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1.
周利敏  张德会 《矿床地质》2006,25(Z3):391-394
王安镇-大河南岩体是太行山—大兴安岭中生代构造岩浆带中的代表性岩体。它们由早期、中(主)期和晚期岩石组成。文章通过研究,发现中(主)期岩石具有类似埃达克质岩的特征,是被地幔岩浆加厚的下地壳底部部分熔融的结果。而早期和晚期岩石不具埃达克质岩特征。早期岩石是富集地幔部分熔融的产物,晚期岩浆为减薄的中、下地壳物质发生不同程度熔融形成的。中(主)期岩石发生了以斜长石和角闪石分离结晶的演化。王安镇岩体岩浆源区更多角闪石发生分解,王安镇岩体的岩浆比大河南岩体的岩浆富含挥发份,成矿潜力更大。埃达克岩形成过程中挥发分的产生可能是其与成矿作用密切相关的原因之一。  相似文献   

2.
江思宏  聂凤军 《地质论评》2000,46(6):621-627
冀西北金矿集中区是我国华北地台北缘金矿成矿带的重要组成部分,区内金矿主要产于水泉沟碱性杂岩体及邻近的太古宙变质岩内。Ar-Ar同位素年龄测定结果显示,金矿床成矿年龄(172~188Ma)与水泉沟碱性杂岩体的形成年龄(304~306Ma)相差达120Ma。综合研究推断金矿床不是碱性岩浆直接演化产物,而是在燕山期构造--岩浆活动影响下,地下循环热流体对矿源岩--碱性杂岩体淋滤、萃取,形成富含金的成矿热  相似文献   

3.
通过地杂岩体岩石地球化学,稀土元素组合,岩石类型,同位素特征分析,认为水泉沟碱性杂岩体与金矿床存在密切生成关系,杂岩体的成岩过程是Au活化,迁移,富集的成矿过程,杂岩体的形成时代是西期-燕山期,其形成是由于多期次岩浆活动并多次同化围岩而成,同时对Au在岩体中的活动和金成矿模式进行了讨论。  相似文献   

4.
牛鼻子梁岩体位于柴达木地块西北缘。岩体出露面积约8km2,平面形态呈长条状,长轴方向近东西向。锆石LA-ICP-MS U-Pb年龄为367.0±2.0Ma。岩体中堆晶结构、堆晶韵律和旋回发育,属典型的层状岩体。岩浆分异充分,岩石类型丰富。主要岩石类型有斜长二辉橄榄岩、斜长单辉橄榄岩、角闪二辉橄榄岩、角闪橄榄岩、角闪橄榄二辉岩、角闪二辉岩、橄榄二辉角闪石岩、角闪橄榄辉长岩、细粒辉长岩、似斑状辉长岩、暗色辉长岩、辉长岩、淡色辉长岩、石英闪长岩、英云闪长岩。岩浆源区为高镁拉斑玄武质岩浆(MgO=10.8%),主体岩浆结晶温度为1100~1178℃。岩浆演化过程中主要发生了橄榄石的分离结晶作用,此外还有少量斜长石的分离结晶/堆晶作用。野外地质观察、岩石薄片观察及岩石地球化学特征表明岩体与围岩之间发生了较强的同化混染作用,并且同化混染强度伴随着岩浆演化过程而逐渐增大。大量的同化混染导致岩石化学系列从拉斑玄武质系列转化为钙碱性系列。岩浆源区属亏损型地幔源区。岩体形成的构造环境为大陆边缘裂解环境。从构造环境、原生岩浆、岩体类型、岩浆分异程度、岩浆含水量、同化混染和橄榄石镍含量七个方面来看牛鼻子梁岩体形成镍铜硫化物矿床的潜力很大。  相似文献   

5.
东蒙地区燕山期三类成矿岩体地质地球化学特征   总被引:2,自引:0,他引:2       下载免费PDF全文
根据东蒙地区广泛发育的中生代燕山期岩体的成矿特征,将其成矿岩体分成三种类型。它们分别是铜成矿岩体、铅锌成矿岩体和锡成矿岩体。通过对三种成矿岩体的岩石学、稀土元素和微量元素的分析研究,认为铜成矿岩体具有明显的幔源和壳源双重特征,为燕山早期岩浆演化的结果;锡成矿岩体为燕山晚期岩浆演化的产物,具有壳源特点;铅锌成矿岩体的地质特征处于铜成矿岩体和锡成矿岩体的过渡。  相似文献   

6.
贵池铜山岩体岩石化学与地球化学特征   总被引:4,自引:0,他引:4  
通过岩石化学、微量元素地球化学、稀土元素地球化学、铅同位素地球化学特征研究表明, 铜山石英闪长岩、花岗闪长岩、二长花岗岩是同一岩浆源同一时期( 燕山早期) 三个侵入阶段的产物, 铜山岩体幔壳同熔型的复式岩体, 属太平洋钙碱性岩石系列。铜山铜矿床的形成与铜山复式岩体的岩浆充分演化分异有关。  相似文献   

7.
辽宁矿洞沟—梁屯元古宙正长岩体的地球化学及成因   总被引:6,自引:0,他引:6  
矿洞沟 -梁屯正长岩体侵位年龄为 2 175.4Ma ,是年代最古老的正长岩体之一。正长岩浆演化过程中发生了分离结晶作用。岩浆起源于亏损地幔与下地壳组分参予的混合源区 ,有上地壳物质的混染。该岩体是研究岩石圈发展早期碱性岩浆作用的极好标本。  相似文献   

8.
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   

9.
《地质论评》2000,46(6):621-627
冀西北金矿集中区是我国华北地台北缘金矿成矿带的重要组成部分,区内金矿主要产于水泉沟碱性杂岩体及邻近的太古宙变质岩内。Ar-Ar同位素年龄测定结果显示,金矿床成矿年龄(172~188Ma)与水泉沟碱性杂岩体的形成年龄(304~306Ma)相差达120Ma。综合研究推断金矿床不是碱性岩浆直接演化产物,而是在燕山期构造—岩浆活动影响下,地下循环热流体对矿源岩——碱性杂岩体淋滤、萃取,形成富含金的成矿热液,最终在有利的成矿构造部位沉淀富集的结果。因此本区的金矿床均属于与碱性杂岩体有关的改造型热液金矿。  相似文献   

10.
云南北衙金矿床地质特征及成因研究   总被引:17,自引:0,他引:17       下载免费PDF全文
云南北衙金矿床是滇西北地区与喜山期富碱岩类有关的典型代表之一,矿床成矿与区内富碱岩体(脉)形成与分布具有空间上形影相随,时间上相近或稍晚,成因上密切相关的联系,研究表明,北衙金矿化类型多样,特别是于近期发现的具有特大远景的红土型矿化体,更成为该矿区的一大特色,矿石中金属矿物复杂,蚀变强烈且分带明显,对矿床和相关的富碱岩体(脉)开展的金丰度值,同位素和稀土元素研究表明,富碱岩体本身并不是矿质的源地,成矿流体和主要矿质均源于地球深部,文章初步讨论了岩浆成岩与流体成矿之间的关系,指出岩浆的形成,演化与侵位过程实际上是深部流体上升的载体以及矿质在流体中得以集中并成矿的热机。  相似文献   

11.
阳新岩体是鄂东南地区出露规模最大的岩体,也是鄂东南地区矿产最集中的地段。该岩体主要由石英闪长岩和小规模的黑云石英闪长岩组成。本文利用LA-ICP-MS锆石U-Pb法对阳新岩体进行了精确的年龄测定及相应的Lu-Hf同位素分析。结果表明,阳新岩体形成于143~139 Ma之间,且主体岩性石英闪长岩侵位略早于黑云石英闪长岩。它们均是鄂东南地区岩浆活动高峰期的产物。锆石Ti温度计计算结果显示,石英闪长岩的形成温度主要分布在787~876℃之间,黑云石英闪长岩的形成温度主要分布在686~805℃之间。锆石Hf同位素分析表明,阳新石英闪长岩的ε_(Hf)(t)值为-11.42~-3.31,黑云石英闪长岩的ε_(Hf)(t)值明显偏低且分布范围较大,为-21.75~-1.44。结合岩体元素地球化学、Sr-Nd同位素以及矿物化学等方面的特征,认为阳新岩体应主要来源于富集岩石圈地幔,且在成岩过程中伴随一定程度的分离结晶和同化混染作用。其中,石英闪长岩结晶略早,形成温度较高,黑云石英闪长岩结晶稍晚,形成温度较低,且黑云石英闪长岩的源区较石英闪长岩有更多壳源物质的加入。  相似文献   

12.
微细浸染型金矿深源成矿流体的硅同位素地球化学示踪   总被引:1,自引:0,他引:1  
对黔西南和桂西北微细浸染型金矿床围岩,矿石和热液硅化石英的硅同位素组成及硅质阴极发光特征的研究发现,原生硅化石英不发光,而围岩中的石英和次生硅化石英明显发光、与对对应,围岩中石英的硅同位素组成与矿石的热液硅化石英的硅同位素组成也可以明显分开。  相似文献   

13.
The Qinling Orogenic Belt (QOB) located between the North China Craton (NCC) and the Yangtze Craton (YZC) is composed of the North Qinling Belt (NQB), the South Qinling Belt (SQB) and the northern margin of the YZC. Detailed geological and geochronological investigations have revealed distinct Neoproterozoic blocks of various scales in the middle and western segments of the SQB, including the Madao block (MDB), Mihunzhen intrusion (MHI), Zhenggou block (ZGB), and Lengshuigou block (LSB) which constitute an east-west trending Neoproterozoic uplift zone of the basement continental blocks. These blocks are mainly composed of four lithological groups. Group #1 consists mainly of diorites in the LSB, the zircons from which yield a weighted mean 206Pb/ 238U age of ca. 941 Ma. Group #2 is chiefly composed of hornblende gabbros and diorites in the MHI and LSB, which were formed at ca. 885 Ma. Group #3 comprises massive diorites, quartz diorite, tonalites, granodiorites, and monzogranites in the MDB, MHI, ZGB and LSB, which were emplaced during ca. 785–740 Ma. Group #4 is composed of hornblende gabbros with an emplacement age of ca. 667 Ma in the ZGB.Detailed whole-rock geochemical and zircon Hf isotopic studies reveal the following: (1) The diorites of Group #1 were produced by partial melting of depleted mantle which was enriched by slab-derived melts, with the parental magmas contaminated by crustal materials. (2) The gabbros of Group #2 were derived from the partial melting of depleted mantle enriched by slab-derived melts and the diorites are the fractional crystallization products of the gabbroic magmas. (3) Group #3 which can be further sub-divided based on lithological assemblages and zircon Hf isotopic features into two subgroups, one representing massive diorites, quartz diorite, tonalites, granodiorites, and monzogranites (DTGMs) and the other composed of gneissic quartz diorites and granodiorites. Among these, the DTGMs were derived through magma mixing between melts derived from the depleted mantle wedge altered by slab-derived fluids and melts from juvenile sources, which subsequently underwent amphibole-dominated fractionation, whereas the gneissic granitoids formed through partial melting of thickened lower crust contaminated by depleted mantle melts. (4) The gabbros of Group #4 originated from a depleted lithospheric mantle that was enriched by slab-derived melts and fluids with contribution of asthenospheric mantle-derived materials. In conjunction with data from previous studies on the Neoproterozoic blocks in the SQB and basement blocks in the northern margin of the YZC, our new geological, geochronological and geochemical data suggest a large Neoproterozoic uplift zone in the SQB, which was destructed by Paleozoic to Mesozoic magmatism and deformation. The Neoproterozoic uplift zone of the SQB might have been separated from the northern margin of the YZC during the formation of the Mianlue Ocean, and might have evolved under an active continental margin setting and subsequent continental rift setting accompanied by significant crustal growth. The magmatism also resulted in the formation of important Neoproterozoic ore deposits and supplied the material sources for some of the major Mesozoic ore deposits.  相似文献   

14.
高旭征 《地质科学》1977,12(2):140-158
从化学热力学观点,研究元素或其化合物在地球空间中转移和分布的规律,早期有吉布斯关于在重力场内某组分自由能性质的描写,戈德施密特的矿物学相律等。值得注意的是,近15年至20年以来,特别是到今天,在矿石地质学方面,根据化学热力学方法和数据的实验性、理论性、观测性的研究工作已涉及广泛范围。  相似文献   

15.
This paper deals with characteristics of silicon isotope compositions and siliceous cathodolumines-cence of host rocks, ores and hydrothermal silicified quartz of the Carlin-type ore deposits in the Yunnan-Guizhou-Guangxi triangle area. The study shows that primary silicified quartz is nonluminescent but quartz in host rocks andsecondary silicified quartz are luminescent by the action of cathode rays. Correspondingly, silicon isotope composi-tions of host rocks, ores and hydrothermal quartz veins are clearly distinguished. In strata from the Middle Triassic tothe "Dachang" host bed, δ~(30)Si of the host rocks ranges from 0.0‰-0.3‰, while that of primary ore-forming silici-fied fluids from -0.1‰ to -0.4‰, in the Upper Permian and Lower Carboniferous strata and Indosinian diabasehost beds, δ~(30)Si of the host rocks is from -0.1‰ to -0.2‰ and that of the primary silicified quartz veins from 0.3‰-0.5‰. This pattern demonstrates the following geochemical mineralization process: primary ore-forming sili-ceous fluids migrated upwards quickly along the main passages of deep-seated faults from mantle to crust and en-tered secondary faults where gold deposits were eventually formed as a result of permeation and replacement of thesiliceous ore-forming fluids into different ore-bearing strata. This gives important evidence for the fact that ore-forming fluids of this type of gold deposits were mainly derived from upper mantle differentiation and shows goodprospects for deep gold deposits and geochemical background for large and superlarge gold deposits.  相似文献   

16.
安庆夕卡岩型铁铜矿床地质地球化学特征及铁质来源研究   总被引:9,自引:1,他引:9  
安庆夕卡岩型铁铜矿床是长江中下游地区铜、铁成矿带的一个重要组成部分,其成岩成矿特征与典型的夕卡岩矿床有明显差别。本文通过对与成矿密切相关的月山岩体的岩石学和地球化学研究,以及夕卡岩分带特征与夕卡岩矿物学研究,指出岩体具高碱低铁的特征,夕卡岩矿物(石榴子石和透辉石)具富铁的特征,并有明显的逆向分带规律。并据此提出了铁质来源与磁铁矿的成矿作用的新观点,指出Fe质源自于形成岩体的富钠高铁的玄武岩浆;由于AFC作用,使FeNa分离,形成了富铁的成矿流体。而夕卡岩矿物的逆向分带和富铁夕卡岩矿物的广泛存在则是富铁流体参与夕卡岩成岩作用的结果。  相似文献   

17.
滇西北衙多金属矿田矿床成因类型及其与富碱斑岩关系初探   总被引:16,自引:11,他引:5  
北衙金多金属矿田是与金沙江-哀牢山新生代富碱斑岩有关的成矿作用的典型代表之一,近年来在矿产勘查方面又有重大突破,金已达到超大型矿床,伴生铁、铜、银、铅、锌也达到了大-中型矿床规模。本文基于野外观察与室内研究,结合前人研究成果,对北衙多金属矿的成因类型,富碱斑岩与成矿作用的关系及成矿机制进行了系统总结,对与成矿相关的富碱斑岩进行了主量元素及锆石LA-ICP-MS的测试,探讨了铁矿的成因。研究表明,矿田原生金属矿床可分为:斑岩型铜金矿化,夕卡岩型铁、金、铜、铅、锌矿化,爆破角砾岩筒中的铁、金、铅、锌矿化以及热液型金、银、铅、锌矿化。其中夕卡岩型和热液型矿床是该区最主要的成矿类型。新生代富碱斑岩(石英正长斑岩)的年龄分别34.92±0.66Ma和36.24±0.63Ma。属于钾质碱性岩系列。它不仅为含矿流体的上升提供了动力和热能,而且还是成矿物质和成矿流体的主要来源,因此形成以斑岩体为中心,由斑岩型、夕卡岩型、热液型等矿床构成的一个连续的成矿系统。钾质碱性岩及矿床是在碰撞造山走滑构造系统深部壳幔相互作用的产物。本区岩体接触带中发育大量由菱铁矿和磁铁矿组成的铁矿体,其中大部分的磁铁矿是一种具有赤铁矿的板状晶或聚片双晶假象的穆磁铁矿。对磁铁矿和菱铁矿形成条件的分析表明,磁铁矿和菱铁矿主要是在碱性环境下交代含铁夕卡岩矿物形成的。当热液中H+的浓度降低时,赤铁矿被还原为磁铁矿,但仍保留了赤铁矿的晶形,于是成为穆磁铁矿。由此推测,本区成矿作用是在成矿流体及夕卡岩化交代作用长时间反复持续进行的条件下发生的,这可能是本区得以形成巨量金属堆积的重要原因之一。  相似文献   

18.
The Tomino–Bereznyaki ore field lies in the western part of the East Urals volcanic megazone (20–30 km southwest of Chelyabinsk). The commercial Tomino porphyry (Mo, Au)–Cu deposit is localized in the east of the field, within a small mesoabyssal intrusion of quartz–diorite composition. The epithermal Au–Ag Bereznyaki deposit is confined to subvolcanic dioritic porphyrites in the west of the field. The western and eastern parts of the ore field have a tectonic boundary. Granitoids belong to a single volcanoplutonic complex of K–Na-quartz–diorite composition. The U–Pb concordant age of zircons from the ore-bearing dioritic porphyrite of the Tomino and Bereznyaki deposits is 428 ± 3 Ma (MSWD = 0.9) and 427 ± 6 Ma (MSWD = 1.1), respectively. A Silurian absolute age has been established for the Urals porphyry Cu ore-magmatic system for the first time. The diorites and acid metasomatites of both deposits contain a unique three-mica assemblage (Mu, Pa, and Mu0.36Pa0.64). The metasomatized diorites are of similar isotope-petrogeochemical compositions; they have close total REE contents (24–52 ppm) and REE patterns. Their Zr–Hf, Nb–Ta, and La–Ce diagrams show similar trends. The obtained data indicate the close time of formation of the porphyry and epithermal deposits and their probable genetic unity. The vertical evolution of the porphyry Cu column from meso- and hypabyssal to subvolcanic level includes the isotope (Sr, S, and O) crust–mantle interaction. The deposits formed at different depths expose on the modern surface as a result of the block tectonic processes in the ore field.  相似文献   

19.
夏日哈木矿区的闪长质岩体呈岩株状出露于矿区南东,岩性主要为石英闪长岩和闪长岩。年代学研究表明,石英闪长岩中岩浆锆石LA-ICP-MS U[CD*2]Pb谐和年龄为(243±1 ) Ma,MSWD=0.013,属早三叠世晚期。岩石学及化学成分显示其属于准铝质、高钾钙碱性系列闪长岩。稀土配分曲线呈现轻稀土元素相对富集的右倾分布特征((La/Yb)N=8.7~12.7),无明显的Eu负异常(δEu=0.84~1.01)。岩石富集Rb、Ba、K等元素,而相对亏损Nb、Ta、P和Ti。岩石具有不均一的εHf(T)值(-9.0~-1.0)和古老的二阶段Hf模式年龄(1.34~1.84  Ga)。结合试验岩石学资料判别,闪长岩主要起源于中元古代玄武质下地壳脱水部分熔融,富集地幔组分的加入可能是导致εHf(T)值和Hf模式年龄不均一的主要原因。微量元素及特征比值显示岩体形成于安第斯型活动大陆边缘的构造环境。综合分析认为,早三叠世晚期东昆中隆起带整体处于俯冲晚期的安第斯型活动大陆边缘背景。  相似文献   

20.
五横岩体是长江中下游成矿带中安庆-贵池矿集区月山矿田内重要的中酸性侵入岩体之一。本文对五横岩体中1个辉长闪长岩、3个闪长岩和1个二长闪长岩样品进行了锆石LA-ICP-MS U-Pb定年,得到年龄值为分别为139.6±1.6Ma、139.3±1.3Ma、140.1±1.4Ma、140.0±1.6Ma以及132.9±1.5Ma,表明闪长岩和二长闪长岩为不同期岩浆作用的产物。结合地质特征,将五横岩体划分成两个不同的岩体。基于区内已有的岩石学、地球化学和成矿年代学研究,将月山矿田内侵入岩划分为两期,早期侵入岩主要为闪长岩类,成岩时代为138~140Ma;晚期侵入岩主要为花岗岩和正长岩,具有A型花岗岩的地球化学特征,成岩时代123~126Ma。通过对比分析,认为五横岩体具有较好的矽卡岩型铜金铁矿床成矿潜力,其成岩成矿作用过程发生于区域挤压-拉张过渡的构造背景。  相似文献   

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