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1.
内蒙古哈达门沟金矿床钾长石化蚀变特征及其成矿意义   总被引:10,自引:2,他引:8  
李强之  吴尚全 《现代地质》1999,13(3):315-322
内蒙古自治区哈达门沟金矿以其特殊的钾长石化蚀变而备受注目。通过对哈达门沟金矿钾长石化蚀变特征及钾长石化形成的物理化学条件等方面的研究, 指出哈达门沟金矿石英脉旁为钾长石化而不是绢英岩化的原因是因为矿床形成部位深、形成温度较高、成矿介质偏碱性并具较大的m(K+)/ m(H+) 值。据此归纳华北地台热液金矿床的蚀变( 矿化) 垂直分带由下而上为: 钾长石化带( 细脉浸染型矿化)—绢英岩化带( 蚀变岩型矿化) —硅化脉带( 石英脉型矿化) , 进而指出该分带模式的成矿和找矿指示意义  相似文献   

2.
华南诸广山复式岩体中段花岗岩的碱交代蚀变   总被引:8,自引:0,他引:8  
诸广山复式花岗岩体中段某大型铀矿田中的部分花岗岩广泛发育碱交代蚀变作用。据对313个碱交代蚀变花岗岩样品的岩石化学分析资料及岩相学研究结果表明,该地碱交代蚀变是以钠长石化为主的多阶段钾、钠叠加交代(即混合交代),蚀变强度大多较弱,局部可较强并生成二长石岩、钠长石岩等交代蚀变岩。测得该碱交代蚀变岩石的Rb-Sr等时线年龄为132.1±5.8Ma,在时序上它与主体侵入的似斑状黑云母花岗岩(Rb-Sr等时线成岩年龄为215.2±6.3Ma)、补体侵入的细粒少斑黑云母花岗岩(测得Rb-Sr等时线成岩年龄为155.2±5.45Ma)构成一连续演化序列,推测碱质可能源自该产铀花岗岩岩浆演化钠转折分异阶段的产物;该蚀变岩属铀成矿前已遭剥蚀的钨、锡矿化矿根相,成为随后工业铀矿化(U-Pb法测得成矿年龄为103.2±0.6Ma)的有利围岩。  相似文献   

3.
谢家沟金矿床位于胶西北焦家断裂带和招平断裂带之间。在系统观察坑道各类蚀变现象的基础上,发现围岩蚀变主要有钾长石化、硅化、黄铁矿化、绢云母化,其次可见绿泥石化和碳酸盐化等;基于蚀变的叠加和穿插关系查明了不同阶段的主要热液作用记录,从早到晚依次为钾长石化、黄铁绢英岩化、陡立石英硫化物细脉;蚀变具有明显的空间分带现象,从中心到两侧分别为陡立石英硫化物细脉带、黄铁绢英岩化带、钾长石化带。本次研究对蚀变钾长石开展了40Ar-39Ar精细测年工作,获得的坪年龄为(112.79±0.62)Ma(MSWD=5.76),与等时线年龄((115.56±1.72)Ma(MSWD=4.59))一致,限定了谢家沟金矿床的钾化蚀变年龄,与胶东地区获得的金成矿事件年龄相近,说明谢家沟金矿床与胶东地区金矿床是在同一成矿-热事件下形成的。结合区域岩浆演化特征,胶东地区在郭家岭岩体形成之后、在(120±10)Ma还存在一期与金成矿关系密切的岩浆活动。  相似文献   

4.
曹四夭超大型斑岩型钼矿床,其成矿热液蚀变总体上表现为面状特征;蚀变主要以各种脉体出现。主要有硅化、钾长石化、萤石化和方解石化,尤以硅化与矿化关系最为密切。硅化从早期到晚期均可见到,石英脉发育在各种岩石中,是钼的主要载体;钾长石化有钾长石脉及复式脉,矿化微弱;金属矿物组合有辉钼矿-黄铁矿组合,金属矿物与脉石组合主要有辉钼矿-石英(脉)组合,黑钨矿-石英(脉)组合。因此充分反映出斑岩型钼矿床高温成矿热液蚀变特征。  相似文献   

5.
邱小平  潘淼 《黄金地质》1997,3(4):29-35
小营盘金矿赋存在稳定的缓倾斜石英脉中,但单纯的白色石英脉仅有微弱矿化,只有经过S懊断层剪切拉张破裂和叠加铁白云石化及硫化物蚀变的石英脉才能成为矿体,金矿体的顶底面常被铁白云石蚀变岩和糜棱岩所包裹,而且部分蚀变岩的金含量也达到工业品位,石英脉与蚀变岩作用构成矿体。因此,早期金成矿作用的时代大致与铁白云蚀变同期,含金铁白云石蚀变岩的δ^13C值平均为-4.13‰,Pb-Pb等时线年龄为2711±238  相似文献   

6.
该文对小营盘金矿的两期主金矿脉-钾长石英脉和含金多金属硫化物石英脉进行了单颗粒锆石-U-Pb同位素年龄测定,测得年龄值分别为1826±31Ma和1800±14Ma,确定为吕梁运动时期在强烈区域退变作用下的一次金的成矿作用。  相似文献   

7.
卞雄飞 《地质与资源》2012,21(4):390-394
通过对纳日贡玛斑岩钼(铜)矿床的蚀变类型的详细研究,识别了矿床蚀变的3种主要类型:钾硅酸盐化、青磐岩化和长石分解蚀变.前二者为矿区早期形成的蚀变,长石分解蚀变形成于晚期.钾硅酸盐化蚀变主要以黑云母化、钾长石化为特征,青磐岩化以脉状绿泥石、绿帘石、方解石等蚀变矿物的发育为基本特征,长石分解蚀变则发育绢云母、高岭土、方解石、硬石膏等矿物.研究认为矿化与石英-辉钼矿±硬石膏±黄铜矿±黄铁矿脉、辉钼矿±黄铁矿±黄铜矿脉有较为密切的联系.  相似文献   

8.
豫西雷门沟斑岩钼矿床钾长石化蚀变特征及其成矿意义   总被引:1,自引:0,他引:1  
陈小丹  叶会寿  汪欢 《现代地质》2012,26(3):478-488
豫西雷门沟钼矿床属于东秦岭钼矿带典型的斑岩型矿床之一,矿床广泛发育钾长石化,呈面型和线型2种形式产出。据野外观察,面型钾长石化以成矿前钾长石化蚀变围岩为特征,包括钾长石化花岗斑岩和钾长石化片麻岩,蚀变岩石主要由钾长石构成,少量石英和斜长石残留,蚀变强烈时石英、斜长石等消失,全岩钾长石化,为成矿前围岩蚀变;线型钾长石化包括钾长石细脉、钾长石-萤石辉钼矿脉和石英辉钼矿脉边部的钾长石化晕,钾长石呈脉状充填或者交代脉边部的石英,为成矿阶段蚀变。电子探针成分分析表明,蚀变形成的钾长石K2O含量较高,Na2O、CaO含量较低。X衍射结构显示,蚀变形成的钾长石为微斜长石,蚀变温度为310~418℃,表明由碱性热液交代形成。Pb同位素组成显示钾长石中K质主要来源于地幔。根据成矿热液具有富碱质的地幔来源特征,结合Mo元素地球化学特征,认为退化碱质交代作用有助于雷门沟斑岩钼矿床的形成。  相似文献   

9.
谢家沟金矿床位于胶西北焦家断裂带和招平断裂带之间。通过详细的野外地质观测与室内研究,查明了谢家沟金矿床的蚀变类型及空间分带,系统采集不同蚀变类型的岩石样品,进行岩石元素地球化学分析,运用Isocon方法分析探讨了热液蚀变过程中的元素迁移规律及其对成矿流体性质、矿质沉淀的制约。蚀变从中心到两侧分别为含陡立石英脉的黄铁绢英岩化、黄铁绢英岩化、钾长石化;从早到晚依次为钾长石化、黄铁绢英岩化、含陡立石英脉的黄铁绢英岩化。钾长石化蚀变表现为钾长石和黑云母分别交代玲珑黑云母花岗岩中的斜长石和角闪石,K明显的迁入,Si轻微迁入,Ca、Mg为迁出,Fe轻微迁出。黄铁绢英岩化蚀变叠加于钾长石化蚀变之上,主要表现为斜长石、钾长石、黑云母等矿物在含H+、HS-溶液中失稳,被绢云母、石英替代,Fe、Mg、Ca为迁入,K、Na、Si表现为元素迁出。从钾长石化阶段到黄铁绢英岩化阶段,流体从碱性转变为酸性; Au迁移形式也逐渐由氯的络合物转化为硫氢络合物。随着成矿流体的不断演化,成矿流体与围岩不断反应,含矿热液化学性质不断变化促进了金的沉淀。  相似文献   

10.
河南西部的西峡石板沟金矿是一个与不规则石英细脉有关的金矿床,石英脉产于切穿闪长岩体的蚀变剪切带中,成矿围岩主要为闪长岩和辉长岩。剪切带中主要的蚀变有硅化、黄铁矿化、绢云母化、绿泥石化、钾长石化和碳酸岩化,近矿体蚀变围岩分带特征明显,从矿化中心向边部蚀变分带依次是:①硅化—黄铁矿化蚀变带;②黄铁矿化—钾长石化蚀变带;③黄铁矿化—绢云母化蚀变带;④绿泥石化—碳酸盐化蚀变带;⑤未蚀变辉长岩。细粒硫化物、不同时代的石英细脉和小型裂隙广泛分布于蚀变带中。该矿床中主要的矿化类型有含金石英脉型和产于剪切带中的蚀变岩型,依据蚀变分带和矿化类型,从钻孔中系统地采集了岩石样品,所有的样品做了部分微量元素和常量元素分析,利用常量元素研究了岩石质量平衡、体积  相似文献   

11.
热液金矿床围岩蚀变特征及其与金矿化的关系   总被引:1,自引:0,他引:1  
黄诚  张德会  和成忠 《物探与化探》2014,(2):278-283,288
热液金矿床总是伴随着围岩蚀变,研究围岩蚀变对金矿勘查具有重要意义。总结不同类型热液金矿发现,与热液金矿密切相关的围岩蚀变主要有硅化、钾长石化、钠长石化、碳酸盐化、绿泥石化、绢英岩化等;重点分析讨论了硅化、钾长石化、钠长石化、碳酸盐化的特征、形成机理及其与金矿化之间密切关联的内在原因,同时也对热液金矿蚀变的分带性进行了讨论。  相似文献   

12.
研究区属含古老地块并经中生代改造的中古生代造山带,存在金、锡等丰度较高的锡林浩特元古宙杂岩、古生代蛇绿岩及板块缝合带、二叠系火山岩、中生代伸展构造背景下的大规模火山-侵入活动及锡多金属成矿作用.本区金矿化类型主要有:韧性剪切带中的石英脉型、蚀变岩型金矿,产于幔源中基性侵入岩中的铜金矿,燕山晚期斑岩型铜金矿,与燕山期次火山岩浆活动有关的脉状铜矿床中的伴生金矿化,微细浸染型金矿化,浅成低温热液型金矿化等.研究区金矿成矿时代可分为242~229Ma、169~161.8Ma、132~159Ma (可能以130~140Ma为主)、127~109.2Ma四个区间.认识到存在印支期成矿、燕山期多阶段成矿等特点对于区内金矿勘查有重要意义.新发现7个矿床(点)的伴生金矿化.毛登、大井等多金属矿床的伴生金矿化具有重要的潜在工业意义.  相似文献   

13.
西藏多不杂斑岩铜金矿是在班公湖—怒江成矿带发现的第一个斑岩型矿床。通过对多不杂矿床蚀变钾长石进行40Ar/39Ar年代学测试获得,蚀变钾长石的坪年龄为(118.31±0.60)Ma,反等时线年龄为(118.30±0.79)Ma,它们代表多不杂矿床钾化蚀变的年龄为119~118 Ma,与成矿年龄同期。多不杂矿床形成的岩浆-热液过程为,由岩浆期(约120Ma)演化至钾化和成矿期(119~118 Ma),再演化至绢英岩化期(118~115 Ma)。  相似文献   

14.
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   

15.
胶东招-掖金矿带金矿化蚀变带Rb-Sr等时线的研究及测定   总被引:1,自引:0,他引:1  
招-掖金矿带已得出三次金矿化的年龄。最早的一次金矿化发生在距今188.94±4.24Ma;第二次金矿化距今100.74±3.58Ma,这两次均属燕山期。最晚的一次金矿化发生在距今46.52±2.290Ma,当属喜山期。几次矿化年龄证明,招-掖金矿带的成矿作用是多次的,每次矿化又是多阶段的,可互相叠加。这充分反映了含矿热液的脉动性。矿体围岩蚀变是金矿化的同步产物,是一个锶均一化的封闭体系。用Rb-Sr等时线法测出其同位素年龄,即为一次金矿化的年龄。几条等时线给出的87Sr/86Sr初始比说明:招-掖金矿带成矿热液来源于大陆壳。  相似文献   

16.
陕西煎茶岭超基性岩与金矿床成因关系   总被引:6,自引:0,他引:6  
煎茶岭金矿床属于与超基性岩有成因联系的微细浸染状构造蚀变岩型金矿床。该超基性岩沿超壳断裂侵位(927Ma),是金矿形成的矿源岩。含矿超在性岩在强烈的构造变形作用下,发生彻底的退化蚀变(388.7Ma)。经滑石-蛇纹石化,进而碳酸盐化,导致微量金解离。在后期活动性断裂控制下,形成含金硫化物矿化-硅化-碳酸盐化蚀变岩体的就位。.含金蚀变岩与金矿体微量元素组合、稀土元素、稳定同位素组成对超基岩有明显的继  相似文献   

17.
The Nuri Cu–W–Mo deposit is a large newly explored deposit located at the southern margin of the Gangdese metallogenic belt. There are skarn and porphyry mineralizations in the deposit, but the formation age of the skarn and the relationship between the skarn and porphyry mineralizations are controversial. Constraints on the precise chronology are of fundamental importance for understanding the ore genesis of the Nuri deposit. To determine the formation age of the skarn, we chose garnets and whole rock skarn samples for Sm–Nd dating. We also selected biotite associated with potassic alteration for Ar–Ar dating to confirm the ore formation age of the porphyry mineralizations. The Sm–Nd ages of the skarn are 25.73 ± 0.92 – 25.2 ± 3.9 Ma, and the age of the potassic alteration is 24.37 ± 0.32 Ma. The results indicate that the skarn and porphyry mineralization are coeval and belong to a unified magmatic hydrothermal system. Combined with a previous molybdenite Re–Os age, we think that the hydrothermal activity of the Nuri deposit lasted for 1.2 – 2.1 Myr, which indicates that the mineralization formed rapidly. The chronologic results indicate that the Nuri deposit formed in the period of transformation from compression to extension in the late collisional stage of the collision between the Indian and Eurasian continents.  相似文献   

18.
The Dawan Mo–Zn–Fe deposit located in the Northern Taihang Mountains in the middle of the North China Craton (NCC) contains large Mo‐dominant deposits. The mineralization of the Dawan Mo–Zn–Fe deposit is associated with the Mesozoic Wanganzhen granitoid complex and is mainly hosted within Archean metamorphic rocks and Proterozoic–Paleozoic dolomites. Rhyolite porphyry and quartz monzonite both occur in the ore field and potassic alteration, strong silicic–phyllic alteration, and propylitic alteration occur from the center of the rhyolite porphyry outward. The Mo mineralization is spacially related to silicic and potassic alteration. The Fe orebody is mainly found in serpentinized skarn in the external contact zone between the quartz monzonite and dolomite. Six samples of molybdenite were collected for Re–Os dating. Results show that the Re–Os model ages range from 136.2 Ma to 138.1 Ma with an isochron age of 138 ± 2 Ma (MSWD = 1.2). U–Pb zircon ages determined by laser ablation inductively coupled plasma mass spectrometry yield crystallization ages of 141.2 ± 0.7 (MSWD = 0.38) and 130.7 ± 0.6 Ma (MSWD = 0.73) for the rhyolite porphyry and quartz monzonite, respectively. The ore‐bearing rhyolite porphyry shows higher K2O/Na2O ratios, ranging from 58.0 to 68.7 (wt%), than those of quartz monzonite. All of the rock samples are classified in the shoshonitic series and characterized by enrichment in large ion lithophile elements; depletion in Mg, Fe, Ta, Ni, P, and Y; enrichment in light rare earth elements with high (La/Yb)n ratios. Geochronology results indicate that skarn‐type Fe mineralization associated with quartz monzonite (130.7 ± 0.6 Ma) formed eight million years later than Mo and Zn mineralization (138 ± 2 Ma) in the Dawan deposit. From Re concentrations in molybdenite and previously presented Pb and S isotope data, we conclude that the ore‐forming material of the deposit was derived from a crust‐mantle mixed source. The porphyry‐skarn type Cu–Mo–Zn mineralization around the Wanganzhen complex is related to the primary magmatic activity, and the skarn‐type Fe mineralization is formed at the late period magmatism. The Dawan Mo–Zn–Fe porphyry‐skarn ores are related to the magmatism that was associated with lithospheric thinning in the NCC.  相似文献   

19.
安徽沙溪斑岩型铜金矿床成岩序列及成岩成矿年代学研究   总被引:10,自引:7,他引:3  
沙溪矿床是长江中下游成矿带中典型的斑岩型铜金矿床,位于庐枞盆地北外缘、郯庐断裂内,矿床成岩成矿时代确定对该矿床成因研究及区域成矿规律的认识具有重要意义。在详细野外地质工作的基础上,采集沙溪矿床与成矿有关的主要岩浆岩样品(粗斑闪长玢岩、黑云母石英闪长玢岩、中斑石英闪长玢岩、细斑石英闪长玢岩和闪长玢岩)和与黄铜矿密切共生的辉钼矿,分别利用Cameca、LA-ICP-MS U-Pb和Re-Os同位素定年方法,获得矿床内主要岩浆岩的成岩年龄(130.60±0.97Ma、129.30±1.00Ma、127.10±1.50Ma、129.46±0.97Ma和126.7±2.1Ma)以及成矿年龄(130.0±1.0Ma),并重新厘定了沙溪岩体从早到晚岩浆的侵位序列。通过区域对比,提出长江中下游存在两阶段斑岩型铜金矿化,沙溪矿床为长江中下游成矿带第二阶段形成的斑岩型矿床,沙溪矿床的成岩成矿作用既不同于庐枞盆地,也不同于断隆区第一阶段的斑岩矿床,而是受郯庐断裂和长江断裂动力学演化联合作用的产物。  相似文献   

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