化学数据挖掘结果可以作为找矿标志来使用,这为普朗铜矿床深部及外围的地质找矿提供了新的科学依据。  相似文献   

3.
滇西北雪鸡坪斑岩铜矿流体包裹体初步研究   总被引:11,自引:2,他引:9  
雪鸡坪中型斑岩铜矿床位于三江地区义敦岛弧南端的中甸弧,成矿斑岩为石英闪长玢岩和石英二长斑岩,属于印支期产物。含矿岩体蚀变分带明显,由中心向外发育强硅化带→石英绢云母化带→粘土化-石英绢云母化带→青磐岩化带,工业矿体赋存于斑岩体中心强硅化和石英绢云母化带内。矿化类型以网脉状矿化为主,细脉浸染状矿化不发育。本文对主要矿化阶段石英脉中的流体包裹体系统进行了包裹体岩相学、显微测温学和激光拉曼谱学研究,发现与成矿有关的流体包裹体可以分为水溶液包裹体、CO2包裹体和含子矿物包裹体3类,子矿物主要为石盐、方解石、赤铁矿和少量CaCl2水合物及不透明硫化物。其中含子矿物包裹体均一温度为230~420℃,盐度为33.48%~75.40%NaCl equiv.,密度为1.01~1.09g/cm^3。激光拉曼光谱分析表明,包裹体的液相成分主要为H2O,气相成分为H2O和CO2。早期水溶液包裹体和CO2包裹体共生,其均一温度相近,以及纯CO2包裹体的发现,指示成矿流体存在不混溶现象,这种不混溶是由原始岩浆流体“二次沸腾”作用产生的。CO2相分离、温压条件降低和pH值升高是雪鸡坪斑岩铜矿硫化物沉淀的主要原因。晚期低温、低盐度的流体可能来源于大气降水与岩浆流体的混和,对矿化的意义不大。  相似文献   

4.
滇西北中甸松诺含矿斑岩的锆石SHRIMP U-Pb年龄及地质意义   总被引:9,自引:1,他引:8  
位于义敦岛弧南端的中甸岛弧中广泛发育印支期斑岩及斑岩型和矽卡岩型铜矿床。松诺(或称松诺力赞)复式岩体位于东斑岩带中部,由石英闪长玢岩、黑云石英二长斑岩、闪长玢岩和含矿石英二长斑岩组成,其南部为普朗超大型斑岩铜矿床,北部为地苏嘎铜矿点。本文对含矿石英二长斑岩进行了岩相学和锆石SHRIMPU-Pb定年研究,结果表明所有锆石颗粒自形较好且均发育规则的韵律环带,Th含量为180~854μg/g,U含量为270~709μg/g,Th/U比值为0.77~1.24,为典型岩浆成因锆石。获得了含矿石英二长斑岩的侵位年龄为220.9±3.5Ma(n=9,MSWD=1.6),这与中甸岛弧洋壳俯冲造山作用的时限(210~235Ma)相吻合。  相似文献   

5.
The Bolong porphyry Cu–Au deposit is a newly discovered deposit in the central Tibetan Plateau, and is ranked as the second largest copper deposit discovered to date in the Bangong‐Nujiang metallogenic belt in China. Three granodiorite porphyry phases occur within the Bolong porphyry Cu–Au deposit. Phyllic alteration is widespread on the surface of the deposit, and potassic alteration occurs at depth, associated with granodiorite porphyries. The copper and gold mineralization is clearly related to the potassic and phyllic alteration. Multiple chronometers were applied to constrain the timing of magmatic–hydrothermal activity at the Bolong deposit. Zircon U–Pb geochronology reveals that the granodiorite porphyry phases were emplaced at ca. 120 Ma. Re–Os data of four molybdenite samples from quartz–molybednite veinlets yielded an isochron age of 119.4 ± 1.3 Ma. The plateau age of hydrothermal K‐feldspar from the potassic alteration zone, analyzed by 40Ar/39Ar dating, is 118.3 ± 0.6 Ma, with a similar reverse isochron age of 118.5 ± 0.7 Ma. Therefore, the magmatic–hydrothermal activity occurred at ca. 120–118 Ma, which is similar in age to the neighboring Duobuza porphyry copper deposit. The period of 120–118 Ma is therefore important for the development of porphyry Cu–Au mineralization in the central Tibetan Plateau, and these porphyry deposits were formed during the final stages of the northward subduction of the Neo‐Tethys Ocean.  相似文献   

6.
铜厂沟钼多金属矿床位于扬子陆块西缘坳陷带与义敦岛弧和甘孜-理塘结合带3个构造单元交汇部位,它是近年来对该区燕山期成矿作用研究并取得找矿突破的重要成果。该矿床包含了岩枝全岩矿化、顶部矽卡岩型及围岩热液脉型等热液交代矿化,构成了斑岩成矿系列。矿床已达大型,并显示出超大型的远景。运用辉钼矿Re-Os同位素定年技术,获得了6件样品的模式年龄,为(82.34±1.28)88.27±1.23Ma,其加权平均年龄为(85±2)Ma,等时线年龄为(85±10)Ma,两者在误差范围内一致,表明成矿作用发生于燕山期,此时,该区处于中咱地块与扬子陆块强烈碰撞至后碰撞阶段,由于地壳加厚,壳熔或壳幔混熔形成了S型花岗(斑)岩和强烈的钼多金属矿化。铜厂沟矿床内辉钼矿样品的w(Re)为16 44043 530 ng/g,指示其成矿物质来源为壳幔混源,以壳源物质为主。据野外调查和室内研究推测,在该矿区的深部存在燕山期的隐伏花岗(斑)岩体,成矿作用与岩浆上侵有关。该区的燕山期酸性岩带穿过了义敦岛弧进入扬子陆块西缘,呈近NS向展布,滇西北地区,北部从休瓦促向南至热林、红山、铜厂沟,形成了一系列大-中型钼多金属矿床。成矿背景和成矿预测研究对该带的找矿勘查具有十分重要的指导意义。  相似文献   

7.
《China Geology》2022,5(4):662-695
The porphyry copper belt in the Geza island arc in southwestern China is the only Indosinian porphyry copper metallogenic belt that has been discovered and evaluated so far. The Pulang porphyry copper deposit (also referred to as the Pulang deposit) in this area has proven copper reserves of 5.11×106 t. This deposit has been exploited on a large scale using advanced mining methods, exhibiting substantial economic benefit. Based on many research results of previous researchers and the authors’ team, this study proposed the following key insights. (1) The Geza island arc was once regarded as an immature island arc with only andesites and quartz diorite porphyrites occurring. This understanding was overturned in this study. Acidic endmember components such as quartz monzonite porphyries and quartz monzonite porphyries have been identified in the Geza island arc, and the mineralization is mainly related to the magmatism of quartz monzonite porphyries. (2) Complete porphyry orebodies and large vein orebodies have developed in the Pulang deposit. Main orebody KT1 occurs in the transition area between the potassium silicate alteration zone of quartz monzonite porphyries and the sericite-quartz alteration zone. Most of them have developed in the potassium silicate alteration zone. The main orebody occurs as large lenses at the top of the hanging wall of rock bodies, with an engineering-controlled length of 1920 m and thickness of 32.5‒630.29 m (average: 187.07 m). It has a copper grade of 0.21%‒1.56% (average: 0.42%) and proven copper resources of 5.11×106 t, which are associated with 113 t of gold, 1459 t of silver, and 170×103 t of molybdenum. (3) Many studies on diagenetic and metallogenic chronology, isotopes, and fluid inclusions have been carried out for the Pulang deposit, including K-Ar/Ar-Ar dating of monominerals (e.g., potassium feldspars, biotites, and amphiboles), zircon U-Pb dating, and molybdenite Re-Os dating. The results show that the porphyries in the Pulang deposit are composite plutons and can be classified into pre-mineralization quartz diorite porphyrites, quartz monzonite porphyries formed during the mineralization, and post-mineralization granite porphyries, which were formed at 223±3.7 Ma, 218±4 Ma, and 207±3.9 Ma, respectively. The metallogenic age of the Pulang deposit is 213‒216 Ma. (4) The petrogeochemical characteristics show that the Pulang deposit has the characteristics of volcanic arc granites. The calculation results of trace element contents in zircons show that quartz monzonite porphyries and granite porphyries have higher oxygen fugacity. The isotopic tracing results show that the diagenetic and metallogenic materials were derived from mixed crust- and mantle-derived magmas.©2022 China Geology Editorial Office.  相似文献   

8.
位于西南三江构造火成岩带义敦弧南段的中甸弧,以发育印支期斑岩型铜矿床和燕山期矽卡岩-热液石英脉型钼-钨-铜矿而著称.针对普朗、地苏嘎和休瓦促成矿岩体中的榍石单矿物,利用EMPA和LA-ICP-MS测定化学成分,探讨化学成分对成岩成矿的指示意义.普朗、地苏嘎和休瓦促岩体榍石均为岩浆来源.普朗岩体榍石形成温度为743~754℃,休瓦促岩体榍石形成温度为702~753℃.根据榍石的δCe、δEu推断三个岩体氧逸度高低顺序为:普朗>地苏嘎>休瓦促,榍石中的Cu含量对母岩浆中的Cu金属量变化不敏感,不能单独作为母岩浆Cu金属量的判别标志;钼成矿对岩体的氧逸度要求不高,在利用榍石中的Mo含量判断母岩浆中的Mo金属量时要综合考虑氧逸度和辉钼矿结晶的影响;岩体中的F含量能降低岩浆粘度,对钼成矿有促进作用,可以作为Mo成矿的指标;榍石中的W、Sn含量对Mo-W矿床具有指示作用,休瓦促Mo-W矿岩体中榍石的W、Sn含量要高于普朗和地苏嘎不成Mo-W矿的岩体.   相似文献   

9.
张达玉  周涛发  袁峰  范裕  刘帅  彭明兴 《岩石学报》2010,26(11):3327-3338
延西铜矿床位于新疆东天山觉罗塔格地区北部的哈尔里克-大南湖岛弧带内,是延东-土屋斑岩型成矿带的西延部分。矿床的赋矿地层主要为石炭系企鹅山群,被含矿斜长花岗斑岩侵入。矿床中的主要岩石类型为安山岩、闪长玢岩以及斜长花岗斑岩,安山岩和闪长玢岩具有同源性及岛弧火山岩的特点,是主要的赋矿围岩;斜长花岗斑岩具有埃达克质岩石的特征,与成矿作用直接相关,其形成晚于安山岩、闪长玢岩。本文测得延西铜矿床辉钼矿Re-Os年龄为326.2±4.5Ma,可以代表其成矿年龄,与土屋-延东铜矿床322.7±2.3Ma的辉钼矿Re-Os年龄基本相同;包括延西铜矿床在内的土屋-延东斑岩型铜矿带成矿时代与成岩时代基本一致或稍晚。延西铜矿床具有斑岩型铜矿床的矿化和围岩蚀变特征,与土屋-延东斑岩型铜矿带内其它矿床均为中石炭世同源岩浆演化的产物,具有相似的成矿作用过程,成矿物质均为岩浆来源,这些矿床可能为同一岩浆活动在不同部位发生矿化的产物。延西铜矿床以及土屋-延东斑岩型铜矿带形成于东天山觉罗塔格地区晚古生代的挤压岛弧背景,应与哈尔里克-大南湖晚古生代岛弧的形成相伴,可能与康古尔塔格大洋板块向北部哈尔里克-大南湖岛弧的俯冲有关。  相似文献   

10.
The Hongniu-Hongshan porphyry and skarn copper deposit is located in the Triassic Zhongdian island arc, northwestern Yunnan province, China. Single-zircon laser ablation inductively coupled plasma mass spectrometry U–Pb dating suggests that the diorite porphyry and the quartz monzonite porphyry in the deposit area formed at 200 Ma and 77 Ma, respectively. A Re–Os isotopic date of molybdenite from the ore is 78.9 Ma, which indicates that in addition to the known Triassic Cu–(Au) porphyry systems, a Late Cretaceous porphyry Cu–Mo mineralization event also exists in the Zhongdian arc. The quartz monzonite porphyry shows characteristics of a magnetite series intrusion, with a high concentration of Al, K, Rb, Ba, and Pb, low amount of Ta, Ti, Y, and Yb, and a high ratio of Sr/Y (average 26.42). The Cretaceous porphyry also shows a strong fractionation between light and heavy rare earth elements (average (La/Yb)N 37.9), which is similar to those of the Triassic subduction-related diorite porphyry in the Hongniu-Hongshan deposit and the porphyry hosting the Pulang copper deposit. However, in contrast to the older intrusions, the quartz monzonite porphyry contains higher concentrations of large ion lithophile elements and Co, and lesser Sr and Zr. Therefore, whereas the Triassic porphyry Cu–(Au) mineralization is related to slab subduction slab in an arc setting, the quartz monzonite porphyry in the Hongniu-Hongshan deposit formed by the remelting of the residual oceanic slab combined with contributions from subduction-modified arc lithosphere and continental crust, which provided the metals for the Late Cretaceous mineralization.  相似文献   

11.
土屋–延东铜矿带位于东天山大南湖–头苏泉岛弧带上,是目前新疆最大的铜矿带。铜矿体主要赋存于石炭纪斜长花岗斑岩和晚古生代企鹅山群中,但是前人研究表明斜长花岗斑岩的成岩年龄(339~332 Ma),明显老于成矿年龄(约322Ma),因此,土屋–延东铜矿带的致矿岩体至今还存有争议。本次研究首次对该铜矿带晚石炭世石英钠长斑岩进行了详细的岩相学和LA-ICP-MS锆石U-Pb年代学分析,并结合辉钼矿Re-Os同位素年龄测定,探讨土屋–延东铜矿带矿床成因。对延东铜矿4件辉钼矿样品进行Re-Os同位素分析,得到322.0±2.7 Ma的加权平均模式年龄和319.1±9.1 Ma等时线年龄,明显要晚于斜长花岗斑岩年龄。两个石英钠长斑岩样品LA-ICP-MS锆石U-Pb年龄分别为324.9±2.4 Ma和324.5±2.1 Ma,表明石英钠长斑岩为晚石炭世岩浆活动的产物。岩相学研究表明,石英钠长斑岩中发育黄铜矿+绿泥石+硬石膏+方解石矿物组合,这与延东铜矿主成矿阶段的矿物组合基本一致,并且石英钠长斑岩成岩年龄与辉钼矿年龄在误差范围内一致,表明石英钠长斑岩可能与土屋-延东铜矿带铜矿形成有着密切关系,这一发现可能为大南湖–头苏泉岛弧带晚石炭世铜矿的勘查提供新的思路。  相似文献   

12.
云南普朗铜多金属矿是格咱岛弧内一个典型的斑岩型矿床,尽管前人对该矿床开展了若干研究,但对于该矿床是否存在叠加成矿作用仍存在争议。研究团队在普朗典型矿床调研过程中,在普朗I号探矿平硐中首次发现了气液隐爆角砾岩。详细的岩相学及矿相学研究表明,隐爆角砾岩角砾为含矿石英二长斑岩,胶结物为细粒石英,且细粒石英中含有黄铜矿连晶。根据气液隐爆角砾岩产出位置及特征推断,隐爆作用系石英二长斑岩就位之后的岩浆活动引起,并伴随成矿作用发生。普朗斑岩型铜多金属矿成矿作用由卡尼阶与诺利阶两个成矿阶段构成,其中铜成矿作用跨越了卡尼阶和诺利阶,而钼成矿始于诺利阶。综合分析指出,普朗矿区深部具有斑岩型钼(铜)多金属矿的找矿潜力。  相似文献   

13.
三江地区义敦岛弧造山带演化和成矿系统   总被引:80,自引:12,他引:80       下载免费PDF全文
义敦岛弧是喜马拉雅巨型造山带中的一个复合造山带,它经历了印支期洋壳俯冲造山、燕山湖弧-陆碰撞和喜马拉雅期陆内走滑作用诸演化历史。可能由于洋壳板片俯冲角度不同,义敦晚三叠世古岛弧带(206~237 Ma)南北两段具有不同的发育历史,北段昌台弧以发育孤间裂谷为特色,具张性弧特征,发育扩张环境流体聚敛成矿系统,形成VMS型Zn-Pb-Cu矿床和浅成低温热液型Ag-Au-Hg矿床;南段中甸弧不发育弧后盆地,但广泛发育钙碱性弧火山岩-玢岩-斑岩杂岩系和挤压环境岩浆-流体成矿系统,形成斑岩型-夕卡岩型铜多金属矿床。在三叠纪-侏罗纪之交的弧-陆碰撞作用中,早期大陆板片俯冲形成同碰撞花岗岩带(约200 Ma),晚期造山后伸展作用,形成A型花岗岩带(75~138 Ma),伴随扬子大陆板片俯冲而发生的强烈剪切和推覆,在甘孜-理塘蛇绿混杂带发育挤压剪切环境流体聚敛成矿系统,形成剪切带型金矿。伴随造山后伸展和A型花岗岩侵位,发育伸张环境岩浆-流体聚敛成矿系统,主要形成夕卡岩型锡矿和构造破碎带热浪脉型银多金属矿床。印度-亚洲大陆碰撞在义敦造山带主要表现为陆内走滑作用,并控制碱性花岗岩和花岗斑岩的发育(50~30 Ma),伴随斑岩型金矿的形成。  相似文献   

14.
应用高精度离子探针锆石U-Pb测年方法,获得普朗斑岩铜矿床中3件矿化石英二长斑岩的锆石年龄分别为228±3Ma、226.3±2.8Ma、226±3Ma。锆石形态和铀钍参数均属典型的岩浆锆石特征,年龄值在误差范围内近似一致,表明形成矿化斑岩的中酸性岩浆从岩浆房快速上升侵位。结合前人已发表的矿化斑岩的黑云母Ar-Ar坪年龄及辉钼矿Re-Os同位素年龄等数据,推测普朗斑岩铜矿的岩浆—热液系统从岩浆侵入至矿化阶段的持续时间可能长达10Ma以上,主成矿期约为216~214Ma。从岩浆房分异出的富含成矿物质和挥发份的岩浆流体在相对较晚阶段对普朗复式岩体发生了强烈的蚀变作用并可能进一步萃取了岩体中的成矿物质。  相似文献   

15.
笔者通过对冈底斯成矿带驱龙、厅宫斑岩铜矿区和甲马、知不拉等矽卡岩型铜多金属矿区的辉钼矿样品进行的Re-0s法同位素定年研究,获得驱龙、厅宫、甲马和知不拉等矿区的精确成矿年龄。4件驱龙斑岩铜矿区辉钼矿样品的Re-Os模式年龄介于(15.75±0.42)Ma~(16.23±0.90)Ma之间,等时线年龄为(15.99±0.32)Ma;7件厅宫斑岩铜矿矿区辉钼矿样品的Re-Os模式年龄介于(15.5±0.3)Ma~(16.3±0.3)Ma之间,等时线年龄为(15.49±0.36)Ma;在矽卡岩型铜多金属矿区中,7件甲马矿区辉钼矿样品的Re-Os模式年龄介于(15.4±0.2)Ma~(15.5±0.2)Ma之间,等时线年龄为(15.18±0.98)Ma;5件知不拉矿区辉钼矿样品的Re-Os模式年龄介于(16.88±0.28)Ma~(17.06±0.27)Ma之间,等时线年龄为(16.90±0.64)Ma。斑岩铜矿区和矽卡岩型铜多金属矿区所获得的年龄数据基本一致,其年龄明显晚于中生代弧间盆地和碰撞型花岗岩的发育时间,同时矽卡岩型铜多金属矿床在空间上亦分布于斑岩铜矿床的外围。因此笔者认为甲马和知不拉等铜铅锌矿床与冈底斯成矿带新生代晚期大规模成矿形成的斑岩铜钼矿床属于统一的斑岩-矽卡岩成矿系统,是由深源花岗质岩浆的岩浆-热液系统在不同的围岩介质条件成矿的产物。  相似文献   

16.
The Kalaxiange’er porphyry copper ore belt is situated in the eastern part of the southern Altai of the Central Asian Orogenic Belt and forms part of a broad zone of Cu porphyry mineralization in southern Mongolia, which includes the Oyu Tolgoi ore district and other copper–gold deposits. The copper ore bodies are spatially associated with porphyry intrusions of granodiorite, quartz diorite, quartz syenite, and quartz monzonite and have a polygenetic (polychromous) origin (magmatic porphyry, hydrothermal, and supergene). The mineralized porphyries are characterized by almost identical REE and trace element patterns. The Zr/Hf and Nb/Ta ratios are similar to those of normal granite produced through the evolution of mantle magma. The low initial Sr isotope ratio ISr, varying within a narrow range of values (0.703790–0.704218), corresponds to that of primitive mantle, whereas the εNd(T) value of porphyry varies from 5.8 to 8.4 and is similar to that of MORB. These data testify to the upper-mantle genesis of the parental magmas of ore-bearing porphyry, which were then contaminated with crustal material in an island-arc environment. The isotopic composition of sulfur (unimodal distribution of δ34S with peak values of − 2 to − 4‰) evidences its deep magmatic origin; the few lower negative δ34S values suggest that part of S was extracted from volcanic deposits later. The isotopic characteristics of Pb testify to its mixed crust–upper-mantle origin. According to SHRIMP U–Pb geochronological data for zircon from granite porphyry and granodiorite porphyry, mineralization at the Xiletekehalasu porphyry Cu deposit formed in two stages: (1) Hercynian “porphyry” stage (375.2 ± 8.7 Ma), expressed as the formation of porphyry with disseminated and vein–disseminated mineralization, and (2) Indosinian stage (217.9 ± 4.2 Ma), expressed as superposed hydrothermal mineralization. The Re–Os isotope data on molybdenite (376.9 ± 2.2 Ma) are the most consistent with the age of primary mineralization at the Xiletekehalasu porphyry Cu deposit, whereas the Ar–Ar isotopic age (230 ± 5 Ma) of K-feldspar–quartz vein corresponds to the stage of hydrothermal mineralization. The results show that mineralization at the Xiletekehalasu porphyry Cu deposit was a multistage process which resulted in the superposition of the Indosinian hydrothermal mineralization on the Hercynian porphyry Cu mineralization.  相似文献   

17.
土屋和延东铜矿床位于东天山大南湖-头苏泉岛弧带南部,是中亚成矿带的重要组成部分。文章根据脉次穿插关系、蚀变矿物组合及矿物共生关系,将土屋和延东铜矿床均划分为斑岩成矿期、叠加改造期和表生期3个期次。土屋铜矿床的铜矿化形成于斑岩成矿期和叠加改造期,而延东铜矿床的铜矿化主要形成于叠加改造期;土屋和延东铜矿床伴生的钼矿化主要形成于叠加改造期。因此,笔者认为前人获得的辉钼矿Re-Os年龄(326.2~322.7 Ma)代表叠加改造期的成矿年龄,该期矿化与石英钠长斑岩((323.6±2.5)Ma)的侵入相关,而斑岩成矿期的矿化与斜长花岗斑岩(339~332 Ma)相关,成矿年龄为341.2~333.9 Ma。叠加改造期的存在,使得斑岩成矿期的蚀变分带可能受到了叠加和破坏。  相似文献   

18.
云南普朗斑岩型铜矿成矿岩体的基本特征   总被引:12,自引:4,他引:8       下载免费PDF全文
普朗斑岩型铜矿是格咱地区印支期斑岩型铜矿的典型代表,产于义敦构造-岩浆带南端的复式岩体。复式岩体为浅成-超浅成的中酸性斑(玢)岩体,可划分为3个侵入阶段,最早为石英闪长玢岩,中期为石英二长斑岩,晚期为花岗闪长斑岩。岩石地球化学特征表明,岩石富集Ba、La、Rb、Sr、K和亲铜元素Cu、Pb,亲铁元素Mo、Ni,亏损Nb、Zr、Hf、Ti。斑(玢)岩与岛弧花岗岩的岩石系列相同,属钙碱性岩系,成因类型一致,属I型花岗岩。普朗斑岩型铜矿床主要产于印支期的中酸性斑(玢)岩体,成矿作用受岩浆岩、侵位地层、热液运移、热液蚀变作用和构造空间的控制,其印支期构造-岩浆-热液之间的耦合,共同形成了斑岩成矿系统。  相似文献   

19.
云南格咱岛弧成矿带是西南三江构造岩浆岩带的重要组成部分,是我国近年来新发现的铜多金属矿集区,产出有普朗超大型斑岩型铜矿、雪鸡坪中型斑岩型铜矿、红山大型矽卡岩-斑岩型铜矿等。测试结果表明,典型成矿斑岩体的矿石矿物铅同位素组成:206Pb/204Pb为17.680~19.165,207Pb/204Pb为15.453~15.773,208Pb/204Pb为37.730~39.654,铅同位素组成较为稳定,具有贫铀铅、富钍铅的特征。铅同位素组成与特征参数(Δβ与Δγ、V1与V2)之间具有明显的正相关性,依据铅构造模式判别和成因分类的综合分析,格咱岛弧成矿带的铅主要来源于地幔和下地壳,具壳幔混合来源的特征,其成矿作用与岩浆岩活动存在较为密切的关系。  相似文献   

20.
滇西马厂箐斑岩型铜钼(金)矿床成岩成矿时代研究   总被引:6,自引:0,他引:6       下载免费PDF全文
滇西马厂箐铜钼(金)矿床是金沙江-哀牢山构造带与喜马拉雅期富碱斑岩有关的典型斑岩型矿床之一。富碱斑岩侵入体为多期、多阶段岩浆活动形成的复式岩体,已有的研究资料表明岩浆活动时限在64~29 Ma。文中提供的锆石LA ICP MS U Pb和辉钼矿Re Os同位素年代学研究资料显示,马厂箐含矿岩体锆石U Pb年龄(封闭温度约800 ℃时)为(3793±082) Ma,代表了富碱斑岩的成岩年龄;辉钼矿的Re Os年龄(封闭温度约500 ℃)为(3472±05) Ma,代表成矿时代。该研究结果与前人确定的晚期富碱斑岩岩浆活动的时间(32 Ma)相近,也与前人获得的蚀变黑云母K Ar定年(封闭温度300 ℃)结果(351±08) Ma相近,因此可以认为成矿作用与岩体快速冷却过程中发生成矿流体大量分离和出溶有关。成岩作用与成矿作用的时间跨度大约为2 Ma。因此,金沙江-哀牢山多金属成矿带的斑岩型铜钼矿床是与富碱斑岩成岩作用近同期成矿作用的产物,成矿作用时限集中在40~35 Ma左右。  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