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1.
喇嘛苏铜矿床斑岩体地质地球化学特征及含矿性评价   总被引:5,自引:0,他引:5  
矿区内广泛发育以斜长花岗斑岩和花岗闪长斑岩为主的中酸性斑岩体。斑岩的结构特征反映出岩浆浅成侵位成因。研究表明该区斑岩具有相对富硅和富碱高钾的岩石化学特征,属钙碱性系列;具有Cu、Ag、Bi等成矿元素高丰度的微量元素地球化学特征和低ΣREE与高δEu值的稀土地球化学特征。矿区内铜矿化富集在斑岩体内外接触带,斑岩体深源浅成特点和富碱高钾岩石化学特征于铜矿化富集有利。Cu、Ag等成矿元素高丰度及其与矿化类型一致性说明成矿与岩浆活动有密切成因关系。  相似文献   

2.
黔东南钾镁煌斑岩岩石学特征   总被引:1,自引:0,他引:1  
陈慧 《地质与勘探》2018,54(4):702-710
黔东南地区位于扬子地台东南缘与江南褶皱系西缘的过渡带。本文以黔东南马坪、麻江地区发现的钾镁煌斑岩体为主要研究对象,通过地质特征、岩石学、矿物学、地球化学等研究,认为马坪地区金云钾镁煌斑岩具基性-超基性岩的标型元素Cr、Ni、Co含量较高,不相容元素总体富集,稀土元素配分模式为右倾型且分异程度较高,与典型钾镁煌斑岩(西澳含金刚石矿钾镁煌斑岩)在岩浆来源、地球化学特征上具有较大的相似性;麻江地区钾镁煌斑岩Al_2O_3、K_2O含量低,轻稀土富集、重稀土亏损,轻稀土特高,其岩浆形成温度、地球化学成分上与典型钾镁煌斑岩有较大差异。  相似文献   

3.
云南维西县阿南多塘石英斑岩是西南“三江”成矿带中段的含(锑)矿斑岩体。为深入分析该岩体岩浆来源及构造环境,开展斑岩主量元素、微量元素和稀土元素地球化学特征研究,结果表明:云南维西阿南多塘石英斑岩属高硅富钾过铝质钙碱性系列。轻稀土相对富集,稀土元素球粒陨石标准化模式图较陡向右倾斜,δCe无异常,δEu中等负亏损。富集不相容元素Cs、Rb和产热元素Th、U、K,高场强元素Zr、Hf等也相对富集,亏损Nb、Sr和Ti。经对比分析认为,该岩体是“三江”成矿带中段江达-德钦-维西陆缘弧演化后期陆陆碰撞形成的新生代富钾石英斑岩,岩浆主要来自上地壳沉积岩,具有碰撞后火山岩的典型特征。  相似文献   

4.
欧阳学财  狄永军  张达  徐洋  杨秋  王守营  陈杰  杜斌 《地质通报》2016,35(11):1869-1883
通过对东乡铜矿花岗斑岩进行岩石地球化学特征、锆石U-Pb定年研究,探讨其岩石成因、构造环境、形成时代与成矿的关系。东乡花岗斑岩的LA-ICP-MS锆石U-Pb年龄为156.4±1.5~161±1.0Ma。该岩体为高钾钙碱性系列,轻稀土元素富集,重稀土元素较亏损,具有明显的负Eu异常。微量元素富集大离子亲石元素,而亏损高场强元素。地球化学特征表明,东乡岩体形成于碰撞构造环境,岩浆来源于地幔,但形成演化期间经历了地壳物质的同化混染。该区矿石与花岗斑岩的稀土元素配分曲线存在一定的相似性,且成矿时间与岩浆侵入时间相近,表明岩浆侵入对东乡铜矿床的形成具有重要贡献。  相似文献   

5.
云南马厂箐金矿区煌斑岩地球化学及成因探讨   总被引:8,自引:0,他引:8  
广泛分布于云南马厂箐金矿区煌斑岩主要为云煌区,主要元素表明为碱性系列、钾质钙碱性煌斑岩;过渡元素分配模式为慢源岩石的“W”型、不相容元素分配模式为大离子亲石元素和高场强元素富集的“骆峰”型、稀土元素分配模式为“右倾”的经稀土富集型、以及模拟计算均表明,该区煌斑岩为交代富集地幔部分熔融(熔融程度约为12%)的产物。新鲜、蚀变、矿化煌斑岩Au,CO2,Fe2O3,FeO等的含量及变化规律,暗示其在金矿  相似文献   

6.
鹿坤 《地质与勘探》2009,45(2):8-13
桂东北煌斑岩SiO2含量主要在33.74%~48.14%之间,属基性-超基性范围,为钙碱性岩系、钾质-超钾质煌斑岩;地球化学表明,桂东北煌斑岩以富集大离子亲石元素和轻稀土元素,而亏损高场强元素(Ta-Nb-Ti)为特征,轻、重稀土具有较好的分馏.结合元素地球化学和地质发展史研究表明,桂东北煌斑岩为富含稀土元素的俯冲带流体交代过的富集地幔部分熔融所产生的岩浆.在上升过程中受到部分地壳混染的产物.  相似文献   

7.
初论大陆环境斑岩铜矿   总被引:42,自引:1,他引:42  
世界范围内大型—巨型斑岩铜矿多数产于岩浆弧(岛弧、陆缘弧)环境,含矿斑岩岩浆起源与大洋板块的俯冲作用有关。综合研究了与大洋板块俯冲无关、产于中国大陆环境的若干大型—巨型斑岩铜矿。研究发现,这些大陆环境的斑岩铜矿,虽然其基本地质特征与岩浆弧环境斑岩铜矿具有广泛的类似性,但其动力学背景、含矿斑岩性质、岩浆起源演化、金属富集过程及其构造控制机制却独具特色。这些大陆环境斑岩铜矿至少可产出于4类环境:晚碰撞走滑环境、后碰撞伸展环境、后造山伸展环境和非造山崩塌环境。大陆环境含矿斑岩以高钾质为特征,多具高钾钙碱性和钾玄质特征,通常显示埃达克岩地球化学亲和性。其岩浆通常起源于加厚的新生镁铁质下地壳或拆沉的古老下地壳。陆间碰撞期的地壳大规模增厚以及其后的软流圈上涌和岩石圈拆沉,是形成含矿岩浆的主导性机制。含矿岩浆的金属初始富集通常经历两阶段过程:(1)幔源物质直接供给金属阶段;(2)伴随含水、高氧逸度埃达克质岩浆演化金属富集阶段。在第一阶段,幔源物质主要通过两种形式供给金属:(1)以幔源组分为主的新生下地壳直接熔融;(2)拆沉下地壳熔融产生的埃达克质熔体与地幔岩石圈发生水/岩反应。在第二富集阶段,下地壳角闪榴辉岩熔融过程中角闪石大量分解产生富水的、高度氧化的埃达克质熔体,其分异演化使金属元素作为不相容元素得以在残浆中富集。大陆环境含矿斑岩的浅成侵位主要受大规模走滑断裂系统、切割造山带的断裂系统和基底线性断裂构造控制。与走滑断裂系统相伴发育的走滑拉分盆地、切割造山带的张性断裂与平行造山带的逆冲断裂带交汇部位以及不同方向的线性断裂构成的棋盘格子构造,常常控制斑岩岩浆—热液系统的空间定位。  相似文献   

8.
高峰  魏俏巧  牟静涛  邱宏  于雷  马骏雨 《地质通报》2017,36(11):2082-2090
青茶馆-元宝山花岗斑岩具有高硅、富铝、稀土元素含量较高、相对富集轻稀土元素、亏损重稀土元素的特征,负Eu异常明显,稀土元素配分图解具有右倾"V"字形的特征,并相对富集大离子亲石元素。锆石具有典型的岩浆振荡生长环带和较高的Th/U值(0.49~1.07),反映了岩浆成因特征。测得LA-ICP-MS锆石U-Pb年龄为116.8±1.5Ma(n=13,MSWD=1.13)。以上特征表明,青茶馆-元宝山花岗斑岩为高钾钙碱性高分异I型花岗岩,为后造山花岗岩,其形成可能与古太平洋板块俯冲作用有关。  相似文献   

9.
湖南锡矿山锑矿矿区煌斑岩的地球化学特征   总被引:9,自引:3,他引:9  
对湖南锡矿山矿区煌斑岩脉进行了系统的元素和同位素地球化学研究,来探讨煌斑岩的成因。本区煌斑岩形成时代大约为120Ma,早于锑成矿时间,并与锑成矿有密切相关。其微量元素MORB蛛网图,以富集高场强元素,Nb-Ta亏损和Ti不亏损,Th强富集和Ce弱富集为特征,具有岛弧型玄武岩微量元素分配模式,构造环境可能为大陆内部破坏板块边缘。稀土元素具有总量高,无明显的负铕异常,配分模式呈轻稀土富集的右倾型特征。同位素以高^87Sr/^86Sr、低^143Nd/^144Nd为特征。结合元素地球化学、同位素特征和地质发展史分析,煌斑岩可能为富含REE和高场强元素的俯冲带流体交代过的富集地幔部分熔融所产生的岩浆,在上升过程中同化和混合很少量的矿区隐伏花岗岩浆和灰岩的产物。  相似文献   

10.
贺娟  王启宇  闫国川 《地球科学》2018,43(8):2586-2599
前人对金沙江-红河构造带上的煌斑岩研究工作主要集中在南段哀牢山地区.对构造带中段鲁甸地区新发现的煌斑岩脉进行了锆石U-Pb年代学和全岩地球化学研究.结果表明,煌斑岩形成时代为始新世末期,与滇西新生代富碱斑岩高峰期一致.鲁甸煌斑岩具有高钾、富碱、高Mg#,富集大离子亲石元素(LILE)和轻稀土元素(LREE),亏损高场强元素(HFSE,尤其是Ta-Nb-Ti)的特征.其岩浆源区为受俯冲流体和熔体交代的岩石圈地幔,源区组分为含金云母的尖晶石相方辉橄榄岩.结合同期的镁铁质火山岩和富碱斑岩研究成果,滇西区域的岩石圈地幔富集过程可能为元古宙时期与罗迪尼亚超大陆聚合相关的俯冲作用.始新世时期,在印度和亚洲大陆碰撞过程中,金沙江-红河构造带的富集岩石圈地幔发生拆沉或对流减薄,软流圈物质上涌,引发富集的岩石圈地幔部分熔融,形成本期煌斑岩岩浆作用.   相似文献   

11.
燕山地区中生代花岗岩类侵入体中发育煌斑岩,呈脉状产于冀北寿王坟—五凤楼一带,岩石类型主要为云煌岩。岩石化学属基性,富钠,富碱,高Mg#,高钛,属高钛、钠质钙碱性煌斑岩。岩石中富集LREE、Ba等大离子亲石元素和P,亏损HREE和Nb、Zr、Ta等高场强元素,基本无Eu异常。其LA ICP MS锆石U Pb年龄为(1352±13) Ma, 侵位于早白垩世,与寿王坟杂岩体是同一时期岩浆活动的产物。五凤楼煌斑岩锆石εHf(t)值为-193~-133,模式年龄远老于其成岩年龄,表明岩浆起源于富集地幔。较高的Ba/Th值(12309~43634)和Sr值(9154×10-6~1 257×10-6),暗示源区在一定程度上受到了俯冲带流体的改造;较低的Rb/Sr值(002~011)及较高的Ba/Rb值(108~809)证明其源区含有角闪石。岩石地球化学特征显示,五凤楼煌斑岩由俯冲的古太平洋壳富钠流体交代形成的石榴石角闪二辉橄榄岩富集地幔的低程度(05%~15%)部分熔融上侵而成,起源深度为75~100 km。  相似文献   

12.
西昆仑库地煌斑岩的年代学及地球化学特征   总被引:14,自引:3,他引:11  
周辉  李继亮 《岩石学报》2000,16(3):380-384
在西昆仑库地发现的煌斑岩脉为钙碱性、钾质闪煌岩,侵位在加里东期的变质增生楔杂岩中,采用角闪石单矿物^40Ar/^39Ar同位素年代学方法确定粕斑岩的侵位年龄为404Ma。煌斑岩的稀土元素总量较高,配分图呈轻稀土富集的右倾型式;微量元素以相对富含固离子亲石元素、亏损高场强元素为特征;结合地球化学、同位素特征和大地构造背景分析,煌斑岩来源于受原特提斯俯冲组分释放富含大离子不相容元素流体交代过的亏损地幔  相似文献   

13.
The mafic dykes in Wadi Mandar-Wadi Um Adawi area are as follows: (1) calc-alkaline lamprophyre (i.e., kersantite and spessartite), (2) diabase, and (3) alkaline lamprophyre (i.e., camptonite). The field relations reveal that the emplacement of calc-alkaline lamprophyres preceded the diabase dykes, while alkaline lamprophyres emplaced later than the diabase dykes. Calc-alkaline are basaltic andesite, basaltic trachyandesite to basalt, while the diabase dykes and alkaline lamprophyres are basaltic in composition. These dykes are characterized by metaluminous character. Calc-alkaline lamprophyres and diabase dykes show transitional affinity from calc-alkaline to alkaline, while the alkaline lamprophyres exhibit more strong alkaline character. The mafic dykes were crystallized under temperature 1100–1150 °C and pressure 3–5 kbars in a high oxygen fugacity conditions. Fe-Ti oxides in the dykes are represented by ilmenite and Ti-magnetite. The chemistry of the sulfides hosted in those mafic dykes suggests a magmatic-hydrothermal origin for these minerals. The geochemical behavior of high field strength elements and large ion lithophile elements in these dykes excludes the derivation of diabase or alkaline lamprophyre either by partial melting or fractional crystallization from calc-alkaline lamprophyre. The parental magmatic sources of the studied dykes were generated from crustal material with addition of mantle-derived melt during the post-collisional stage. The mafic dykes in Wadi Mandar-Wadi Um Adawi area were generated from different magmatic sources by partial melting and subsequent fractional crystallization. In addition, the crustal contamination/assimilation process has a prominent role in the magmatic evolution of diabase and alkaline lamprophyre dykes.  相似文献   

14.
胶东玲珑金矿田煌斑岩脉与成矿关系的讨论   总被引:6,自引:0,他引:6  
在世界范围内的前寒武纪地盾区,煌斑岩与中温热液金矿床有着密切的空间和时间关系,但是否存在成因关系有不同认识。以玲珑金矿田为例,介绍了区内煌斑岩的地质地球化学特征及其与金矿床在时间和空间上的密切关系。与含金石英脉伴生的橄榄拉辉粕斑岩富含大离子亲石元素(HILE),H2O,CO2,Au和碱金属,这些都是成矿流体富集的成分;粕斑岩形成年龄覆盖了金矿化的年龄,是与成矿作用时间最接近的岩浆活动,两者又都是通过相同的构造通道运移,以上特征表明,煌斑岩即使不是Au的提供者,也可以为金矿化提供部分成矿流体和热动力,从这个意义上讲,金矿化与煌斑岩存在成因关系。  相似文献   

15.
Eslamy peninsula in NW of Iran is formed by a strato-volcano with collapsed calderon, which is intruded by lamprophyric dykes with minette composition. Also trachytic and microsyenitic dykes have intruded the volcanic rocks. The oldest volcanic activity includes eruption of leucite basanite, leucite tephrite, basanite and tephrite, which are associated with pyroclastic rocks. Lamprophyric dykes are distinguishable with large mica phenocrysts. Mica-clinopyroxenite xenoliths can be found in the rocks. The source magma of the rocks had a ultrapotassic to shoshonitic nature, rich in LREE and LILE. Eslamy peninsula lamprophyres are between alkaline and calc-alkaline lamprophyres in terms of REE patterns and spider diagrams for trace elements, but are closer to clac-alkaline lamprophyres. The behaviour of trace elements studied by the means of spider diagrams show that the magma, producing the lamprophyres, is generated from deep-mantle probably from a garnet-bearing source (garnet lherzolite) with high CO2/H2O content. The resulted magma had interacted with crustal materials and had formed Eslamy peninsula lamprophyres in a post-collisional tectonic setting. Geochemistry of rare elements indicate an extensive rutile-rich metasomatism in the source magma of the lamprophyres.  相似文献   

16.
河北涞源、阜平一带煌斑岩的地球化学特征表明其来源于地幔,非花岗岩演化成因,有的脉保持原生岩浆的特点,有的脉发生了一定程度的分离结晶,分离结晶对轻稀土影响较大,而对重稀土影响较小,分离结晶作用还导致了Cr,Ni,Sr的逐渐贫化,Ba和Co等元素的逐渐富集。  相似文献   

17.
牛晓露  冯光英  刘飞  杨经绥 《岩石学报》2017,33(12):3897-3908
华北克拉通北缘中段大同地区发育呈岩墙形式产出的煌斑岩,该煌斑岩为超钾质碱性岩,极度低硅低钠高镁高钙高钾,且富H_2O和CO_2等流体组分。本文利用镍锍试金-电感耦合等离子体质谱法测定了这套煌斑岩的铂族元素组成,获得了其形成及演化过程的一些信息。大同煌斑岩铂族元素含量极低,∑PGE=2.14×10~(-9)~4.50×10~(-9),原始地幔标准化铂族元素配分型式为左倾型,亏损Ir亚组(IPGE),富集Pd亚组(PPGE),(Pd/Ir)_N=3.48~10.43。低铂族元素含量、高Cu/Ni比值(48101~90926)和高(Pd/Ir)_N比值指示大同煌斑岩形成于地幔低程度部分熔融(1%~13%),熔体形成时仍有部分硫化物残留于源区。岩浆演化过程中,未发生明显的结晶分异作用和地壳混染作用,硫未达到饱和-过饱和,未发生硫化物熔离作用。计算获得铂族元素在原始地幔与煌斑岩熔体间的分配系数分别为D_(Os)=35~124,D_(Ir)=13~35,D_(Ru)=34~91,D_(Rh)=5.8~10,D_(Pt)=3.1~9.7,D_(Pd)=2.2~4.5;PPGE较IPGE明显更不相容。与峨眉山大火成岩省玄武岩对比研究发现,岩浆岩中的铂族元素含量主要受源区地幔部分熔融程度和演化过程中硫化物熔离作用共同影响;而铂族元素之间的分异受源区部分熔融程度和岩浆分离结晶作用共同影响。  相似文献   

18.
In the vicinity of Konya (Turkey),mafic,micro-porphyritic sub-volcanic rocks intrude into the Mesozoic units,which represents the only example of such a rock type in the region.40Ar/39Ar dating of two whole rock samples from the sub-volcanics gave ages of 13.72±0.13 and 12.40±0.11 Ma,suggesting temporal association to the Late Miocene-Pliocene high-K calc-alkaline volcanism in the region.The mineral chemistry and geochemical data permit us to classify the rocks as "minette" lamprophyres.They include diopside and phlogopite phenocrysts in a microcrystalline groundmass composed of sanidine,phlogopite,diopside and titano-magnetite.Segregation and ocelli-like globular structures occur commonly in the samples.In terms of major elements,the lamprophyres are calcalkaline,and potassic to ultrapotassic rocks.All the lamprophyres display strong enrichments in LILE (Rb,Ba,K,Sr),radiogenic elements (Th,U) and LREE (La,Ce) and prominent negative Nb,Ta,and Ti anomalies on primordial mantle-normalized trace element diagrams.Geochemical data suggest that the lamprophyres and high-K calc-alkaline rocks in the region derived from a subduction-modified lithospheric mantle source affected by different metasomatic events.Lamprophyric magmatism sourced phlogopite-bearing veins generated by sediment-related metasomatism via subduction,but high-K calc-alkaline magmas are possibly derived from a mantle source affected by fluid-rich metasomatism.  相似文献   

19.
Cenozoic lamprophyre dykes occur widely along the Ailao-Shan-Red-River (ASRR) shear zone related to the Indian–Eurasian collision. Two generations of lamprophyres have been found at the Daping gold deposit in the southern part of the ASRR shear zone and have been investigated by using phlogopite 40Ar/39Ar dating and whole-rock major and trace element as well as Sr and Nd isotope geochemical analyses. The 40Ar/39Ar plateau ages of phlogopite from the two generations of lamprophyres bracket the emplacement of auriferous quartz veins in the Daping deposit between 36.8 ± 0.2 Ma and 29.6 ± 0.2 Ma, consistent with the timing of gold mineralization in other parts of the ASRR shear zone. Geochemical data suggest that these lamprophyres most likely originated from a subduction-modified mantle source consisting of phlogopite-bearing spinel lherzolite, which underwent partial melting with contributions from crust materials. In particular, the second generation lamprophyres are characterized by more primitive geochemical features than the first, suggesting that secular source evolution probably resulted from post-collisional slab break-off mantle convection and remelting from ascending asthenosphere after subducted lithosphere break-off. Widespread and episodic occurrences of lamprophyres and other potassic volcanism in the eastern Tibetan Plateau were probably related to the onset of transtensional tectonics along the ASRR shear zone during Oligocene. A genetic model involving transtensional tectonics has been proposed for lamprophyres and gold mineralization in the ASRR shear zone.  相似文献   

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