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1.
东准噶尔和尔赛斑岩铜矿成岩成矿时代与形成的构造背景   总被引:4,自引:1,他引:3  
杜世俊  屈迅  邓刚  张永  程松林  卢鸿飞  吴琪  徐兴旺 《岩石学报》2010,26(10):2981-2996
东准噶尔和尔赛铜矿是近年来新发现的斑岩型铜矿,位于野马泉-琼河坝古生代岛弧带东段。成矿岩体为侵位于花岗闪长岩中的花岗闪长斑岩,花岗闪岩中包含有钾长花岗岩体。锆石CAMECA U-Pb测年结果显示,钾长花岗岩年龄为429Ma,并含有405Ma的锆石;花岗闪长岩年龄为411Ma,并含432Ma的碎屑锆石;花岗闪长斑岩主体年龄为410.5Ma。研究区经历了3期岩浆与热液活动,且至少在早志留世就已开始,琼河坝岛弧是开始于早古生代的岛弧。辉钼矿Re-Os等时线年龄为409Ma,与花岗闪长斑岩年龄一致。和尔赛斑岩铜矿的主成岩成矿时代为早泥盆世,年龄约为410Ma。和尔赛铜矿的花岗闪长岩和花岗闪长斑岩具有埃达克岩与岛弧岩浆岩的地球化学特征,包括63.79%~68.86%SiO2、14.91%~17.48%Al2O3、0.68%~2.35%MgO、高Sr(383×10-6~971×10-6)与Sr/Y比值(48.3~111)、低Y(7.92×10-6~9.69×10-6)与Yb(0.76×10-6~0.98×10-6),Ba、U、K、Sr等大离子元素富集,Th、Nb、Ta、Ti等高场强元素亏损,较低的(87Sr/86Sr)i值(0.703852~0.704565)、正的εNd(t)值(6.1~7.4)、与亏损地幔接近的较低的初始铅同位素比值((206Pb/204Pb)i=17.58~17.91,(207Pb/204Pb)i=15.40~15.48,(208Pb/204Pb)i=37.25~37.47)。这些地球化学特征说明其形成于岛弧环境,可能为古俯冲洋壳部分熔融的产物。琼河坝地区以花岗闪长岩和花岗闪长斑岩为代表的岩浆岩带是形成和寻找斑岩铜矿的有利地区。  相似文献   

2.
黑龙江小多宝山Fe-Cu矿床是多宝山-三矿沟多金属成矿带内一典型的矽卡岩型矿床。根据矿物共生组合及矿脉穿切关系,将其成矿作用划分为两期:矽卡岩期和石英-硫化物期;进一步划分为五个阶段:石榴子石-辉石干矽卡岩阶段;绿帘石-阳起石等含水硅酸盐湿矽卡岩阶段;磁铁矿-镜铁矿-石英氧化物阶段;黄铁矿-黄铜矿-石英早期硫化物阶段以及方铅矿-闪锌矿-方解石晚期硫化物阶段。本文报道了该矿床成矿岩体花岗闪长岩的锆石U-Pb年龄、全岩地球化学及锆石Hf同位素数据。花岗闪长岩锆石加权年龄为176±1Ma(MSWD=0.10,n=23),反映小多宝山矿床成矿时代为早侏罗世。其岩石地球化学特征表现为:富钠(Na2O/K2O=1.45%~1.63%),准铝质(A/CNK=0.92~0.97),富集轻稀土元素(LREE)、大离子亲石元素(如Rb、Ba、Sr、K等),相对亏损高场强元素(如Ta、Nb、Ti等),(La/Yb)N=11.16~12.87,表现出弱的负Eu异常(δEu=0.85~0.92),显示出岛弧岩浆岩的地球化学亲缘性。综合岩石地球化学及同位素测试结果,小多宝山花岗闪长岩为准铝质高钾-钙碱性I型花岗岩,起源于幔源岩浆结晶分异作用。锆石Hf同位素εHf(t)为+7.6^+11.4,二阶段模式年龄(tDM2)为492~732Ma,指示其岩浆源区为古生代新生地壳的熔融。结合区域构造演化,推断小多宝山花岗闪长岩形成于古太平洋板块俯冲的构造环境。  相似文献   

3.
本文对新县花岗岩岩基进行了系统的锆石U-Pb定年,全岩元素地球化学、Sr-Nd-Pb-Hf同位素测试,研究探讨其成岩年龄、岩石成因、物质来源以及地球化学动力学背景。锆石U-Pb年龄为125.5±1.5Ma,属于早白垩世产物。全岩元素地球化学成分表现为高硅、富碱,贫镁、铁和钙,富集轻稀土元素、大离子亲石元素(Rb、K、Th、U)和Pb,亏损重稀土元素、高场强元素(Nb、Ta、Ti)和Sr、Ba。全岩同位素具有中等略偏高的Sr 初始比值(87Sr/86Sr)i=0.706949~0.707086;低的放射性Pb同位素组成[ (206Pb/204Pb)i=16.611~17.152,(207Pb/204Pb)i=15.304~15.432,(208Pb/204Pb)i=37.316~37.702]; 低的Nd初始比值(εNd(t)=-13.65~-13.51)和老的Nd模式年龄(TDM2=2.12~2.13Ga)。锆石原位Hf同位素具有较低的初始比值(εHf(t)=-22.92~-19.40)和老的Hf二阶段模式年龄(TDM2=2.39~2.61 Ga)。综合以上元素地球化学特征、锆石U-Pb定年结果及Sr-Nd-Pb-Hf同位素组成,新县花岗岩岩基应属于分异的高钾钙碱性I型花岗岩,是化学成分类似于扬子板块北缘新元古代TTG型岩浆岩的扬子下地壳在非加厚下地壳(深度小于35km)环境下部分熔融的产物。  相似文献   

4.
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   

5.
湖南衡阳关帝庙花岗岩岩基形成时代及物质来源探讨   总被引:4,自引:0,他引:4  
在详细的野外地质调查基础上,本文通过对湖南省衡阳市关帝庙花岗岩岩基的岩石地球化学、LAICP-MS锆石U-Pb定年和全岩Sr-Nd-Pb同位素地球化学等综合研究,参照前人研究成果,探讨关帝庙花岗岩岩基的岩石地球化学性质、形成时代、物质来源以及形成机制。LA-ICP-MS锆石U-Pb加权平均年龄为223.4±1.9Ma。岩石以富硅、富碱、高钾钙碱性、准铝质,轻稀土元素和大离子亲石元素(Rb、Th、U、K)富集,重稀土元素、高场强元素(Nb、Ta、Ti)和Ba、Sr等元素亏损为特征。全岩Sr-Nd-Pb同位素显示较高的Sr初始比值((87Sr/86 Sr)i=0.712005~0.713631),低的Nd初始比值(εNd(t)=-9.95~-9.59),老的二阶段模式年龄(TDM2=1.78~1.81Ga)以及相对均一的Pb同位素组成,(206Pb/204 Pb)i、(207 Pb/204 Pb)i和(208 Pb/204 Pb)i值分别介于18.161~18.316、15.686~15.743、38.622~38.772之间。印支晚期,华南地区处于造山阶段的后碰撞构造环境挤压峰期之后的伸展环境,应力减弱或挤压松弛体制之下,幔源基性岩浆底侵,诱发古元古界地壳部分熔融形成花岗质岩浆,沿着断裂构造运移侵位,形成了关帝庙花岗岩岩基。  相似文献   

6.
于玉帅  周云  鲍波  高原  杨竹森 《地球科学》2019,44(6):1888-1904
为深入了解中北部拉萨地块构造背景,利用LA-ICP-MS技术对洛布勒铁矿床成矿花岗闪长岩锆石进行了U-Th-Pb同位素测定,分析了隆格尔、洛布勒铁矿床侵入岩岩石地球化学和Sr-Nd-Pb同位素组成.获得洛布勒花岗闪长岩锆石U-Pb年龄为111.3±1.6 Ma(MSWD=0.61,n=9).隆格尔和洛布勒铁矿床侵入岩高硅(66.63%~69.02%和64.33%~64.82%)、富碱(全碱为5.91%~6.40%和5.81%~6.05%)、低A/CNK(0.91~0.97和0.94~0.95)、SiO2与P2O5含量负相关;稀土元素总量较低(∑REE为123.11×10^-6~148.83×10^-6和96.17×10^-6~101.92×10^-6),球粒陨石标准化配分模式图右倾,弱Eu负异常(0.70~0.82和0.79~0.81),富集大离子亲石元素Rb、Th、U、K、Pb等,亏损Ba和高场强元素Nb、Ta、Sr、Ti等.隆格尔花岗岩全岩和斜长石(206Pb/204Pb)t为18.474和18.626,(207Pb/204Pb)t为15.657和15.722,(208Pb/204Pb)t为38.592和39.145,(87Sr/86Sr)i为0.704 757 6和0.707 047 3,(143Nd/144Nd)i为0.512 281和0.512 339,εNd(t)为-4.13和-2.99,tDM2为1.15 Ga和1.24 Ga;洛布勒花岗闪长岩(206Pb/204Pb)t比值为18.281,(207Pb/204Pb)t比值为15.616,(208Pb/204Pb)t比值为38.369,(87Sr/86Sr)i为0.706 551 4;(143Nd/144Nd)i为0.512 309,εNd(t)为-3.62,tDM2为1.20 Ga.结果表明,措勤-隆格尔铁矿床成矿侵入岩为中钾-高钾钙碱性岩I型花岗岩,为早白垩世晚期岛弧岩浆活动产物,岩浆源于地壳物质部分熔融,岩浆演化过程经历了壳幔岩浆混合和围岩混染.结合前人研究成果,通过对比白垩纪中北部拉萨地块和南部羌塘地块成矿事件的差异,提出中北部拉萨地块113±3 Ma岩浆活动和Fe(-Cu)成矿事件与向南俯冲的班公湖-怒江洋壳发生断离有关.  相似文献   

7.
蒙西斑岩铜钼矿含矿斑岩体主要为斜长花岗斑岩。通过对含矿斑岩体地球化学和Sr-Nd-Pb同位素特征的研究,确立斑岩体为过铝质钙碱性系列岩石,富集Rb,Ba,U,K,Pb,Sr等大离子亲石元素,亏损Th,Ta,Nb,Nd,Ti等高场强元素;具低的(87Sr/86Sr)ⅰ值(0.704 65~0.705 37)和相对较高的εNd(t)值(-2.2~6.6),且有较低的初始铅同位素比值(206Pb/204Pb)i=17.13~17.33,(207Pb/204Pb)i=15.47~15.54,(208Pb/204Pb)i=37.11~37.33。上述特征表明其形成于岛弧环境,岩浆物质来源以幔源为主,但也有少量壳源组分参与,岩浆的形成可能与洋壳的俯冲作用有关。东准噶尔琼河坝地区是形成和寻找斑岩型铜矿的有利地区。  相似文献   

8.
李红霞  郭锋  李超文  赵亮 《岩石学报》2010,26(5):1530-1540
珲春地区前山镁铁质侵入岩主要由橄榄辉长岩、苏长岩和辉长闪长岩组成,形成年龄273±2Ma,为早二叠世侵入岩。该岩体显示出岛弧拉斑玄武岩的元素地球化学特征,弱富集LREE且正Eu(Eu/Eu*=1.05~1.44)异常的REE配分模式,在不相容元素中富集大离子亲石元素(LILE)如Ba和Sr,亏损高场强元素(HFSE)(La/Nb=2.8~4.8;Zr/Sm=8.0~22.5),与起源于流体交代地幔楔部分熔融的岛弧低钾拉斑玄武岩类似。在同位素特征上低放射成因Sr,高放射成因Nd和Hf(87Sr/86Sr(i)=0.70295~0.70375;εNd(t)=+4.5~+6.4;εHf(t)=+9.6~+14.6),反映其来源于同位素组成亏损的交代地幔。结合区域地质背景,我们认为前山镁铁质岩形成于晚古生代期间古亚洲洋向华北板块的俯冲作用背景,其亏损Nb-Ta、Zr-Hf及Hf-Nd同位素解耦特点说明该岩体最有可能来源于俯冲流体交代的地幔楔。  相似文献   

9.
延边小西南岔金铜矿区早白垩世英云闪长岩的岩石成因   总被引:3,自引:0,他引:3  
李红霞  郭锋  李超文  赵亮 《地球化学》2012,41(6):497-514
锆石U-Pb测年结果表明小西南岔富金铜矿床矿区内的英云闪长岩形成于(112±1)Ma。该英云闪长岩富Na2O和Al2O3,高Sr、LREE(轻稀土元素),低Y、Yb和HREE(重稀土元素)(如Sr=369~774μg/g,(La/Yb)CN=7.5~17.5),具有类似于埃达克质岩石的元素地球化学特征。在同位素组成上具中等放射成因Sr((87Sr/86Sr)i=0.7044~0.7048)、Nd(εNd(t)=+0.5~+1.7)和Hf(εHf(t)=+5.4~+8.6,ΔεHf=2.3~4.2)同位素,高放射成因Pb((206Pb/204Pb)i=18.40~18.60;(207Pb/204Pb)i=15.56~18.60;(208Pb/204Pb)i=38.22~38.36)同位素的特点。结合区域构造背景以及古太平洋板块俯冲历史,笔者倾向认为该岩体可能是玄武质岩浆底侵下地壳部分熔融形成的,而非板片熔融形成的埃达克质岩浆,岩浆源区为石榴子石角闪岩相向角闪岩相过渡的岩石。该岩体侵位的晚古生代((257±3)Ma)镁铁质围岩的角闪石Ar-Ar坪年龄为(110.1±1.5)Ma,与英云闪长岩的侵位时间一致,暗示晚古生代镁铁质侵入岩经历的热液事件与英云闪长岩的侵位作用存在成因联系,区域金铜矿化可能为早白垩世岩浆热液作用下成矿物质富集而形成。  相似文献   

10.
位于准噶尔西北缘萨吾尔地区的罕哲尕能Cu-Au矿床是新近发现的斑岩型矿床,具有很好的找矿前景。矿区岩浆活动早期以闪长岩为主,晚期以花岗闪长岩和二长花岗斑岩为主。钻孔中所见似斑状石英二长岩LA-ICP-MS锆石U-Pb年龄为343.6±5.7Ma~345.3±8.3Ma;二长花岗斑岩锆石U-Pb年龄为334.9±7.3Ma~336.4±7.5Ma,表明西准萨吾尔地区早石炭世存在一期重要的岩浆-热液Cu-Au成矿事件。花岗闪长岩、石英二长岩、闪长玢岩、闪长岩和二长花岗斑岩的主量元素具有一致的演化趋势,表明它们可能是同一岩浆演化的产物。富集大离子亲石元素(LILE:如Rb、Ba、K、Sr)和活泼的不相容元素(如:U、Th),相对亏损高场强元素(HFSE:如Nb、Ta、Ti),显示具有岛弧岩浆的地球化学特征。87Sr/86Sri比值在0.7033~0.7037之间,143Nd/144Nd比值在0.512538~0.512579之间,εNd(t)在+6.7~+7.5之间,显示源区具有类似亏损地幔的特征;而且具有年轻的Nd两阶段模式年龄为488~553Ma,这些特征表明罕哲尕能矿区岩石的岩浆源区可能来源于亏损地幔分异的新生玄武质下地壳。罕哲尕能Cu-Au矿床的形成时代明显早于该区域A型花岗岩的形成时代(290~300Ma左右),结合岩石微量元素特征反映其形成于岛弧构造背景,萨吾尔山具有寻找斑岩Cu-Au矿的成矿条件。  相似文献   

11.
西天山喇嘛苏岩体年代学、地球化学及成矿意义   总被引:1,自引:0,他引:1       下载免费PDF全文
文中主要对西天山喇嘛苏岩体进行SHRIMP锆石U-Pb年龄、主微量及Sr-Nd-Pb同位素测定,阐明岩体成因及形成构造背景。喇嘛苏岩体主要由石英二长闪长岩、花岗闪长斑岩和英云闪长斑岩组成。其中,石英二长闪长岩形成于(394.8±4.9)Ma,花岗闪长斑岩和英云闪长斑岩形成于(380.9±3.9)Ma,略晚于石英二长闪长岩。岩体具有埃达克质岩的特征,且显示从钙碱性向高钾钙碱性演化的趋势,稀土元素配分曲线显示相对富集轻稀土((La/Yb)N:3.55~15.52)及中等的负或正Eu异常(δEu:0.53~1.12)。岩体具有较高的Sr含量((322~808)×10-6)和较低的Y含量((12.90~18.86)×10-6)。微量元素特征显示岩体富集LILE亏损HFSE,并具有Nb、Ta和Ti负异常。岩体初始Sr-Nd同位素组成为εNd(t)=-4.29~+0.75和ISr=0.706 052~0.708 263,Nd模式年龄为1.03~1.46Ga。花岗闪长斑岩和英云闪长斑岩的铅同位素特征为206Pb/204Pb=18.500~19.044,207Pb/204Pb=15.575~15.626,208Pb/204Pb=38.443~38.864;石英二长闪长岩为206Pb/204Pb=18.694~18.711,207Pb/204Pb=15.622~15.630,208Pb/204Pb=38.648~38.660。所有地球化学特征显示喇嘛苏岩体是俯冲洋壳部分熔融形成的熔体,上升过程中与受俯冲带沉积物交代的地幔楔相互作用,且有少量古老地壳的混染而形成。岩体形成于晚泥盆世准噶尔残余洋盆向伊犁—中天山地块俯冲的大陆弧背景,与该区Cu(Au)矿化有较密切的联系。  相似文献   

12.
The Naruo porphyry Cu deposit is the third largest deposit discovered in the Duolong metallogenic district. Previous research has focused mainly on the geochemistry of the ore-bearing granodiorite porphyry; the metallogenesis remains poorly understood. In the present work, on the basis of outcrops and drilling core geological mapping, phases of early mineralization diorite, two inter-mineralization granodiorite porphyries, and late-mineralization granodiorite porphyry have been distinguished. Furthermore, the alteration zones were outlined, and the vein sequence was identified. The diorite and three porphyry phases were subjected to Laser Ablation Inductively Coupled Plasma Mass Spectrometry (La–ICP–MS) zircon U–Pb dating and in situ Hf isotope analyses as well as bulk major element, trace element, and Sr–Nd isotopic analyses. Molybdenite Re–Os dating was also conducted.The zircon U–Pb dating results show that the diorite and porphyry intrusions were emplaced at about 120 Ma, and the molybdenite Re–Os isochron age is 118.8 ± 1.9 Ma; this indicates that the Naruo porphyry Cu deposit was formed during a continuous magmatic–hydrothermal process. All of the diorite and granodiorite porphyry samples showed arc magmatic characteristics. Moreover, the moderate (87Sr/86Sr)i ratios and low εNd(t) and εHf(t) values of the diorite and porphyry intrusions suggest the source region of the juvenile lower crust. The lower (87Sr/86Sr)i and (143Nd/144Nd)i ratios and higher εNd(t) values and incompatible element concentrations than those in the granodiorite porphyry samples indicate a two-stage magmatic generation process for the intrusions. The early mineralization diorite has a high Cu concentration, implying that the source is enriched in Cu. However, the slightly lower Cu content of the late-mineralization granodiorite porphyry samples might imply Cu release from magmas and deposition within the metallogenic stage. The multiple stages of intrusions and subsequent volcanism within the Duolong metallogenic district, together with high Sr/Y features, indicate persistent magmatism during the metallogenic epoch, which is necessary for maintaining the activity of magmatic–hydrothermal and mineralization processes. Thus, the high Cu content in the source region, mantle-derived melt upwelling, and multiple stages of persistent magmatism were favorable for the formation of the Naruo porphyry Cu deposit.The high Fe2O3/FeO ratios of the diorite and granodiorite porphyry intrusions show very high oxidation features, which is coincident with estimated magmatic oxidation state calculated by the zircon trace element compositions. The high oxidation facilitates sulfur and chalcophile metals to be scavenged into the magmatic–hydrothermal systems, which is crucial for the metallogenesis of the Naruo porphyry Cu deposit.  相似文献   

13.
Adakitic rocks and related Cu–Au mineralization are widespread along eastern Jiangnan Orogen in South China. Previous studies have mainly concentrated on those in the Dexing area in northeastern Jiangxi Province, but information is lacking on the genesis and setting of those in northwestern Zhejiang Province. The Jiande copper deposit is located in the suture zone between the Yangtze and Cathaysia blocks of South China. This paper presents systematic LA–ICP–MS zircon U–Pb dating and element and Sr–Nd–Hf isotopic data of the Jiande granodiorite porphyry. Zircon dating showed that the Jiande granodiorite porphyry was produced during the Middle Jurassic (ca. 161 Ma). The Jiande granodiorite porphyry is characterized by adakitic geochemical affinities with high Sr/Y and LaN/YbN ratios but low Y and Yb contents. The absence of a negative Eu anomaly, extreme depletion in Y and Yb, relatively low MgO contents, and relatively high 207Pb/204Pb ratios, indicated that the Jiande granodiorite porphyry was likely derived from partial melting of the thickened lower continental crust. In addition, the Jiande granodiorite porphyry shows arc magma geochemical features (e.g., Nb, Ta and Ti depletion), with bulk Earth‐like εNd (t) values (?2.89 to ?1.92), εHf (t) values (?0.6 to +2.8), and initial 87Sr/86Sr (0.7078 to 0.7105). However, a non‐arc setting in the Middle Jurassic is indicated by the absence of arc rocks and the presence of rifting‐related igneous rock associations in the interior of South China. Combined with the regional Neoproterozoic Jiangnan Orogeny, it indicates that these arc magma geochemical features are possibly inherited from the Neoproterozoic juvenile continental crust formed by the ancient oceanic crust subduction along the Jiangnan Orogen. The geodynamic environment that is responsible for the development of the Middle Jurassic Jiande granodiorite porphyry is likely a localized intra‐continental extensional environment along the NE‐trending Jiangshan‐Shaoxing Deep Fault as a tectonic response to far‐field stress at the margins of the rigid South China Plate during the early stage of the paleo‐Pacific plate subduction. In terms of Cu mineralization, we suggest that the metal Cu was released from the subducted oceanic slab and reserved in the juvenile crust during Neoproterozoic subduction along the eastern Jiangnan Orogen region. Partial melting of the Cu rich Neoproterozoic juvenile crust during the Middle Jurassic time in the Jiande area caused the formation of adakitic rocks and the Cu deposit.  相似文献   

14.
Small intrusions of lamprophyres and lamproites (Chuya complex) and K-monzonitoids (Tarkhata and Terandzhik complexes) are widespread in southeastern Gorny Altai. Geochronological (U-Pb and Ar-Ar) isotope studies show their formation in the Early-Middle Triassic (~ 234-250 Ma). Lamproites have been revealed within two magmatic areas and correspond in geochemical parameters to the classical Mediterranean and Tibet orogenic lamproites. According to isotope data ((87Sr/86Sr)T = 0.70850-0.70891, (143Nd/144Nd)T = 0.512157-0.512196, 206Pb/204Pb = 17.95-18.05) and Th/La and Sm/La values, the Chuya lamproites and lamprophyres melted out from the enriched lithospheric mantle with the participation of DM, EM1, EM2, and SALATHO. The monzonitoid series of the Tarkhata and Terandzhik complexes are similar in petrographic and geochemical compositions but differ significantly in Sr-Nd isotope composition: The Tarkhata monzonitoids are close to the Chuya lamproites, whereas the Terandzhik ones show a higher portion of DM ((87Sr/86Sr)T = 0.70434-0.70497, (143Nd/144Nd)T = 0.512463-0.512487) in their source, which suggests its shallower depth of occurrence and the higher degree of its partial melting as compared with the derivates of the Chuya and Tarkhata complexes. The studied rock associations tentatively formed in the postcollisional setting under the impact of the Siberian superplume.  相似文献   

15.
The Indosinian post-collisional Wulong pluton intruded into the Mesoproterozoic Fuping Group, South Qinling, central China. In the southern part of the pluton, some mafic enclaves have sharp or gradational contact relationships with the host biotite granodiorite. Geochemistry, zircon LA-ICP MS (laser ablation inductively-coupled plasma mass spectrometry) U-Pb chronology and Sr- Nd-Pb isotope geochemistry of the pluton are reported in this paper. The biotite granodiorite shows close compositional similarities to high-silica adakite. Its chondrite-normalized REE patterns are characterized by strong HREE depletion (Yb = 0.33--0.96 10-6 and Y = 4.77-11.19 ×10^-6), enrichment of Ba (775-1386 x 10-6) and Sr (643-1115 × 10^-6) and high Sr/Y (57.83-159.99) and Y/Yb (10.99-14.32) ratios, as well as insignificant Eu anomalies (6Eu = 0.70-0.83), suggesting a feldspar-poor, garnet±amphibole-rich residual mineral assemblage. The mafic enclaves have higher MgO (4.15- 8.13%), Cr (14.79-371.31 × 10-6), Ni (20.00-224.24× 10^-6) and Nb/Ta (15.42-21.91) than the host granodiorite, implying that they are mantle-derived and might represent underplated mafic magma. Zircon LA-ICP MS dating of the granodiorite yields a ^206pb/^238U weighted mean age of 208±2 Ma (MSWD=0.50, 1σ), which is the age of emplacement of the host biotite granodiorite. This age indicates that the Wulong pluton formed during the late-orogenic or post-collisional stage (〈242±21 Ma) of the South Qinling belt. The host biotite granodiorite displays ^87Sr/^86Sr = 0.7059-0.7062, Isr = 0.7044-- 0.7050,^143Nd/^144Nd = 0.51236-0.51238, εNd(t)= -2.26 to -2.66 to ^206Pb/^204pb = 18.099-18.209, ^207pb/^204pb = 15.873-15.979 and ^208pb/^204pb = 38.973-39.430. Those ratios are similar to those of the Mesoproterozoic Yaolinghe Group in the South Qinling. Furthermore, its Nd isotopic model age (-1.02 Ga) is consistent with the age (-1.1 Ga) of the Yaolinghe Group. Based on the integrated geological and ge  相似文献   

16.
河南大湖金钼矿床成矿物质来源的锶钕铅同位素约束   总被引:10,自引:6,他引:4  
倪智勇  李诺  张辉  薛良伟 《岩石学报》2009,25(11):2823-2832
河南灵宝大湖金钼矿床位于小秦岭金矿田北缘,属典型的断控脉状矿床.前人较好研究了矿床流体包裹体和成矿年代,但对成矿物质来源研究薄弱.本文对16件矿石硫化物及5件赋矿围岩样品进行了Sr-Nd-Pb同位素分析,金属硫化物I_(Sr)=0.70470~0.71312,平均0.70854;(~(143)Nd/~(144)Nd)_i=0.51143-0.51215,平均0.51162;(~(206)Pb/~(204)Pb)_i=17.033~17.285,(~(207)Pb/~(204)Pb)_i=15.358~15.438,(~(208)Pb/~(204)Pb)_i=37.307-37.582,平均值分别是17.162,15.405,37.440.5件太华超群样品I_(Sr)=0.70947~0.73201,平均0.72294;(~(143)Nd/~(144)Nd)_i=0.51076~0.51133,平均0.51107;(~(206)Pb/~(204)Pb)_i=17.127~18.392,(~(207P)b/~(204)Pb)_i=15.416~15.604,(~(208)Pb/~(204)Pb)_i=37.498~37.814,平均值分别是17.547,15.470,37.616.Sr-Nd-Pb同位素特征表明成矿物质来源具壳幔混合特征,初始成矿流体可能来源于亏损的残余洋壳,并通过成矿过程的水岩相互作用与太华超群混合;据此认为,在218Ma年左右,秦岭地区的陆陆碰撞造山作用并没有结束,而仍在进行之中.  相似文献   

17.
《Resource Geology》2018,68(1):1-21
The Daheishan Mo deposit of the Lesser Xing'an–Zhangguangcai Range metallogenic belt in northeast China is a super‐large molybdenum deposit with Mo reserves of 1.09 Mt. The Mo mineralization occurs mainly in a granodiorite porphyry. Zircon SIMS U–Pb dating yields a crystallization age of 168.3 ± 1.4 Ma for the granodiorite porphyry. Molybdenite Re–Os dating indicates that Mo mineralization occurred at 169.2 ± 1.2 Ma. These geochronological data indicate that these magmatic and hydrothermal activities occurred during the Middle Jurassic. The granodiorite porphyry can be classified as high‐K calc‐alkaline series, and the rare earth elements (REE) are characterized by a significant fractionation between light REE (LREE) and heavy REE (HREE) with slightly positive Eu anomalies (Eu/Eu* = 1.08–1.12). Large ion lithophile elements (e.g., Rb, U, K, and Pb) are enriched, whereas high field strength elements (e.g., Nb, Ta, Ti, HREEs, and Yb) are strongly depleted. The granodiorite porphyry is also characterized by initial strontium isotope ratios (87Sr/86Sr)i of 0.70460–0.70482 and magmatic zircon δ18O values of 5.2–6.5 ‰ that are similar to those of the mantle. Zircon ɛHf(t) and whole‐rock ε Nd(t) values range from 5.6 to 9.9 and 0.8 to 1.1, respectively. The two‐stage Nd model ages (TDM2) are in the range of 868–894 Ma, similar to Hf model ages, indicating that the parent magma has a uniform source and primarily originated from a juvenile crustal source. Combined with the regional geological history, geochemistry of the Daheishan granodiorite porphyry, and new isotopic age data, we propose that the formation of the Daheishan porphyry Mo deposit is likely related to the subduction of the Paleo‐Pacific Plate.  相似文献   

18.
岩石学、地球化学和Nd、Sr、Pb同位素研究表明,西藏冈底斯铜矿带雄村特大型铜金矿床的容矿火山岩为一套具超浅成侵入特点的英安斑岩,SiO2含量集中在61.97%~64.31%之间,富Na2O、低K2O,Na2O/K2O比值平均为5.25。地球化学上明显富集大离子不相容元素Rb、Ba、K、Sr、Pb,同时高场强元素Nb、Ta、Ti处于亏损状态。Sr、Nd同位素组成变化范围小(87Sr/86Sr=0.705154~0.708267,ISr=0.704299~0.705357;143Nd/144Nd=0.512730~0.512931),具有富集地幔特征;Pb同位素组成显示出地幔铅与造山带铅的双重特性(206Pb/204Pb=18.170~18.432,207Pb/204Pb=15.485~15.546,208Pb/207Pb=37.993~38.392)。研究指出它们是早侏罗世(195Ma)由雅鲁藏布江洋壳向欧亚大陆之下俯冲形成的岛弧火山岩,岩浆源区具有EM1型原始地幔富集特征,同时有一定数量的俯冲沉积物加入了地幔源区的部分熔融。根据雄村矿床的成矿时代和矿化特征,笔者认为该矿床的成因类型与胶东焦家式金矿一致,为破碎带蚀变岩型。旦狮庭组容矿火山岩对成矿的贡献在于作为矿源层为矿床提供了成矿金属元素。  相似文献   

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