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1.
张京渤  安芳  魏少妮 《地球科学》2019,44(10):3495-3511
吐拉苏岩体位于西天山吐拉苏盆地的东北缘,由石英闪长玢岩、辉石闪长玢岩和花岗岩组成,其中花岗岩主要为花岗闪长玢岩和花岗斑岩.它们表现出高硅、高铝、富碱的特征,里特曼指数(σ)=1.61~3.18,A/CNK=1.00~1.09,A/NK=1.07~1.68,为准铝质-弱过铝质高钾钙碱性花岗岩;相对富集Rb、Th、U等大离子亲石元素,明显亏损Nb、Ta、Sr、P、Ti等元素;轻重稀土分馏明显,(La/Yb)N=7.48~12.12、中等Eu负异常(δEu=0.47~0.62),无Ce异常.但花岗斑岩较花岗闪长玢岩碱含量更高,更加接近准铝质钾玄岩系列,Sr、P、Ti等元素的亏损程度更强,且轻稀土更富集,可能说明花岗斑岩中壳源物质含量增加.锆石LA-ICP-MS U-Pb定年研究获得花岗斑岩的侵位年龄为305.9±5.9 Ma.锆石Hf同位素组成显示,εHf(t)值介于0.4~8.7,表明花岗岩的岩浆源区有幔源物质的加入;TDM2值介于766~1 294 Ma,表明岩浆源区为中元古代-新元古代新生地壳.综合吐拉苏岩体中两类花岗岩的地质、地球化学特征、年代学和区域地质背景,认为从花岗闪长玢岩到花岗斑岩结晶分异增强、壳源物质的贡献增大,花岗岩形成于后碰撞环境,岩浆源区为中元古代-新元古代新生地壳,但有不同比例幔源物质的加入.   相似文献   

2.
王庆磊  杨言辰  李骞  马晓阳  谈艳  张国宾 《地质通报》2015,34(12):2172-2180
选取黑龙江省完达山地区358高地与成矿关系密切的花岗斑岩,进行系统的地质、岩相学、元素地球化学及LA-ICP-MS锆石U-Pb定年研究。结果显示:花岗斑岩具有富硅、钠、钾、铝,贫镁、钙的特征,里特曼指数(σ)为1.12~2.00(σ3.3),A/NK为1.36~2.00,A/CNK为1.11~1.93(A/CNK1.1);富集大离子亲石元素,亏损Nb、Ta,严重亏损Sr、P、Ti;轻稀土元素富集,重稀土元素亏损,具有负Eu异常。这些特征揭示,花岗斑岩是过铝质的S型花岗岩,岩浆来源可能为壳源。LA-ICP-MS锆石定年获得花岗斑岩的成岩年龄为128±1Ma,推断金矿成矿时代应为早白垩世晚期。构造判别图解显示,花岗斑岩具有碰撞后花岗岩的特征,斑岩体的形成很可能与太平洋板块俯冲作用后的伸展体制有密切关系。  相似文献   

3.
LA-ICP-MS锆石U-Pb测年得出花岗闪长斑岩的成岩年龄为(168±1)Ma(中侏罗世),属燕山期岩浆活动产物。岩石地球化学特征显示岩石为准铝质-弱过铝质高钾钙碱性系列,富集Ba、K、Sr,亏损Nb、Ta、P、Ti,δEu异常不明显,属Ⅰ型花岗岩,岩浆来源于地壳部分熔融。综合区域同时代火成岩构造演化背景,认为该矿床形成于古太平洋板块向欧亚大陆俯冲下的火山弧环境。  相似文献   

4.
游军  洪涛  吴楚  丁汝福  徐兴旺 《岩石学报》2016,32(5):1262-1282
新疆北部地区不同地体间的碰撞时间与碰撞过程的成矿作用是中亚造山带与成矿研究的热点问题。对于新疆北部地区是否存在晚碰撞岩浆活动、碰撞与后碰撞的转化时间及转化过程中的岩浆活动与成矿作用特征尚不清楚。本文报道了新疆东准噶尔希勒库都克钼铜矿区岩浆演化的研究成果。矿区存在3期岩浆活动形成4种岩石类型,依次为340Ma的闪长玢岩、328Ma的二长花岗岩与325Ma的花岗斑岩、315Ma石英斑岩。4种岩石均具高钾钙碱性特征。闪长玢岩形成于碰撞晚期环境,具有典型的岛弧地球化学特征,属准铝质岩石,无铕异常,亏损Nb、Ta、Ti,无P亏损;二长花岗岩、花岗斑岩形成于后碰撞早期环境,其中二长花岗岩具有弧与后碰撞过渡的地球化学特征,属弱过铝质岩石,弱正铕异常,亏损Nb、Ta、Ti,P中等程度亏损;花岗斑岩具有不典型后碰撞的地球化学特征,属弱过铝质岩石,负铕异常,明显亏损Nb、Ta、Ti,较强P亏损;石英斑岩形成于后碰撞伸展阶段并具有后碰撞的地球化学特征,属弱过铝质岩石、负铕异常,亏损Nb、Ta、Ti,强P亏损。矿区侵入岩具有较低的(87Sr/86Sr)i初始值(0.702976~0.704306)和相对较高的εNd(t)值(+5.8~+6.8),模式年龄(tDM)为524~588Ma,其可能主要源于早古生代洋壳的部分熔融。建立了萨吾尔岛弧晚古生代的构造演化模式及成岩、成矿过程,认为萨吾尔岛弧在晚古生代经历了俯冲期(400~370Ma)、主碰撞期(360~340Ma)、碰撞晚期(340~330Ma)、后碰撞早期(330~320Ma)以及后碰撞伸展阶段(320~280Ma)五个阶段。  相似文献   

5.
本文对躬穷左波Fe-Cu矿区出露的三套酸性侵入岩进行了系统的LA-ICP-MS锆石U-Pb年代学和岩石地球化学研究。年代学测试结果显示花岗斑岩、二长花岗斑岩和钾长花岗岩~(206)Pb/238U加权平均年龄分别为147.0 Ma、143.6 Ma和142.8 Ma,矿区存在晚侏罗世—早白垩世存在3期岩浆事件。岩石地球化学组成特征显示,花岗斑岩属准铝质-弱过铝质I型花岗岩;二长花岗斑岩为高钾钙碱性系列,属弱过铝质I型花岗岩;钾长花岗岩经历了强烈的结晶分异作用,属高分异I型花岗岩。岩石微量元素富集Rb、Th、U、Pb而亏损Nb、Ta、Ti、P元素,Nb/Ta比值接近大陆地壳组成及锆石负的εHf(t)值特征,指示成岩物质以壳源物质为主。躬穷左波晚侏罗世矽卡岩型Fe-Cu矿化事件的发现对于完善班—怒带西段成矿规律和指导区域找矿工作具有重要意义。  相似文献   

6.
新疆东天山晚古生代中酸性岩浆活动广泛分布且已有较多研究成果。近年来在该区识别出印支期岩浆作用,然而研究者对其岩石成因、源区性质及相关动力学问题研究较少。白山钼矿区位于东天山康古尔-黄山韧性剪切带东段,是东天山多金属成矿带印支期斑岩型钼矿床,其矿体主要赋存于深部花岗斑岩体外接触带中。本文则对白山钼矿区深部花岗斑岩开展了岩石地球化学、锆石U-Pb年代学及Lu-Hf同位素组成研究。SIMS锆石U-Pb定年结果表明,白山花岗斑岩体大约侵位于226.8±3.2Ma。岩石地球化学结果表明,花岗斑岩具高Si O2含量(68.87%~72.82%)及全碱含量(6.85%~8.17%),铝饱和指数A/CNK为0.93~1.06,均小于1.1,为准铝质至过铝质I型花岗岩。岩石具有明显的轻重稀土分异和弱的Eu负异常,富集大离子亲石元素(K、Rb、Sr),相对亏损高场强元素(Nb、Ta、Ti、Th),具高Sr/Y和La/Yb比值的特点,显示与埃达克质岩石相似的地球化学特征。白山花岗斑岩锆石Lu-Hf同位素数据显示,其具较高的εHf(t)值(+8.0~+11.0)和较年轻的地壳模式年龄tCDM(556~758Ma)。结合岩石地球化学及同位素地球化学特征,本文认为白山花岗岩体可能来源于增厚下地壳物质的部分熔融,并可能混有幔源岩浆物质,形成于东天山碰撞造山作用之后的板内伸展阶段。  相似文献   

7.
位于西准噶尔南部的庙尔沟岩体主体由碱长花岗岩和少量紫苏花岗岩组成。本文在前人工作基础上,以岩体东南边缘新发现的花岗闪长斑岩为研究对象,开展岩石学、年代学和Hf同位素以及全岩地球化学研究,确定花岗闪长斑岩形成时代、揭示岩石成因类型及源区属性、探讨其与碱长花岗岩和紫苏花岗岩岩浆演化成因联系及其形成的深部动力学过程。锆石U-Pb定年结果显示,花岗闪长斑岩形成于317.4±1.9Ma,为晚石炭世早期岩浆活动的产物,明显早于紫苏花岗岩(~307Ma)和碱长花岗岩(~303Ma)。岩石地球化学数据表明,花岗闪长斑岩具有较高硅、中等铝,贫钙、铁、镁,富集Rb、K、Th、U,强烈亏损Nb、Ta、Ti的特征,为钙碱性弱过铝质I型花岗岩;紫苏花岗岩更多的表现出钙碱性-高钾钙碱性镁质I型紫苏花岗岩特征;碱长花岗岩为碱性准铝质-弱过铝质A型花岗岩。锆石Hf同位素分析结果表明,花岗闪长斑岩、紫苏花岗岩和碱长花岗岩均具有高正的ε_(Hf)(t)值(+11.6~+15.8)和年轻的二阶段模式年龄(325~600Ma),表明其原始岩浆主要起源于亏损地幔新衍生的年轻地壳物质。综合分析认为,庙尔沟岩体花岗闪长斑岩形成于晚石炭世早期洋壳俯冲背景,由底侵的、受流体交代的幔源基性岩浆与其诱发的年轻下地壳酸性岩浆在深部混合而成。紫苏花岗岩和碱长花岗岩形成于弧后伸展背景,前者是伸展初期继续底侵于下地壳的幔源玄武质岩浆降温释放大量的水和热诱使早期侵位于下地壳的镁铁质岩石再次发生部分熔融的产物,后者是伸展后期大规模软流圈地幔上涌底垫加热年轻中下地壳使其部分熔融而成。  相似文献   

8.
西藏中冈底斯北部尼玛县阿索乡亚布努马地区东侧出露一处花岗斑岩岩脉,LA-ICP-MS锆石U-Pb测年结果显示,该花岗斑岩的形成时代为晚侏罗世(161.2±5.9Ma)。全岩地球化学数据显示其高硅、富碱、富铝的特征,属于碱性准铝质花岗斑岩;富集轻稀土元素,轻、重稀土元素分异明显,具有明显的负Eu异常,富集Rb、Pb等大离子亲石元素,亏损Ba、Sr元素及Nb、Ta、Ti、U等高场强元素,形成于岛弧环境。其源区可能为来自俯冲带增厚下地壳的深熔作用,结合区域上同时代的岩浆事件,亚布努马花岗斑岩应该形成于以班公湖-怒江洋南向俯冲为动力背景的陆缘弧环境。  相似文献   

9.
云南宾川小龙潭矿区斑岩体位于扬子板块西缘程海断裂带东侧,属金沙江-红河富碱侵入岩带组成部分.本文对矿区内与成矿密切相关的花岗斑岩进行了岩石学、年代学及地球化学研究.结果显示:花岗斑岩由二长花岗斑岩(MGP)和钾长花岗斑岩(KGP)组成,二者岩相学特征相似,空间上无明显分带关系,呈过渡渐变关系,具典型斑状结构.二长花岗斑岩和钾长花岗斑岩均具富碱、低钛和准铝质-弱过铝质特征,属准铝质-弱过铝质钾玄岩系列富碱斑岩;二者富集轻稀土元素(LREE)和大离子亲石元素(Rb、Ba、U),亏损重稀土元素(HREE)和高场强元素(Ta、Nb、Ti,Zr,Hf),具有较高Sr含量和Sr/Y值,中等负Eu异常(δEu=0.39~0.78),表现出C型埃达克质岩地球化学特征.二长花岗斑岩和钾长花岗斑岩具相似的地球化学特征,表明它们属同源岩浆演化产物.二长花岗斑岩锆石U-Pb年龄为34.7±0.3 Ma,反映其形成于古近纪始新世,与金沙江-红河富碱侵入岩活动高峰期(45~30 Ma)吻合.综合研究表明,小龙潭矿区花岗斑岩属具C型埃达克质岩地球化学特征的花岗岩,起源于底侵作用带来的幔源岩浆与石榴角闪岩相加厚下地壳部分熔融的混合岩浆,是印度-欧亚板块晚碰撞期力学性质由挤压向伸展转化动力学背景下的产物,具备成矿作用发生的物质基础,有较好的成矿潜力.  相似文献   

10.
都兰热水地区位于东昆仑造山带东段,发育着大量花岗岩岩石组合,主要岩石类型为二长花岗岩和花岗闪长岩,本文报道了对都兰热水地区二长花岗岩和花岗闪长岩的地球化学、LA-ICP-MS锆石U-Pb定年的研究结果,为建立完善的年代学格架和构造演化提供了新资料。锆石U-Pb同位素定年研究表明东昆仑东段都兰热水地区的二长花岗岩和花岗闪长岩的结晶侵位时代分别是232.4±1.3 Ma、230.8±1.1 Ma,属中三叠世花岗岩浆作用的产物。岩矿特征和岩石地球化学特征显示二长花岗岩和花岗闪长岩属高钾钙碱性I型花岗岩,具较高的K_2O含量(2.2%~4.74%);铝饱和指数A/CNK值都小于1.1,显示准铝质特征;P_2O_5与SiO_2之间存在明显的负相关性,还表现出富集轻稀土元素、大离子亲石元素(如K、Rb、La),亏损重稀土元素和高场强元素(如Nb、Ta、Ti、P)及Eu负异常特征。结合前人区域地质研究,我们认为东昆仑东段都兰热水地区花岗岩岩石组合是受幔源岩浆的底侵作用导致下地壳部分熔融而形成,幔源岩浆与壳源岩浆发生不同比例混合,并在岩浆演化过程中发生了一定的分离结晶作用。晚二叠世阿尼玛卿洋向东昆仑板块俯冲,直至中三叠世都兰热水地区仍处于洋壳俯冲而产生的火山弧环境,二长花岗岩和花岗闪长岩就是这一阶段的典型产物。  相似文献   

11.
Whole‐rock geochemistry, zircon U–Pb and molybdenite Re–Os geochronology, and Sr–Nd–Hf isotopes analyses were performed on ore‐related dacite porphyry and quartz porphyry at the Yongping Cu–Mo deposit in Southeast China. The geochemical results show that these porphyry stocks have similar REE patterns, and primitive mantle‐normalized spectra show LILE‐enrichment (Ba, Rb, K) and HFSE (Th, Nb, Ta, Ti) depletion. The zircon SHRIMP U–Pb geochronologic results show that the ore‐related porphyries were emplaced at 162–156 Ma. Hydrothermal muscovite of the quartz porphyry yields a plateau age of 162.1 ± 1.4 Ma (2σ). Two hydrothermal biotite samples of the dacite porphyry show plateau ages of 164 ± 1.3 and 163.8 ± 1.3 Ma. Two molybdenite samples from quartz+molybdenite veins contained in the quartz porphyry yield Re–Os ages of 156.7 ± 2.8 Ma and 155.7 ± 3.6 Ma. The ages of molybdenite coeval to zircon and biotite and muscovite ages of the porphyries within the errors suggest that the Mo mineralization was genetically related to the magmatic emplacement. The whole rocks Nd–Sr isotopic data obtained from both the dacite and quartz porphyries suggest partial melting of the Meso‐Proterozoic crust in contribution to the magma process. The zircon Hf isotopic data also indicate the crustal component is the dominated during the magma generation.  相似文献   

12.
青藏高原拉萨地块发育着中新世斑岩,该后碰撞时期的斑岩因与斑岩型Cu-Mo矿床有着密切关系已被前人做过大量研究。然而对于拉萨地块西部未成矿斑岩岩体的年代学、地球化学报道研究较少。本文对拉萨地块西部亚热南复式岩体识别出的两类侵入岩进行了锆石LA-ICP-MS U-Pb定年和岩石地球化学研究表明,亚热南复式岩体主要由始新世黑云母二长花岗岩(年龄49.4±0.9Ma)和中新世花岗斑岩(年龄16.3~16.5Ma)组成。始新世黑云母二长花岗岩属钾玄岩系列准铝质-弱过铝质,具有低的Sr/Y、(La/Yb)N值高Y、YbN值具有典型的岛弧岩浆岩性质;中新世花岗斑岩为钾玄岩系列、准铝质,具有类埃达克质特征。这两种岩性所反映的源区亦存在差别,始新世黑云母二长花岗岩源区为地幔楔混染过的中下地壳;而具有埃达克性质的花岗斑岩则可能是源于古老地壳部分熔融。结合年代学及构造背景,推论出始新世黑云母二长花岗岩的岩石成因为新特提斯洋板片断离引发混染过的中下地壳发生熔融并结晶分异形成;而中新世花岗斑岩则形成于某种动力学机制引发的古老下地壳熔融后侵位于上地壳。  相似文献   

13.
The Late Mesozoic geology of Southeast China is characterized by extensive Jurassic to Cretaceous magmatism consisting predominantly of granites and rhyolites and subordinate mafic rocks, forming a belt of volcanic-intrusive complexes. The Xiangshan volcanic-intrusive complex is located in the NW region of the belt and mainly contains the following lithologies: rhyodacite and rhyodacitic porphyry, porphyritic lava, granite porphyry with mafic microgranular enclaves, quartz monzonitic porphyry, and lamprophyre dyke. Major and trace-element compositions, zircon U?CPb dating, and Sr?CNd?CHf isotopic compositions have been investigated for these rocks. The precise SHRIMP and LA?CICP?CMS zircon U?CPb dating shows that the emplacement of various magmatic units at Xiangshan took place within a short time period of less than 2?Myrs. The stratigraphically oldest rhyodacite yielded a zircon U?CPb age of 135?±?1?Ma and the overlying rhyodacitic porphyry has an age of 135?±?1?Ma. Three porphyritic lava samples yielded zircon U?CPb ages of 136?±?1?Ma, 132?±?1?Ma, and 135?±?1?Ma, respectively. Two subvolcanic rocks (granite porphyry) yielded zircon U?CPb ages of 137?±?1?Ma and 137?±?1?Ma. A quartz monzonitic porphyry dyke, which represented the final stage of magmatism at Xiangshan, also yielded a zircon U?CPb age of 136?±?1?Ma. All these newly obtained precise U?CPb ages demonstrate that the entire magmatic activity at Xiangshan was rapid and possibly took place at the peak of extensional tectonics in SE China. The geochemical data indicate that all these samples from the volcanic-intrusive complex have an A-type affinity. Sr?CNd?CHf isotopic data suggest that the Xiangshan volcanic-intrusive complex derived mainly from remelting of Paleo-Mesoproterozoic crust without significant additions of mantle-derived magma. However, the quartz monzonitic porphyry, which has zircon Hf model ages older than the whole-rock Nd model ages, and which has ??Nd(T) value higher than the other rocks, may indicate involvement of a subordinate younger mantle-derived magma in its origin. Geochemical data indicate that the various rocks show variable REE patterns and negative anomalies of Ba, Nb, Sr, P, Eu and Ti in the trace element spidergrams, suggesting that these rocks may have undergone advanced fractional crystallization with separation of plagioclase, K-feldspar and accessory minerals such as allanite. We suggest that this Cretaceous volcanic-intrusive complex formed in an extensional environment, and the formation of the Xiangshan mafic microgranular enclaves can be explained by the injection of mafic magma from a deeper seated mantle magma chamber into a hypabyssal felsic magma chamber at the crustal emplacement levels.  相似文献   

14.
李再会  林仕良  丛峰  邹光富  谢韬 《地质学报》2012,86(7):1047-1062
高黎贡-腾梁花岗岩带是冈底斯花岗岩带的东延部分。腾梁花岗岩中辉长-闪长质包体、花岗岩、石英闪长岩密切共生。辉长-闪长质包体的结构构造、矿物学特征表明,它们是岩浆快速冷凝结晶的产物。地球化学数据显示,辉长-闪长质包体为钙碱性系列,具有低SiO2、高MgO和Mg#的特征,富集Rb、Sr、Th、Ba和Ce,亏损Nb、Ta、P、Zr、Yb和Y;寄主花岗岩为中钾—高钾钙碱性系列,准铝质到弱过铝质,富集Rb、Th、Zr和Hf,亏损Nb、Ta、Ti、Sr、P和Ba,具有中等程度的负Eu异常;石英闪长岩介于二者之间。锆石U-PbLA-ICP-MS定年显示,石英闪长岩形成年龄为127.10±0.96Ma,花岗岩形成年龄为123.8±2.5Ma。结合辉长-闪长质包体形成年龄为122.6Ma,三者年龄基本一致,从年代学角度为花岗岩、辉长-闪长质包体和石英闪长岩岩浆混合作用成因提供了证据。石英闪长岩锆石εHf(t)值变化于-7.61~-3.80。结合辉长-闪长质包体、花岗岩的εHf(t)值及地球化学特征,认为花岗岩来源于古老地壳的部分熔融,辉长-闪长质包体来源于地幔楔橄榄岩部分熔融,石英闪长岩为幔源岩浆与古老地壳部分熔融的岩浆完全混合的产物。腾梁地块早白垩世侵入岩很可能与班公湖-怒江洋壳岩石圈向南俯冲的动力学背景有关。  相似文献   

15.
位于新疆富蕴县境内的希勒库都克铜钼矿属于斑岩型矿床。含矿花岗斑岩和石英闪长岩为弱过铝质高钾钙碱性岩石,具有相对富集大离子亲石元素、亏损Nb、Ta、Ti元素的地球化学特征。获得含矿花岗斑岩SIMS锆石U-Pb年龄(329.6±4.1)Ma。综合分析,花岗斑岩和石英闪长岩可能为同一岩浆不同演化阶段的产物。据含矿岩石高的正εNd(t)值、低的87Sr/86Sr初始值推测,其原始岩浆起源于亏损地幔源区。  相似文献   

16.
桂林郑钼矿床位于江南隆起带与下扬子坳陷带之间的过渡带内,是皖南地区首次发现的大型钼矿床。本次工作对桂林郑钼矿床与成矿有关的花岗斑岩体进行了地质特征和岩相学观察、锆石LA-ICP-MS U-Pb定年和全岩地球化学分析。研究结果显示,桂林郑花岗斑岩的成岩年龄为127.6±1.5Ma,为早白垩世,对应于江南过渡带三阶段(149~137Ma、134~119Ma、116~110Ma)成岩成矿作用的第二阶段。桂林郑花岗斑岩富集K、Th、U等大离子亲石元素,具有低Sr高Yb特点,亏损Nb、Ta、Zr、Hf高场强元素,为高钾钙碱性-碱性的A1型花岗岩,岩浆源于中下地壳,上升过程中经历了显著的分离结晶作用。通过成岩年代与地球化学特征对比显示,桂林郑花岗斑岩体形成于陆内伸展环境,是该钼矿床的成矿岩体。  相似文献   

17.
The late Paleozoic Bailingshan intrusions and volcanic rocks are located in the Aqishan–Yamansu arc belt in the southern part of the eastern Tianshan and are associated with an important group of iron skarn deposits. The exposed intrusive rocks are mainly granodiorite, monzonitic granite, and granite. Zircon U–Pb dating of the Tugutublak Formation tuffaceous dacitic lava yields an age of 324 Ma, whereas dates of the Bailingshan granodiorite, monzonitic granite, and granite yields ages of 317 Ma, 313 Ma, and 307 Ma, respectively. The results indicate that the Bailingshan granitoids were emplaced soon after the eruption of the Tugutublak dacite. All these rocks studied show calc-alkaline to high-K calc-alkaline and metaluminous affinities, with A/CNK values ranging 0.83–1.10. They are enriched in Rb, K, and Pb, depleted in Nb, Ta, Ti, and P, and contain low Sr/Y (4.16–23.7) and Sr (109.0–347.0 ppm) values, displaying typical arc geochemical affinities. The tuffaceous dacitic lava has low Nb/Ta (10.3–14.1) values, a wide range of Mg# (6–64), positive zircon εHf(t) (3.2–7.5) values, and elevated whole-rock εNd(t) (2.03–4.41), but low ISr values (0.70427–0.70530), indicating that the source magma may have been derived from the juvenile lower crust with minor mantle input. The Bailingshan I-type intrusions also exhibit a mixed source signal, as constrained by Nb/Ta ratios, Mg#, and isotopes characteristics. Because the granodiorite, monzonitic granite, and granite intrusions have higher zircon εHf(t) (3.3–7.5, 11.8–13.5, and 10.2–14.4, respectively) and εNd(t) (3.90, 5.78, and 5.94, respectively) values than those of the tuffaceous dacitic lava, it is suggested that mantle-derived materials may have played a more prominent role with their petrogenetic evolution. Integrating our new geological, age, geochemical and isotopic data we propose that the Aqishan–Yamansu iron skarn belt may have formed in a back-arc position or within an intra-arc basin generated by the southward subduction of the Kanggur oceanic plate beneath the Yili–Central Tianshan block during the late Paleozoic, with felsic-intermediate magmatism occurring during the basin inversion.  相似文献   

18.
The Sharang porphyry Mo deposit is the first discovered Mo porphyry‐type deposit in the Gangdese Metallogenic Belt. The orebody is hosted by the Eocene multi‐stage composite intrusive complex which is emplaced in the Upper Permian Mengla Formation and cut by the Miocene dykes. Granite porphyry is recognized as the ore‐bearing porphyry in the complex, which consists of quartz diorite, quartz monzonite, granite, prophyritic granite and post‐mineral lamprophyre. Granodiorite porphyry and dacite porphyry intrude the granite porphyry. Geochemical data indicate that Sharang complex has a High‐K calc‐alkalinc to shoshonitic, metaluminous to slightly peraluminous composition. The Sharang complex rocks are enriched in large ion lithophile elements, depleted in high‐field strength elements, Nb, Sr, P and Ti. REE patterns show slight enrichments in light REE relative to heavy REE and weak negative Eu anomalies. All rocks in this complex have a wide range of initial 87Sr/86Sr ratios (0.705605~0.712496) and lower εNd(t) values (?0.61~?7.80). The geochemical data suggest highly oxidized‐evolved magma and old continental materials may have been the magma source for the Sharang intrusive complex that host porphyry Mo mineralization. Eocene pre‐ore and ore‐forming rocks at Sharang may have formed by partial melting of mantle wedge and by mixing with old continental crust at the lower crust level. In contrast the post‐ore rocks may have formed by partial melting of enriched lithospheric mantle.  相似文献   

19.
内蒙古宝音图钼矿是狼山北段大型斑岩石英脉型钼矿床,成矿岩体为斜长花岗岩、二长花岗岩、钾长花岗岩及酸性细晶斑岩株组成的复合岩体,LA-ICP-MS U-Pb上交点年龄2400 Ma,反映花岗岩源区岩石是新太古代到古元古代陆壳变质岩。各岩性锆石LA-ICP-MS U-Pb年龄测定显示成矿岩体形成于印支期(225.9±4.4)Ma~(237.5±5.9)Ma、(236.8±4.5)Ma~(244.3±4.2)Ma、(247.5±4.4)Ma和(252.1±3.4)Ma~(258.8±3.3)Ma 4个阶段,同位素年龄反映的每个岩浆侵入阶段持续时间长,各侵入阶段间隔时间短。岩浆侵入期不同阶段元素经历了一定分异,各阶段岩石化学组成均显示铝过饱和,富钾特征,以晚期细晶岩K2O/Na2O最高,K2O对Ca O呈反相关关系。与世界主要岩浆岩带微量元素Sr/Ba-Zr/Y的比较显示,其不同于洋壳熔融成因花岗岩,而与燕山带、秦岭带岩浆岩地球化学特征一致,与矿区元古界变质岩围岩地球化学特征比较接近,这些特征显示本区成矿花岗岩是陆壳岩石熔融成因S型花岗岩。  相似文献   

20.
黑山头金矿点是西准噶尔萨吾尔地区最新发现的金矿化点,通过对该金矿点赋矿岩石的LA-ICP-MS锆石U-Pb年龄以及地球化学特征的研究,探讨其构造背景及成因信息。黑山头金矿点赋矿岩石主要为二长岩,矿化区内发育钾长石化、硅化、青磐岩化、碳酸盐化等蚀变。二长岩LA-ICP-MS锆石U-Pb年龄为351.1±3.2 Ma,表明其形成于早石炭世早期。主量元素特征显示其属于钙碱性准铝质岩石,相对洋中脊玄武岩富集Sr、Ba、Th等大离子亲石元素,亏损Nb、Ta、Ti等高场强元素。二长岩为典型的I型花岗岩,区域地质及地球化学特征指示其形成于岛弧环境。矿区内二长岩具有高Sr、Na_2O和Al_2O_3,低Y和HREE等特征,与埃达克岩地球化学特征一致。样品具有较高的ε_(Nd)(t)和较低的(~(87_Sr/~(86)Sr)t,结合它们形成于晚古生代岛弧环境,暗示这些埃达克岩可能由俯冲洋壳熔融形成;而萨吾尔地区早石炭世晚期(340 Ma)中酸性侵入岩可能为玄武质下地壳熔融的产物。本次新发现的埃达克岩为该区进一步寻找斑岩矿床提供了有用线索,并且矿床围岩蚀变特征、矿化特征与斑岩矿床相似,暗示黑山头矿点具有良好的成矿条件和找矿潜力。  相似文献   

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