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1.
姜永果 《地质与勘探》2011,47(6):1903-1-11-1113
春都斑岩铜矿床地处著名的印支期中甸-义敦岛弧成矿带南端。矿区出露闪长玢岩-花岗闪长斑岩复式岩体,成矿岩体为印支晚期的花岗闪长斑岩。围绕成矿岩体,围岩蚀变强烈,蚀变分带明显,由中心向外,依次出现硅化钾化带→绢英岩化带→硅化带→硅化黑云母化带→青磐岩化带→绢云母化及泥化带。区内蚀变与矿化关系密切,蚀变类型决定矿化程度,蚀变...  相似文献   

2.
普朗斑岩铜矿蚀变及矿化特点   总被引:1,自引:0,他引:1  
普朗大型斑岩铜矿蚀变及矿化较典型。普朗岩体为同源多期复式斑岩体,石英二长斑岩构成岩体的中心相,从中心向外,各类蚀变成环带状发育,由内向外依次为强硅化带→钾硅化带→绢英岩化带→青盘岩化带。矿化亦相应具有分带性,从蚀变中心向外表现为浸染状黄铜矿、辉钼矿→细脉浸染状黄铁矿、黄铜矿→细脉状黄铁矿、黄铜矿→大脉状方铅矿、黄铁矿。  相似文献   

3.
红豆山铜矿床是南澜沧江带新发现的矿床之一。通过野外地质工作和系统构造—|蚀变岩相填图,发现该矿床蚀变类型主要以钾长石化、硅化、绿泥石化、绿帘石化为主,其次为碳酸盐化、绢云母化、黄铁矿化等,且在空间上呈现一定规律,各蚀变带具有明显的叠加现象。依据区内岩石蚀变矿物组合等特点,自断裂带→上盘围岩,共出现4个典型蚀变带,依次为碎裂岩化带→长英岩化—碳酸盐化—绢云母化带→硅化—绿泥石化—绿帘石化带→弱长英岩化安山岩带。矿(化)体主要分布在长英岩化、碳酸盐化、绢云母化带和硅化、绿泥石化、绿帘石化带。由斑岩脉中心至边缘发育钾化带→硅化带→青磐岩化带→绢云母化带,斑岩旁侧围岩中发育放射状石英—方解石—黄铜矿脉。  相似文献   

4.
本文对毕力赫金矿床Ⅱ矿带围岩蚀变及其与金矿化关系进行了研究.矿床主要蚀变类型为硅化、钾化、黄铁矿化、绢云母化、电气石化、绿泥石化、高岭土化、碳酸盐化,其中硅化、绢云母化、黄铁矿化与金矿化关系密切;蚀变分带明显,由地表向下,依次为青磐岩化带→绢英岩化带→钾质蚀变带,绢英岩化带与金矿化关系最为密切.  相似文献   

5.
海南省罗葵洞钼矿围岩蚀变找矿标志   总被引:1,自引:0,他引:1  
海南省罗葵洞钼矿是一处特大型斑岩型钼矿床,赋存于陆相火山岩与隐伏似斑状花岗岩接触界面及其外围,呈隐伏状产出,地表很难见到钼矿化露头.矿区最常见的蚀变是硅化和黄铁矿化,其次有钾化、绢云母化、绢英岩化、云英岩化、伊利石-水白云母化、黑云母化、绿帘石化、次闪石化、绿泥石化、碳酸盐化等,局部尚有叶腊石化、萤石化.其中硅化、钾化、绢英岩化、云英岩化与钼矿成矿关系密切.据初步研究,该区蚀变从火山口相中心,由内向外大致可分为不十分明显的4个蚀变带:强硅化蚀变带、硅钾蚀变带、硅化蚀变带、绿帘石-绿泥石化带.在详查工作中根据面形硅化细脉带,可以确定矿化范围,钾化强烈发育地段为钼矿富集部位.  相似文献   

6.
中甸普朗斑岩型铜矿床围岩蚀变初步研究   总被引:2,自引:0,他引:2  
普朗斑岩型铜矿床是近年发现的一个重要铜矿床,通过大量的野外地质资料收集和室内综合分析研究,结合钻探、物探、化探和遥感技术应用的成果,初步认为普朗印支期斑岩铜矿床热液蚀变是经过多期次、多阶段构造-热液事件形成的,具有由中心向外依次为硅化核、硅化、钾化带-绢英岩化带-青磐岩化带-角岩化带的面型蚀变特征。其中硅化、钾化、绢英岩化蚀变带与铜矿关系密切。蚀变作用既影响岩(矿)石的结构、构造,又导致矿石中主要氧化物含量和Cu品位的变化。矿化与蚀变引起的物探、化探和遥感异常有较好的关联性,异常是找矿与勘查的直接标志和指导工程布置的依据,对于在中甸地区寻找与勘查同类型矿床有重要意义。  相似文献   

7.
在给出明确的命名原则基础上,将矿床的蚀变围岩划分为五类:黄玉石英交代岩、绿泥石石英交代岩、绢云母石英交代岩、电气石绿泥石化花岗斑岩、钾长石化花岗斑岩。在平面上岩体中心部位为黄玉石英蚀变带,其两侧为绿泥石石英蚀变带;在剖面上由上向下依次出现绿泥石石英蚀变带→黄玉石英蚀变带→绢英岩化带→钾化带→(电气石)绿泥石化带。从蚀变岩石地球化学角度阐述了铜银锡各自不同的成矿部位。  相似文献   

8.
徐伯恩  罗诚 《云南地质》2012,(2):171-176
赋矿的普朗含矿复式斑岩体,具典型斑状特征及铜、钼、铁成矿专属性,由边缘到中心具石英闪长玢岩→石英二长斑岩演化关系,硅化钾化、绢英岩化蚀变与铜矿关系密切,尤以石英二长斑岩蚀变和矿化作用最强烈。硫同位素表明岩体属幔-壳源硫特征,铅同位素显示岩体铅集中分布于造山带演化线附近及下地壳、造山带、岛弧重叠区的特征。  相似文献   

9.
近年来红外光谱技术作为一种绿色、快速、无损、精确探测矿物的技术手段而倍受关注,针对斑岩型矿床蚀变矿物高度叠加、蚀变分带界线不明显、细粒蚀变矿物多、黏土蚀变矿物多等特征,该技术在蚀变矿物识别和勘探信息解读等方面优势突出。本文应用红外光谱技术对云南普朗斑岩铜矿区钻孔ZK1801岩心进行矿物识别和蚀变分带划分的研究,识别出钾硅酸盐化带、绿帘石-绿泥石化带、绿泥石-伊利石化带、石英-伊利石化带和泥化带。研究表明:普朗铜矿整个钻孔的蚀变矿物主要有石英、钾长石、绢云母、绿泥石、绿帘石、高岭石、蒙脱石、伊利石等;根据矿化特征,发现铜矿体广泛赋存在钾硅酸盐化带和绿帘石-绿泥石化带中,与矿化关系密切的蚀变矿物"石英+钾长石+绢云母"和"绿帘石+绿泥石",可以作为普朗矿床勘查的标型蚀变矿物组合;研究区广泛发育的绢云母Al—OH波长随钻孔深度增加而逐渐从2210~2205nm减小到2202~2198nm, Al—OH波长2210~2205nm(长波绢云母)与矿化关系密切,可以作为普朗矿床勘查的指示信息。  相似文献   

10.
云南普朗斑岩铜矿蚀变带成矿流体特征及其成矿意义   总被引:7,自引:2,他引:5  
云南普朗铜矿位于义敦—中甸岛弧带南缘,是近年来我国发现的一个大中型斑岩铜矿床。该矿床具有典型的斑岩铜矿蚀变分带,由中心向外依次为钾硅化带、绢英岩化带、青盘岩化带。对矿区不同蚀变带中的石英流体包裹体进行了岩相学观察、均一温度测量和激光拉曼探针成分分析。均一温度测量结果表明,从普朗斑岩铜矿床钾硅化带到绢英岩化带再到青盘岩化带,成矿流体的平均均一温度从274.4℃到236.4℃再到203.0℃,呈明显下降趋势,可能与天水参与成矿有关。同时,激光拉曼探针成分分析结果表明,普朗斑岩铜矿床矿化期间的成矿流体属于富硫富氯流体,这种温度较高且富硫富氯的成矿流体在钾硅化带和绢英岩化带发生矿化作用将导致成矿物质强烈富集成矿。  相似文献   

11.
中甸雪鸡坪斑岩铜矿地质及找矿远景   总被引:3,自引:0,他引:3  
雪鸡坪斑岩铜矿含矿母岩为印支期浅成相同熔型石英二长闪长玢岩、石英闪长玢岩、石英二长斑岩组成的复式岩株。发育面型蚀变带,经历气成一高温热液、中低温热液及低温热液三次矿液叠加成矿。在钾化带及石英一绢云母化带发育浸染状及网脉状铜矿化。认为普朗及其南部、地苏嘎是区内形成大型斑岩铜矿最有希望地区。  相似文献   

12.
大脉状产出的卓玛铜铅锌矿,成矿母岩为印支期侵位于图姆沟组的石英闪长玢岩、石英二长斑岩构成的复式岩体。岩体由中心向外,具环状面型的"斑岩型"蚀变特征,矿化与硅化—绢云母化蚀变有关。由中心到外围,由深到浅,形成深部斑岩钼(铜)矿→中部矽卡岩铜矿→外围脉状铜铅锌矿的成矿系列特征,目前发现的矿体仅是斑岩型矿床分带中上部的大脉型矿体部分,深部具有寻找斑岩-矽卡岩型铜(钼)矿体潜力。  相似文献   

13.
《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   

14.
普朗铜矿床是格咱岛弧多金属成矿带的印支期代表产物,属产于石英二长斑岩、石英闪长玢岩内接触带的超大型斑岩型铜(金)矿床,受复式斑岩体控制作用显著;但矿区东部大脉状铜矿体、南部金矿(化)体则严格受控于断裂构造,明显具后期成矿作用的叠加。笔者通过对矿区外围北矿段、东矿段和南矿段矿床地质特征、矿体特征、矿石组构特征的深入研究,结合区域成矿地质背景,认为普朗铜(金)矿床是由多期次、多成因、多成矿阶段叠加而成的次火山-热液矿床,与印支期复式斑岩体与断裂构造、节理裂隙与矿床的形成关系密切;北部外围深部具有斑岩型铜矿的良好潜力,而东矿段深部、南矿段深部则分别是寻找大脉状铜矿、金矿的有利找矿靶区。  相似文献   

15.
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   

16.
云南迪庆春都铜矿控矿地质条件   总被引:1,自引:0,他引:1  
铜矿体赋存于印支期浅成-超浅成相的石英二长玢岩体内,具斑岩型矿床的蚀变特征,主要控矿因素为岩浆岩、岩浆侵位的地层、热液蚀变作用和构造裂隙等。是印支期甘孜-理塘洋向西俯冲造山晚期与超浅成斑(玢)岩密切有关的斑岩型铜矿床,矿区及外围具有较大的找矿潜力。  相似文献   

17.
杨枝斌 《云南地质》2008,27(3):315-319
金矿赋存于二长斑岩与玄武岩接触带,局部赋存于二长斑岩与大理岩、玄武岩与大理岩的接触带。脉状、似层状、透镜状产出。矿化受构造及岩体联合控制,为构造斑岩蚀变型金矿床。  相似文献   

18.
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   

19.
普朗斑岩铜矿产于印支-燕山早期普朗复式斑岩体中。成矿流体来源广、盐度高,成矿温度从高温440℃到低温120℃,集中在160℃-240℃、280℃-320℃、340℃-380℃三阶段,多期次、多阶段性,与斑岩成矿作用特征一致。硫同位素3δ4SCDT‰T为(-2.23-3.75)‰,显示单一深源岩浆硫。岩体黑云母等40Ar-39Ar和矿石石英-辉钼矿Re-Os同位素年龄为206.4M a-213±3.8M a,属岛孤斑岩型铜矿床。  相似文献   

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