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 137 毫秒
1.
新疆西天山北缘的博罗科努晚古生代岛弧带出露大量中酸性侵入体,并发育一系列斑岩-矽卡岩型铁铜多金属矿床。文章对该岛弧带中部阔库确科矽卡岩型铁铜矿床成矿岩体中的锆石开展了微量元素地球化学研究,查明了锆石成因、形成物理化学条件及其对成矿的启示意义等。数据显示,与成矿密切相关的正长花岗岩和闪长岩中锆石均表现为重稀土元素富集、轻稀土元素亏损,正长花岗岩中锆石的∑REE介于(627~1625)×10-6,闪长岩中锆石的∑REE介于(345~1439)×10-6。锆石Ti温度计显示正长花岗岩锆石的结晶温度集中在598~810℃;闪长岩锆石结晶温度为651~932℃,正长花岗岩的氧逸度(ΔFMQ+4.25)高于闪长岩(ΔFMQ-1.01)。成矿岩体锆石均形成于封闭的岩浆体系中,主要为岩浆锆石,少量闪长岩中的锆石可能在岩浆晚期遭受了富集轻稀土元素的热液改造。锆石形成构造背景属于大陆岛弧环境。成矿岩体锆石的Ce4+/Ce3+值明显高于区域内不成矿岩体的Ce4+/Ce3+值,其中正长花岗岩锆石中更高的Ce4+/Ce3+值表明,阔库确科矿区内志留系与正长花岗岩发生接触交代形成的矽卡岩中可能有更大的Cu成矿潜力。  相似文献   

2.
贵池铜山岩体演化与成矿的关系   总被引:15,自引:1,他引:14  
铜山岩体是在同一岩浆源,同一时期内由岩浆演化形成的石英闪长岩、花岗闪长岩和二长花岗岩组成的复式岩体。铜山铜矿床的成矿物质和热液主要来源于铜山岩体。随着岩浆长期的演化分异和侵入活动,成矿物质不断富集在岩浆热液中,在有利成矿空间形成了层状黄铁矿型、角砾岩型、矽卡岩型和斑岩型铜矿床  相似文献   

3.
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   

4.
安徽桂花冲铜矿位于繁昌盆地与铜陵隆褶带的过渡地带,是一新发现的斑岩-矽卡岩复合型铜矿床,成矿时代为白垩纪早期。矿区岩浆岩主要为花岗闪长斑岩,为探究岩浆的起源、成岩物理化学条件,对其斑晶黑云母进行系统的显微岩相学观察和矿物化学研究。电子探针分析结果表明,黑云母MgO,TFeO,Al_2O_3和TiO_2的质量分数分别为14.15%~15.60%,15.17%~16.41%,12.94%~13.49%和3.84%~4.63%,为富镁贫铁低铝高钛,属镁质黑云母。岩石成分、结构、构造等特征表明,该斑岩体属于壳幔混源的Ⅰ型花岗岩,岩浆结晶温度在750℃~780℃之间,氧逸度f(O_2)为1×10~(-12)Pa~1×10~(-10) Pa。通过黑云母全铝压力计算得其压力为49.96 MPa~72.38 MPa,对应的岩浆房深度为1.89km~2.74km,属超浅岩浆房。岩体附近火山岩的存在,是桂花冲地区形成斑岩型铜矿的重要影响因素。  相似文献   

5.
呼斯特岩体是新疆西天山博罗科努岛弧带上的一个与矽卡岩成矿有关的复式杂岩体,由二长花岗岩、花岗闪长岩、正长花岗岩、花岗细晶岩、闪长玢岩、辉长岩和中基性包体等组成。本文对该岩体不同岩相岩石开展了岩石学、锆石LAICP-MS U-Pb同位素定年和Hf同位素研究,探讨岩石成因及构造意义。锆石U-Pb定年结果表明,正长花岗岩、闪长玢岩、花岗闪长岩和二长花岗岩加权平均年龄分别为380.2±4.6Ma、372.8±5.9Ma、367.7±4.5Ma和366.2±4.5Ma,岩体侵位时代为晚泥盆世,在大约15Myr期间,至少发生了3~4次岩浆侵入。在地球化学组成上,除辉长岩外,岩体为准铝质-弱过铝质、高钾钙碱性-低钾(拉斑)系列的I型花岗岩,轻重稀土分馏明显,具Eu负异常;富集Th、U,亏损Ba、P和高场强元素(如Nb、Ta、Zr、Ti),为晚古生代北天山洋向南俯冲于伊犁地块背景下岩浆活动的产物。二长花岗岩锆石Hf同位素组成较为均一,εHf(t)值为1.3~3.0,二阶段Hf模式年龄为1171~1280Ma,远大于成岩年龄,说明原始岩浆从地幔分异后经历了较长时间的地壳滞留。研究认为,高钾中酸性岩(花岗岩、闪长玢岩和中基性包体)由元古代新生基性下地壳部分熔融而成,伴有受俯冲沉积物熔体交代的幔源岩浆混合。低钾花岗闪长岩高Sr、低Y和Yb,属O型埃达克岩,与同源的辉长岩一起由俯冲的大洋板片部分熔融形成,源岩为低钾的拉斑玄武岩。  相似文献   

6.
知不拉矽卡岩铜多金属矿床位于西藏冈底斯成矿带中段驱龙斑岩铜矿南侧2~3 km处,铜资源量接近大型规模,矽卡岩矿体主要呈似层状、透镜状和大脉状产出,主要受角岩化凝灰岩–大理岩岩性界面和断层破碎带控制。本文以最新勘查工作中钻孔揭露的花岗闪长岩为研究对象,通过岩相学观察、LA-ICP-MS锆石U-Pb定年和Hf同位素分析,对知不拉矿床成矿母岩认识给出新指示。花岗闪长岩与角岩化凝灰岩、大理岩的接触带可见不同程度的矽卡岩化发育,由角岩化凝灰岩至花岗闪长岩有角岩化凝灰岩–矽卡岩化角岩–矽卡岩–矽卡岩化花岗闪长岩–花岗闪长岩的分带规律,岩体内可见长石被石榴子石、绿帘石等矿物交代,指示该岩体与矽卡岩矿体形成关系密切。测试结果显示,花岗闪长岩内锆石15个有效测点给出了206Pb/238U加权平均年龄为16.0±0.4 Ma,该年龄代表花岗闪长岩的结晶年龄,与矽卡岩内成矿年龄16.9±0.6 Ma在误差范围内一致;锆石的176Hf/177Hf(i)值为0.2829~0.2831,εHf(t)为3.2~12,单阶段模式年龄tDM在209~563Ma之间,具有与驱龙中新世侵入岩相似的Hf同位素地球化学特征,岩浆可能起源于软流圈物质上涌引起的新生下地壳部分熔融。知不拉矽卡岩矿床的成矿母岩为中新世花岗闪长岩,与驱龙斑岩矿床属于同一岩浆房演化出溶岩浆,分别是侵位于向形和背形构造中的热液作用产物。  相似文献   

7.
萨亚克大型铜矿田位于哈萨克斯坦北巴尔喀什斑岩成矿带中部,以矽卡岩型矿床为主。通过对矿区石英闪长岩的矿物化学和地球化学研究,发现石英闪长岩呈斑状结构,斑晶为斜长石和角闪石,其中的斜长石斑晶主要为中长石,角闪石斑晶为镁质普通角闪石;岩石属于高钾钙碱性系列,富集Rb、Sr、Ba等大离子亲石元素和轻稀土元素,亏损Nb、Ta和重稀土元素,高Sr/Y、La/Yb比值,与埃达克岩相似。地球化学特征指示萨亚克矿区侵入岩形成于岛弧环境,为矽卡岩-斑岩型成矿提供了有利的构造背景,岩石可能是岛弧玄武质岩浆在高压下经结晶分异而成。根据角闪石温压计及其成分与氧逸度和岩浆中水含量之间的关系,确定萨亚克石英闪长玢岩中角闪石斑晶结晶时岩浆的温度为799~843℃、处于3.6~9.6km深度范围内(P=1.2~3.2kbar)、氧逸度logfO2=-11.5~-12.0(ΔFMQ=2.0~2.8)、平均水含量为1.2%,相对较高的氧逸度和水含量有利于形成富含挥发分和Cu、Au等成矿物质的岩浆,是最终演化形成大型岩浆-热液型铜矿田(斑岩型、矽卡岩型)的有利条件。  相似文献   

8.
甘肃夏河县德乌鲁矽卡岩型铜矿床产于商丹缝合带南侧的西秦岭段。德乌鲁岩体为花岗闪长岩岩体,并伴有同源岩浆脉动侵入形成的花岗闪长斑岩和微晶石英闪长岩,该岩体接触带多已发生矽卡岩化,形成透辉石石榴石矽卡岩和矽卡岩化大理岩等。岩体围岩为二叠系石关组的一套浅海相碎屑岩夹碳酸盐岩沉积。矿区主要工业矿体赋存于矽卡岩中,多集中于侵入体岩脉穿插较复杂地段,且无一例外的在侵入体内凹或岩枝凸出处为富矿地段。通过对资料研究,表明德乌鲁矽卡岩富铜矿的形成是燕山期深部地壳熔融形成岩浆携带较丰富的成矿物质,于岩体冷凝成岩过程中交代围岩形成"矽卡岩型"和"热液型"混合铜矿。燕山期花岗闪长岩、花岗闪长斑岩(脉)、石英闪长(玢)岩、透辉石石榴子石矽卡岩及矽卡岩化大理岩发育地区,并出现孔雀石、蓝铜矿、褐铁矿化等氧化矿物的地段,以及伴有磁异常、铜次生晕和低电阻率异常地段,与德乌鲁铜矿区特征相似,为找矿有利地段。因此,提出龙得岗—美武新寺地区为具有较大铜成矿潜力区,建议加强研究和勘查工作。  相似文献   

9.
魏少妮  朱永峰  安芳 《地质学报》2020,94(8):2367-2382
包古图斑岩铜矿位于新疆西准噶尔地区,是区内规模最大的斑岩型矿床,成矿作用与晚石炭世中酸性侵入体密切相关。III- 2岩体位于矿区南部,该岩体全岩矿化,但品位较低,是探讨成矿岩浆性质的理想对象。本文结合岩石学和角闪石、锆石等矿物成分分析,通过与典型斑岩铜矿进行对比,探讨了成矿岩浆的氧逸度。研究表明,包古图III- 2岩体以石英闪长(玢)岩和闪长岩为主,少量辉石闪长岩,主要由斜长石、角闪石、黑云母、石英和钾长石组成,含少量钛铁矿、榍石和磷灰石。石英闪长岩中早期结晶的自形角闪石属于钙质闪石,Mg#较高(0. 72~1. 00),成分分析指示成矿岩浆的氧逸度为:△NNO+1. 4~△NNO+2. 6,位于斑岩铜矿含矿岩体的分布范围。从中分选出的锆石REE含量高(338×10-6~959×10-6),具有左倾型稀土配分模式,轻稀土亏损,重稀土富集,显示强烈Ce正异常和Eu负异常。Ce4+/Ce3+比值为29. 55~89. 50,Eu/Eu*比值为0. 32~0. 47,分布于斑岩铜矿含矿岩体和未矿化岩体的叠加部位。研究结果显示,包古图斑岩铜矿III- 2岩体成矿岩浆氧逸度较高,有利于成矿元素的溶解和迁移,对斑岩铜矿的形成有促进作用。  相似文献   

10.
克峡希铜矿位于博罗科努金、铜、钼、铅、锌成矿带西侧。矿体赋存于成群产出的辉石闪长岩、闪长岩及花岗闪长岩等小岩体组成的杂岩体中,受NE向密集剪切劈裂带控制。铜矿成矿经历岩浆晚期残余气液矿化和岩浆期后热液成矿二个阶段,早期为细脉浸染斑岩型,沿外接触带发育矽卡岩型,晚期为热液脉型,具有金、铜、钼矿化特征,空间上具有明显分带性,属于复合成因的斑岩型铜矿床,构成了本矿床的斑岩型金、铜、钼矿的成矿系列,预测具有大型矿床的找矿前景。  相似文献   

11.
The Mazraeh Cu–Fe skarn deposit, NW Iran is the result of the intrusion of an Oligocene–Miocene granitic pluton into Cretaceous calcareous rocks. The pluton ranges in composition from monzonite to quartz monzonite, monzogranite, tonalite and granodiorite with I-type, calc-alkaline, and weakly peraluminous characteristics. The Mazraeh pluton was emplaced in a volcanic arc setting in an active continental margin at a depth of ~8 km. Pyroxene skarn, garnet skarn, and epidote skarn zones were formed during the intrusive phase. The garnet skarn developed as exoskarn and endoskarn from the calcareous wall rocks and the pluton, respectively, prior to mineralization. Garnet skarn from the exoskarn zone is identified by relict layering inherited from the precursor calcareous lithologies. Mass balance calculation of garnet skarn in the endoskarn zone indicates that hydrothermal fluids originating from the cooling magma introduced Si, Fe, Mn, Ca, Mg, P, Ag, Cu, Zn, La, Pb, Cd, Mo, and Y. The main mass loss in the garnet skarn was due to destruction of feldspars in the Mazraeh plutonic rocks and leaching of K2O and Na2O. Released Ca has been fixed in the andraditic garnet. Garnetization of the Mazraeh pluton was accompanied by mass and volume increase. The magnitude of these changes depends mainly on the degree of alteration and composition of the precursor. The brittle behavior of the endoskarn zone was increased due to formation of massive garnet which subsequently fractured. These fractures not only facilitated movement of hydrothermal fluids but also provided new locations for Cu mineralization. Therefore locating strongly garnetized zones may be a vector to ore in skarn deposits.  相似文献   

12.
As indicated by mineralogical, geochemical, and structural-textural data, the base-metal skarn ore at the Partizansky deposit was formed during two stages (base-metal skarn and silver-sulfosalt), which were separated by intrusion of basaltic dikes. The bulk of the base-metal ore was deposited at the first stage, which comprises four sequential mineral assemblages: skarn-silicate, quartz-arsenopyrite, productive galena-sphalerite, and pyrrhotite-pyrite-chalcopyrite. The mineralization of the second stage was mainly confined to the upper margins of orebodies and pertains to the sulfosalt-galena-chalcopyrite assemblage, which was super-imposed on minerals of the first stage. The vertical mineralogical-geochemical zoning of the deposit is telescopic (related to the formation of the late silver-sulfosalt mineralization) and facies (typical of the early skarn and base-metal assemblages). The zoning of the skarn-silicate assemblage is expressed in the metasomatic replacement of skarn by quartz and calcite in the uppermost zone of skarn bodies and is emphasized by variation of the mineral composition throughout the skarn column, for instance, by the distinct updip enrichment of hedenbergite in manganese. The vertical zoning of the productive assemblage is emphasized by variations in the ratio of sphalerite to galena (the Pb/Zn ratio in the ore increases upward from 0.1 to 1), changes in mineral assemblages, and compositional variation of major ore-forming and minor minerals. In particular, galena from the deep levels is extremely enriched in Bi and Ag, while that from the upper levels is almost completely devoid of isomorphic admixtures. Fahlore displays updip enrichment in Sb, Ag, and Fe and corresponding depletion in Cu and Zn. The vertical chemical variations in fahlore are caused by the specific geological setting of ore deposition, the composition of the ore-forming solutions, and the physicochemical conditions of their transportation and ore deposition.  相似文献   

13.
安徽铜陵凤凰山铜矿是铜陵矿集区内最典型的矽卡岩型铜矿床之一,也是凤凰山矿田内规模最大的铜矿床。矿区内新屋里岩体属于高钾钙碱性系列,主要岩性为石英二长闪长岩和花岗闪长岩。岩石地球化学特征表明凤凰山中酸性侵入岩岩浆属于壳幔混合型,原始岩浆来源于上地幔碱性玄武岩区并有地壳物质混染,在岩浆不断演化过程中有外来物质的加入,成岩过程以混合作用为主。凤凰山铜矿体分布于岩体与大理岩的内矽卡岩带上,岩体中铜含量较高。铜矿体是岩浆期后热液交代碳酸盐地层形成的。矿体的空间分布受构造变形-岩浆侵入高温高压作用的双重控制。矿化经历了从高温矽卡岩阶段到中低温热液阶段的多期次复合成矿作用。  相似文献   

14.
New data on the composition of the major minerals from the skarn and vein polymetallic deposits of the Dal’negorskii ore region are reported. Analysis of galena and sphalerite was carried out by the X-ray fluorescent energy-dispersive method of synchrotron radiation for the first time. It is shown that the minor elements in major minerals of different deposits are typomorphic. Among these elements are Fe, Cu, Ni, Cd, Ag, Sn, and Sb, as well as In in sphalerite and Te in galena. The high concentrations of Ag, Cu, Te, Cd, and In in the extracted minerals indicate the complex character of mineralization. The compositional patterns of ore minerals characterize the sequence of mineral formation from the skarn to vein ores, and the sequence of deposits from the mesothermal to epithermal conditions. This provides geochemical evidence for the stage model of the formation of mineralization in the Dal’negorskii ore region.  相似文献   

15.
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   

16.
在皖赣沿江地区分布着大量中生代侵入岩体及其岩石包体和相关的夕卡岩矿床。本文在综合整理作者研究团队近30年来所获得的区内大部分侵入岩体及其岩石包体和夕卡岩矿床研究资料的基础上,聚焦区域中生代壳幔相互作用与多成因夕卡岩成矿过程分析,为发展壳幔成矿学打下一定基础。基性侵入岩和镁铁质岩石包体的同位素年代学和岩石地球化学资料表明,皖赣沿江地区在中生代发生了碰撞后(145~135 Ma)富铜金和造山后(130~120 Ma)富铁金幔源岩浆底侵作用和相应的壳幔混源岩浆作用。壳幔混源岩浆作用主要包括结晶分异作用、同化混染作用、岩浆混合作用和岩浆熔离作用。夕卡岩矿床地质调研和镜下观察结果显示,两期壳幔混源岩浆侵入晚古生代到早中生代围岩地层后引发了多成因夕卡岩成矿作用,形成了接触交代、层控、岩浆和复合叠加等多成因夕卡岩矿床。接触交代、层控、岩浆和复合叠加夕卡岩矿床分别以热液交代、沉积+热液交代、岩浆结晶+热液交代和沉积+岩浆结晶+热液交代矿物组合和结构构造为特征。在碰撞后酸性-中酸性侵入岩体中产有富Cu和Zn等成矿物质的元古宙变质岩包体,表明碰撞后富铜金的底侵玄武岩浆或其演化岩浆在浅位岩浆房中同化了元古宙变质基底成矿物质(铜锌等)储库导致铜进一步富集,从而形成更富铜的酸性-中酸性岩浆。在碰撞后中基性-基性侵入岩体中产有含大量Cu-Fe硫化物(黄铜矿和磁黄铁矿)和氧化物包裹体的深位和浅位堆积岩,表明碰撞后富铜金的底侵玄武岩浆在深位岩浆房中和其演化岩浆在浅位岩浆房中发生了强烈的结晶分异作用导致铜铁亏损,形成更富金的中基性-基性岩浆。酸性-中酸性侵入岩体中夕卡岩包体和夕卡岩中辉长岩-夕卡岩过渡包体的存在表明,碰撞后富铜金的底侵玄武岩浆在侵位处同化晚古生代含铜铁矿源层的碳酸盐地层导致铜进一步富集,形成更富铜的夕卡岩岩浆。更富铜的酸性-中酸性岩浆、更富金的中基性-基性岩浆和更富铜的夕卡岩岩浆是形成碰撞后时期接触交代和层控夕卡岩铜矿、接触交代夕卡岩金矿和岩浆夕卡岩铜矿的最重要控制因素。在造山后中基性-基性侵入岩体中产有含大量Cu-Fe硫化物(黄铜矿和磁黄铁矿)和氧化物包裹体的堆积岩,表明造山后富铁金的底侵玄武岩浆在深位岩浆房中发生了强烈的结晶分异作用导致铜铁亏损,从而形成更富金的中基性-基性岩浆。造山后富铁金的底侵玄武岩浆在侵位处同化晚古生代含铜铁矿源层的碳酸盐地层、早中生代铁矿源层或者早中生代铁硅矿源层,导致铁、铁和铁硅的进一步富集,分别形成更富铁的夕卡岩岩浆、基性岩浆和中基性岩浆。更富金的中基性-基性岩浆及更富铁的夕卡岩岩浆、基性岩浆和中基性岩浆是形成造山后时期接触交代夕卡岩金矿、岩浆夕卡岩铁矿、矿浆型铁矿和接触交代夕卡岩铁矿的关键控制因素。  相似文献   

17.
老挝作为"特提斯成矿域"的重要组成部分,具有丰富的矿产资源,尤其是铜、金、铁、铝、钾盐等优势矿产与中国具有很强的互补性。初步论述了老挝的成矿地质背景和近年来发现的与花岗岩类有关的斑岩型铜-金矿床、矽卡岩型铁矿床的矿化地质特征、矿石矿物特征、矿化与岩体的空间关系,在此基础上初步建立了其成矿模式。基于同位素定年数据和Hf-Rb-Ta元素判别图,推测这些花岗岩及与其相关的矿床形成于晚石炭世华南地块向印支地块俯冲产生的火山岛弧环境。  相似文献   

18.
老挝长山成矿带与花岗岩有关的铜金铁矿床 的成矿模式   总被引:4,自引:1,他引:3  
赵红娟  陈永清  卢映祥 《地质通报》2011,30(10):1619-1627
老挝作为“特提斯成矿域”的重要组成部分,具有丰富的矿产资源,尤其是铜、金、铁、铝、钾盐等优势矿产与中国具有很强的互补性。初步论述了老挝的成矿地质背景和近年来发现的与花岗岩类有关的斑岩型铜-金矿床、矽卡岩型铁矿床的矿化地质特征、矿石矿物特征、矿化与岩体的空间关系,在此基础上初步建立了其成矿模式。基于同位素定年数据和Hf-Rb-Ta元素判别图,推测这些花岗岩及与其相关的矿床形成于晚石炭世华南地块向印支地块俯冲产生的火山岛弧环境。  相似文献   

19.
20.
赞比亚西北省姆维尼伦加地区的金属矿产丰富,具有层控型铜-钴矿、热液型铜-钴矿、沉积型铁矿、矽卡岩型铁矿,与新生代火山岩及韧性剪切带有关的金矿等矿产。铜矿体主要赋存于新元古界加丹加超群下罗安组地层中,矿体主要受地层、穹窿构造、卢菲利安弧、前陆盆地控制。提出了具有良好找矿前景的4处成矿远景区。  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