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1.
相山火山—侵入杂岩Nd—Sr—Pb同位素地球化学特征   总被引:8,自引:6,他引:8  
对相山火山-侵入杂岩Nd,Sr,Pb同位素组成及其底变质岩Pb同位素组成的研究表明,相山两旋回火山岩及火山期后的次火山岩具有较低的εNd(t)值(-7.46-9.40),较高的Isr值(0.70801-0.71201)和较古老的Nd模式年龄(1.54-1.70Ga),且相对富集放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb,^208Pb/^204Pb分别为17.686-18.323,15.523-15.730,38.143-38.936)。相山火山-侵入杂岩与该区出露的基底变质沉积岩在Nd,Pb同位素组成上既有明显的相似性,又有一定差别,因此,相山火山-侵入杂岩的源区主要为地壳岩石,但并不排除有部分幔源组分介入。ε  相似文献   

2.
下扬子区中生代(231Ma)玄武质火山岩全岩εNd(t)值-8.62~1.92,87Sr/86Sr 值0.7074~0.7179,206Pb/204Pb值为17.786~18.323。岩石中含有前寒武纪捕虏晶锆石。研究表明玄武质岩石可能是由亏损地幔与元古宙地壳岩石混染作用的结果。  相似文献   

3.
牙克石地区出露一套早白垩世玄武质火山岩,其SiO2含量为52.81%-53.39%,K2O含量为1.86%-2.87%,岩性为玄武质粗面安山岩。富集大离子亲石元素Rb和Ba,高场强元素Nb和Ta亏损明显,Zr和H阮明显异常,8Eu为0.77-0.82。从同住素的特点看,(^87Sr/^86Sr),变化于0.704762-0.704941之间,εNd(t)为2.00~2.54;在εNd(t)-(^87Sr/^86Sr)闺解上,样品投影点落入洋岛玄武岩(OIB)和美国盆岭省范围内。^206Pb/^204pb为18.3288-18.4225,^207b/^204Pb为15、4566-15.4893,^208Pb/^204Pb为37.9401-38.0523:在。^207Pb/^24Pb-^206Pb.^204pb和,^208b/^304pb-^306Pb/^204pb图解上.样品投影点都落在亏损洋中脊玄武岩地幔附近。综合考虑本区火山岩的地质、地球化学特点,认为其来源于被俯冲洋壳交代的岩石圈地幔。  相似文献   

4.
牙克石地区出露一套早白垩世玄武质火山岩,其SiO2含量为52.81%-53.39%,K2O含量为1.86%-2.87%,岩性为玄武质粗面安山岩。富集大离子亲石元素Rb和Ba,高场强元素Nb和Ta亏损明显,Zr和H阮明显异常,8Eu为0.77-0.82。从同住素的特点看,(^87Sr/^86Sr),变化于0.704762-0.704941之间,εNd(t)为2.00~2.54;在εNd(t)-(^87Sr/^86Sr)闺解上,样品投影点落入洋岛玄武岩(OIB)和美国盆岭省范围内。^206Pb/^204pb为18.3288-18.4225,^207b/^204Pb为15、4566-15.4893,^208Pb/^204Pb为37.9401-38.0523:在。^207Pb/^24Pb-^206Pb.^204pb和,^208b/^304pb-^306Pb/^204pb图解上.样品投影点都落在亏损洋中脊玄武岩地幔附近。综合考虑本区火山岩的地质、地球化学特点,认为其来源于被俯冲洋壳交代的岩石圈地幔。  相似文献   

5.
江西相山铀矿田科学深钻3号孔在深部-700 m发现大量铅锌多金属矿化脉,垂向上呈"上铀下多金属"的分布特征。本文选取深部多金属矿脉主成矿阶段(S3)自形闪锌矿样品6件和不同阶段的毒砂、黄铁矿、方铅矿、方解石等样品12件,以及围岩全岩样品17件,进行了Rb、Sr同位素组成研究。结果表明:(1)由闪锌矿Rb-Sr等时线法确定的相山铀矿田深部多金属矿化形成于121. 0±3. 5Ma,与围岩火山岩存在较大时差,可能与晚于围岩的深部次火山有关。根据穿插关系,多金属矿化略晚于碱性交代铀矿化,但明显早于酸性交代铀矿化;(2)多金属矿化脉体中金属矿物的Rb和Sr含量分别介于0. 041×10~(-6)~1. 38×10-6和2. 35×10-6~23. 11×10-6之间,Sr同位素初始比值(87Sr/86Sr)i变化较大,介于0. 706114~0. 718814之间,平均值为0. 713579,暗示相山铀矿田深部多金属矿化的成矿物质主要来源于地壳。初始流体Sr同位素值(0. 718665)明显高于成矿时赋矿围岩(流纹英安岩为0. 714581,碎斑流纹岩为0. 714417)的Sr同位素组成,表明多金属成矿流体和物质并非来自围岩火山岩;(3)由早到晚阶段的(87Sr/86Sr)i呈明显降低的演化趋势,表明成矿流体演化过程中受到大气降水的不断稀释作用。相山矿田的铀矿和深部多金属矿化同形成于华南中生代板内伸展构造背景。  相似文献   

6.
本文报道了天山石炭纪裂谷酸性火山岩的岩石地球化学数据,目的在于探讨酸性岩浆的岩石成因。天山石炭纪裂谷火山岩的不相容元素对不相容元素图解显示稳定的正相关趋势;酸性熔岩同位素比值。^37Sr/^86Sr(t)=0.69988~0.70532;εNd(t)=4.76~8.00;^206Pb/^204Pb(t)=17.435~18.017;^207Pb/^204Pb(t)=15.438~15.509;^208Pb/^238Pb(t)=37.075~37.723的区间含盖了基性熔岩同位素比值的范围。这些数据表明流纹岩和玄武岩之间有一种成因联系,但还不能确定酸性岩和玄武岩间究竟是分离结晶还是部分熔融关系。  相似文献   

7.
内蒙古二道河子铅锌矿成因研究   总被引:1,自引:0,他引:1  
基于矿床地质调查,并通过岩矿石地球化学和锆石U-Pb测年研究,探讨了二道河子铅锌矿床成因。该矿床赋存于中侏罗统塔木兰沟组中,受北西向断裂-裂隙构造控制,矿体多呈脉状,围岩以火山岩为主,夹有砾岩。据常量、微量、稀土元素和Pb、Sr、Nd同位素测试结果:火山熔岩中SiO2质量分数为48.01%~56.44%,岩屑晶屑凝灰岩中为69.09%~71.73%。前者稀土总量高于后者,两者稀土配分型式相似,均显弱负铕异常;而前者Pb、Zn、Cu等成矿元素的含量却远低于后者。火山岩富集Rb、U、Th等大离子亲石元素,Sr普遍亏损,相对亏损Nb、Ta以及Ti等高场强元素。火山岩ISr=0.704 925~0.706 632,εNd(t)=0.5~2.0,εSr(t)=8.5~32.8,tDM=619~730Ma。火山岩和矿石的Pb同位素组成十分接近,206Pb/204Pb=18.130~18.475,207Pb/204Pb=15.526~15.567,208 Pb/204 Pb=38.078~38.286,μ值为9.32~9.40。矿床主要围岩岩屑晶屑凝灰岩的SHRIMP锆石U-Pb年龄为(164.2±2.3)Ma,这表明火山岩为混有壳源物质的幔源岩浆形成。火山活动分为2期:早期表现为中(基)性火山喷发;晚期岩浆活动发生于中侏罗世晚期,形成酸性火山碎屑岩。成矿物质由与火山岩有关的岩浆系统提供,富集于晚期岩浆中。与成矿有关的侵入岩可能是晚期岩浆作用形成的次火山岩。矿床可能是岩浆分异的含矿热液沿火山岩中的断裂、裂隙充填交代形成,成矿时代为中侏罗世晚期—晚侏罗世。  相似文献   

8.
湘西沃溪W-Sb-Au矿床白钨矿Nd-Sr-Pb同位素对成矿流体的示踪   总被引:13,自引:3,他引:10  
本文对湘西沃溪W-Sb-Au矿床白钨矿进行了系统的Nd-Sr-Pb同位素分析。结果表明,白钨矿的Sm、Nd含量较低,147Sm/144Nd(0.64~1.27)值和Sm/Nd值(1.11~2.22)变化较大,其εNd(t=199Ma)值也很低,平均为-25.5(n=9);白钨矿的87Sr/86Sr值(0.7476~0.7504)高,平均为0.74961(n=11),代表白钨矿形成时的初始87Sr/86Sr(t=199Ma)值;逐级分离Pb同位素分析结果显示白钨矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb值变化范围小,平均依次分别为18.11、15.61、38.6,与含金石英脉中黄铁矿、蚀变围岩及区域板溪群板岩等的相应Pb同位素比值基本一致。白钨矿Nd-Sr-Pb同位素组成和闪锌矿等其他矿物的Sr同位素特征指示成矿流体来自板溪群下伏成熟陆壳、深部花岗质岩浆、浅部赋矿围岩等源区。成矿流体是这些来自不同源区的流体相作用而形成的混合流体。成矿作用则是这些不同源区的流体混合作用并演化的结果。且成矿流体演化早期是来自下伏成熟陆壳的流体与来自赋矿围岩的流体混合,导致早期W成矿;晚期是来自深部花岗质岩浆的流体与浅部赋矿围岩的流体混合作用,导致晚期Sb-Au成矿。W-Sb-Au成矿则是中生代陆内碰撞造山体制下不同期次的流体演化和叠加作用的结果。  相似文献   

9.
北羌塘盆地南缘的晚三叠世那底岗日组火山岩主要由英安岩、流纹岩、凝灰岩等组成。其主量元素具有高SiO2(66.58%-80.90%)、低TiO2(0.12%-0.42%)的特征,属钙碱性系列(σ平均为1.245);微量元素表现为大离子亲石元素K、Rb、Ba及不相容元素Th的高度富集和高场强元素Nb、Ta、Ti的亏损;稀土元素(La/Yb)N〉10,Eu亏损较明显(δEu=0.53-43.88),配分曲线右倾、较陡;Pb、Nd、Sr同位素组成为(^206Nd/^204Nb)T=18.531-18.838、(^207Pb/^204Pb)T=15.749-15.859、(^308Pb/。^204)T=37.138-37.917、(^87Sr/^86Sr)i=0.70852-0.71086、(^143Nd/^144Nd)。=0.511779-43.511896、εNa(t=208Ma)=-9.3--11.6。上述岩石地球化学特征表明,那底岗日和石水河的那底岗日组火山岩的岩浆源区为上地壳;同时利用同位素地球化学数据证明了北羌塘地块归属扬子陆块群的论断,即北羌塘盆地存在元古宙结晶基底的信息。  相似文献   

10.
北羌塘盆地南缘的晚三叠世那底岗日组火山岩主要由英安岩、流纹岩、凝灰岩等组成。其主量元素具有高SiO2(66.58%-80.90%)、低TiO2(0.12%-0.42%)的特征,属钙碱性系列(σ平均为1.245);微量元素表现为大离子亲石元素K、Rb、Ba及不相容元素Th的高度富集和高场强元素Nb、Ta、Ti的亏损;稀土元素(La/Yb)N〉10,Eu亏损较明显(δEu=0.53-43.88),配分曲线右倾、较陡;Pb、Nd、Sr同位素组成为(^206Nd/^204Nb)T=18.531-18.838、(^207Pb/^204Pb)T=15.749-15.859、(^308Pb/。^204)T=37.138-37.917、(^87Sr/^86Sr)i=0.70852-0.71086、(^143Nd/^144Nd)。=0.511779-43.511896、εNa(t=208Ma)=-9.3--11.6。上述岩石地球化学特征表明,那底岗日和石水河的那底岗日组火山岩的岩浆源区为上地壳;同时利用同位素地球化学数据证明了北羌塘地块归属扬子陆块群的论断,即北羌塘盆地存在元古宙结晶基底的信息。  相似文献   

11.
七宝山晚中生代火山岩位于郯庐断裂带山东段管帅盆地东缘,出露于青山群八亩地组中.本文通过对火山岩样品TYS48和TYS52中锆石LA-ICP MS U-Pb测年,获得其年龄分别为120.1±0.6 Ma和118.5±1.1 Ma,显示该区火山岩为早白垩世岩浆活动的产物.研究区火山岩SiO2含量为56.02%~66.45%...  相似文献   

12.
相山铀矿田铀源的地球化学证据   总被引:8,自引:0,他引:8  
孙占学 《矿物学报》2004,24(1):19-24
相山矿田矿石、沥青铀矿及伴生的黄铁矿的铅同位素具有明显的异常铅特征,成矿物质源区年龄为140Ma,与该区碎斑熔岩的年龄一致,说明铀源系由火山岩提供。矿石中U、Th、Mo、P的分布特征显示成矿铀源来自围岩。水-岩反应的模拟实验结果表明,铀成矿热液可以由本区火山岩与地下水在成矿期地质地热背景条件下的相互作用产生。  相似文献   

13.
The Duolong porphyry Cu–Au deposit (5.4 Mt at 0.72% Cu, 41 t at 0.23 g/t Au) was recently discovered in the southern Qiangtang terrane, central Tibet. Here, new whole‐rock elemental and Sr–Nd–Pb isotope and zircon Hf isotopic data of syn‐ and post‐ore volcanic rocks and barren and ore‐bearing granodiorite porphyries are presented for a reconstruction of magmas associated with Cu–Au mineralization. LA–ICP–MS zircon U–Pb dating yields mean ages of 117.0 ± 2.0 and 120.9 ± 1.7 Ma for ore‐bearing granodiorite porphyry and 105.2 ± 1.3 Ma for post‐ore basaltic andesite. All the samples show high‐K calc‐alkaline compositions, with enrichment of light rare earth elements (LREE) and large ion lithophile elements (LILE: Cs and Rb) and depletion of high field strength elements (HFSE: Nb and Ti), consistent with the geochemical characteristics of arc‐type magmas. Syn‐ and post‐ore volcanic rocks show initial Sr ratios of 0.7045–0.7055, εNd(t) values of −0.8 to 3.6, (206Pb/204Pb)t ratios of 18.408–18.642, (207Pb/204Pb)t of 15.584–15.672 and positive zircon εHf(t) values of 1.3–10.5, likely suggesting they dominantly were derived from metasomatized mantle wedge and contaminated by southern Qiangtang crust. Compared to mafic volcanic rocks, barren and ore‐bearing granodiorite porphyries have relatively high initial Sr isotopic ratios (0.7054–0.7072), low εNd(t) values (−1.7 to −4.0), similar Pb and enriched zircon Hf isotopic compositions [εHf(t) of 1.5–9.7], possibly suggesting more contribution from southern Qiangtang crust. Duolong volcanic rocks and granodiorite porphyries likely formed in a continental arc setting during northward subduction of the Bangong–Nujiang ocean and evolved at the base of the lower crust by MASH (melting, assimilation, storage and homogenization) processes. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

14.
藏北鱼鳞山超钾质火山岩为一中等规模的熔岩被, 可分为三期。前两期主要为霞石黝方白榴石响岩、霞石白榴斑岩等, 后期主要为方钠石霓石粗面岩、霓霞粗面岩等。时代为18~30 Ma。本区超钾质岩浆 Si O2 强烈不饱和、强碱性、高度富集 L R E E及 L I L E、放射成因 Sr、 Pb 及非放射成因 Nd 同位素 (86 Sr/87 Sr= 0708766~0709162, 206 Pb/204 Pb= 18882888~ 19104751, 207 Pb/204 Pb= 15642037 ~ 15828458, 208 Pb/204 Pb= 39138921 ~ 39686835 及143 Nd/144 Nd= 0512116 ~0512342),其上述特征指示岩浆源区为受到地壳物质强烈交代的富集 E M I I型地幔。藏北拉嘎拉钠质碱性橄榄玄武岩为高原面上的剥蚀残丘, 时代为60 Ma。其岩石学、 R E E、微量元素及 Sr Nd Pb 同位素指示了岩浆源区为受到洋壳俯冲物质交代的轻度富集地幔。本研究结果指示, 羌塘高原南部富集地幔的形成可能是受到印度板块俯冲的影响。  相似文献   

15.
The fluorite-bearing hydrothermal mineralization in Sardinia mainly occurs within Paleozoic volcanic and metasedimentary rocks. Only 3 occurrences are located in volcanic and siliciclastic Cenozoic rocks. Most Sardinian fluorites exhibit relatively high rare earth and Y (REY) contents, strong positive Y anomalies, slightly negative Ce and generally positive Eu anomalies. These features indicate that the REY were mobilized mainly from non-carbonate rocks. Neither Sr nor Nd isotopes can be used to date radiometrically the Sardinian fluorites. However, the measured Sr-isotope ratios of the fluorites hosted by Paleozoic rocks fit mixing lines in the 1000/Sr versus 87Sr/86Sr plot once recalculated at 280 Ma, suggesting that the age inferred for the correction probably represents that of the formation of the fluorite mineralization. Mixing likely occurred between diluted surficial waters and brines circulating mainly through the Lower Paleozoic metasedimentary basement. The Cenozoic fluorites exhibit chemical and isotopic features similar to those of the Paleozoic fluorites, except the Nuraghe Onigu fluorite displaying a possible contribution of Sr from Cenozoic magmatic rocks. The initial εNd values of the Paleozoic fluorites fit the age proposed for the formation of the deposits. Moreover, the values suggest that radiogenic Nd was provided to the fluids from the Ordovician siliciclastic basement, except for 3 deposits where the potential source rocks of Nd were mainly Ordovician acidic magmatic rocks. The initial εNd values of the Cenozoic fluorites suggest a provenance of Nd essentially from the leaching of Variscan granitoids.  相似文献   

16.
在江西相山铀矿田河元背地区实施的CUSD3钻孔,发现其深部存在晚期侵入到打鼓顶组流纹英安岩、凝灰岩、泥质粉砂岩中的流纹斑岩。利用激光等离子质谱分析技术(LA ICP MS)测得流纹斑岩的锆石206Pb/238U年龄为(1318±07)Ma (MSWD=041),晚于前人所测的鹅湖岭组碎斑流纹岩年龄。该流纹斑岩具有高硅、富钾、铝过饱和等特点,还表现出高场强元素Rb、Th、U、La、Ce、Nd和LREE富集,Ba、Nb、Sr、P、Ti等元素亏损以及δEu明显负异常的特点。锆石的εHf(t)值介于 -677~-1038之间,对应的二阶段Hf模式年龄TDMC介于1 619~1 846 Ma,岩石的ISr值为0710 92~0712 01,εNd(t)值为-818~-919。其稀土元素、微量元素分布模式及同位素特征与前人报道的碎斑流纹岩特征类似,暗示流纹斑岩与碎斑流纹岩具有相同的物质来源。以上特征说明河元背地区流纹斑岩形成于早白垩世造山运动碰撞后伸展阶段,为深部硅铝质地壳部分熔融的产物。相山西部流纹斑岩的发现,可以推测该区或许存在一个次级火山机构。  相似文献   

17.
《Resource Geology》2018,68(3):275-286
The volcanic‐hosted Xiangshan uranium orefield is the largest uranium deposit in South China. Recent exploration has discovered extensive Pb–Zn mineralization beneath the uranium orebodies. Detailed geological investigation reveals that the major metallic minerals include pyrite, sphalerite, galena, and chalcopyrite, whilst the major non‐metallic minerals include quartz, sericite, and calcite. New δ18Ofluid and δDfluid data indicate that the ore‐forming fluids were mainly derived from magmatic, and the sulfide δ34S values (2.2–6.9‰) suggest a dominantly magmatic sulfur source. The Pb isotope compositions are homogeneous (206Pb/204Pb = 18.120–18.233, 207Pb/204Pb = 15.575–15.698, and 208Pb/204Pb = 37.047–38.446). The 87Sr/86Sr ratios of sulfide minerals range from 0.7197 to 0.7204, which is much higher than volcanic rocks and fall into the range of metamorphic basement. Lead and strontium isotopic compositions indicate that the metallogenic materials probably were derived from metamorphic basement. Pyrite Rb–Sr dating of the ores yielded 131.3 ± 4.0 Ma, indicating that the Pb–Zn mineralization occurred in the Early Cretaceous.  相似文献   

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