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1.
马关老君山花岗岩体位于滇东南-桂西锡钨多金属成矿带上。为了限定马关地区晚中生代岩浆事件的准确时间,本文对老君山花岗岩体进行了LA-ICP-MS锆石U-Pb定年和地球化学研究。对第一期花岗岩的定年结果为96±2Ma,表明老君山花岗岩应为晚白垩世,与华南西部晚白垩世成岩-成矿事件耦合。老君山花岗岩具有中等SiO2(69.6%~73.6%),高碱(K2O+Na2O=6.56%~8.66%),高钾(K2O>Na2O),强过铝质(A/CNK>1.1)的特征。较低的Sr(<50×10-6),较高的Rb(>270×10-6),低Na2O、CaO,以及P2O5、Y与Rb的演化趋势表明其应为分异的S型花岗岩。低CaO/Na2O值(<0.3),高Rb/Sr、Rb/Ba值的特征表明其源岩为富粘土泥质岩石。结合区域构造背景,老君山花岗岩应与滇东南-桂西晚白垩世成岩-成矿事件形成于同一动力学背景下,即华南西部晚白垩世岩石圈伸展作用。通过对区域地球化学资料和成矿地质背景的分析,围绕岩体(和隐伏岩体)的内外接触带及盖层内受伸展构造控制的断层系统是区域上的重点找矿方向。  相似文献   

2.
黄沙坪铅锌多金属矿成岩成矿年龄测定及地质意义   总被引:14,自引:0,他引:14  
黄沙坪铅锌多金属矿位于南岭多金属成矿带湘南矿集区。自危机矿山接替资源勘查项目执行以来, 又探明资源量达大型的含铁钨锡多金属矿及达中型的铜多金属矿, 为开展科学研究提供了丰富的资料。笔者在前人研究的基础上, 通过采用锆石SHRIMP U-Pb和辉钼矿Re-Os等时线定年方法, 对分别对矿区56 m中段的石英斑岩体以及矿石中共生的辉钼矿进行了精确定年, 获得石英斑岩体锆石SHRIMP U-Pb年龄为152±3 Ma, 三组同一中段不同位置的辉钼矿Re-Os等时线年龄为159.4±3.3 Ma, 157.5±2.4 Ma和157.6±2.3 Ma。测定结果为厘定黄沙坪铅锌多金属矿成岩成矿作用多期多阶段性特点提供了重要的依据。  相似文献   

3.
Two porphyry Cu-Mo prospects in northern Sonora, Mexico (Fortuna del Cobre and Los Humos) located within the southwestern North American porphyry province have been dated in order to constrain the timing of crystallization and mineralization of these ore deposits. In Fortuna del Cobre, the pre-mineralization granodiorite porphyry yielded an U-Pb zircon age of 76.5?±?2.3 Ma, whereas two samples from the ore-bearing quartz feldespathic porphyry were dated at 74.6?±?1.3 and 75.0?±?1.4 Ma. Four molybdenite samples from Los Humos porphyry Cu prospect yielded a weighted average Re-Os age of 73.5?±?0.2 Ma, whereas two samples from the ore-bearing quartz monzonite porphyry gave U-Pb zircon ages of 74.4?±?1.1 and 74.5?±?1.3 Ma, showing a Late Cretaceous age for the emplacement of this ore deposit. The results indicate that Laramide porphyry Cu mineralization of Late Cretaceous age is not restricted to northern Arizona as previously thought and provide evidence for the definition of NS trending metallogenic belts that are parallel to the paleo-trench. Porphyry copper mineralization follows the inland migration trend of the magmatic arc as a result of the Farallon slab flattening during the Laramide orogeny.  相似文献   

4.
《International Geology Review》2012,54(11):1370-1390
ABSTRACT

To better understand the Neoproterozoic tectonic evolution along the northern margin of Yangtze Block, we have determined the geochronological and geochemical compositions of newly recognized bimodal volcanic suite and coeval granites from the western Dabie terrain. LA-ICP-MS zircon U-Pb dating reveals that the felsic and mafic volcanics from the Hong’an unit have crystallization ages of 730 ± 4Ma and 735 ± 5Ma, respectively, indicating that the bimodal suite was erupted during the Neoproterozoic. The Xuantan, Xiaoluoshan, and Wuchenhe granites yield U-Pb ages of 742 ± 4 Ma, 738 ± 4 Ma, and 736 ± 4 Ma, respectively. The felsic volcanic rocks show peraluminous characteristics, and have a close affinity to S-type granite. The mafic volcanic rocks are basalt in compositions, and are likely generated from a depleted mantle source. The granites belong to high-K calc-alkaline and calc-alkaline series, display metaluminous to peraluminous, and are mainly highly fractionated I-type and A-type granite. The granites and felsic volcanics have zircon εHf(t) values of ?16.4 to + 5.6 and two-stage Hf model ages (TDM2) of 1.28 to 2.40 Ga, suggesting that they were partial melting of varying Mesoproterozoic–early-Neoproterozoic crust. The granites have εNd(t) of -14.7 to -1.5, and the two-stage Nd model ages (TDM2) values of 1.54 to 2.61 Ga, also implying the Yangtze crustal contribution. These Neoproterozoic bimodal suite and coeval granites were most likely generated in a rifting extensional setting, triggered by the mantle upwelling, associated with crust–mantle interaction. Intensive magmatic rocks are widespread throughout the South Qingling, Suizhao, western Dabie and eastern Dabie areas during 810–720 Ma, and show peak ages at ~ 740 Ma. Combining regional geology, we support a continental rifting extensional setting for the north margin of the Yangtze Block during the break-up of the supercontinent Rodinia.  相似文献   

5.
对从幸福山花岗岩中挑出的岩浆锆石进行了LA-ICP-MS分析,得出了由15个点组成的加权平均值为(157±2)Ma的年龄。此15个测试点均处于岩浆锆石的振荡环带上,且此年龄与邢家山钼钨矿辉钼矿Re-Os年龄一致,代表该花岗岩的结晶年龄。本次测试所得到的另外2组捕获锆石年龄(2798±13)Ma和(2250±18)Ma暗示该岩浆源区可能存在的新太古代-古元古代侵入岩基底,(230±6)Ma则可能暗示着该区存在三叠纪的岩浆活动。中生代以来(190~110 Ma),中国东部构造岩浆活动特征较为一致,与之相对应存在多期成矿作用。胶东地区广泛出露的玲珑花岗岩与幸福山花岗岩岩石地球化学特征及年龄基本一致,可能该区也存在着大规模的钼多金属成矿作用,只是大部分为后期构造抬升所剥蚀,邢家山钼钨矿是保存下来的代表。也说明,栖霞—福山地区中生代以来剥蚀程度相对较小,矿床保存条件较好,故应重视该区中浅成矿床(斑岩-矽卡岩型、卡林型、造山型浅成矿床等)的寻找。  相似文献   

6.
粤西大金山钨锡多金属矿是一个近年新发现的与花岗岩有关的石英脉型钨锡多金属矿,目前估算的资源量已达中型,并具有大型矿床的找矿潜力。矿体形态简单,主要以石英脉的形式产出,由石英脉、云英岩脉和多金属硫化物石英脉等组成。钨锡多金属矿化的主要类型为细脉状和网脉状,围岩蚀变主要有硅化、云英岩化和绿泥石化等。本文在详细介绍矿床地质特征的基础上,对矿床进行了成岩成矿年代学研究。采用LA-MC-ICP-MS锆石U-Pb测年技术,得到了花岗岩的成岩年龄:中细粒黑云母花岗岩形成于82.89±0.35Ma~85.6±0.52Ma,似斑状黑云母花岗岩形成于75.01±0.16Ma~84.17±0.34Ma。通过对与中细粒黑云母花岗岩有关的5件石英脉型辉钼矿进行Re-Os同位素分析,获得其模式年龄为80.07±1.19Ma~84.93±1.42Ma。以上年代学测试结果说明大金山钨锡多金属矿成岩成矿时代为晚白垩世,成岩成矿作用基本同时。本文认为大金山钨锡多金属矿成岩成矿作用发生在华南晚中生代岩石圈拉张-伸展的构造背景下,是华南晚中生代大规模成岩成矿作用的产物。  相似文献   

7.
伟德山地区构造位置上处于苏鲁-大别造山带鲁东段,该区广泛出露中生代燕山晚期花岗岩,岩体内部及外围已发现十余处钼、铜及多金属矿床(点),为一重要的多金属矿产地.本文利用LA-ICP-MS锆石U-Pb同位素定年技术对该区两个典型矿床矿化花岗岩开展了年代测定,获得了两个岩浆锆石U-Pb法加权平均年龄分别为113.4±1.8Ma和114.2±2.1Ma,与前人所测得的该区花岗岩SHRIMP锆石U-Pb同位素年龄108±2Ma,117.7±2.9Ma ~ 113.4±2.5Ma较一致,结合中国东部地区花岗岩体与其相应的有色金属矿化时间差异的研究成果,认为伟德山地区铜钼成矿时代应在110Ma左右,属燕山晚期多金属成矿亚系列.区域上的研究表明,该区成岩成矿作用处于早白垩世古太平洋板块相对亚洲大陆俯冲导致的弧后扩张环境,为中国东部岩石圈减薄过程中壳幔相互作用的产物.  相似文献   

8.
湖南锡田花岗岩锆石U-Pb年代学及钨锡成矿时代的探讨   总被引:3,自引:3,他引:0  
华南是世界上最大的花岗岩省之一,其中中生代花岗岩最为发育,与之相伴生的是大量钨锡多金属矿床,花岗岩的成因演化因与这些矿床的成矿作用密切相关而备受关注。湖南锡田花岗岩体是该区的一个典型岩体,主要由黑云母花岗岩、黑云母二长花岗岩和细粒花岗岩组成,并伴生有钨锡矿床。本文以湖南锡田花岗岩体为研究对象,对其中不同类型的岩石进行了详细的岩石学和锆石SIMS与LA-ICP-MS U-Pb定年工作。分析结果表明,锡田花岗岩体存在晚三叠世(227~233Ma)和晚侏罗世(150~154Ma)两期岩浆活动,早期的岩浆活动主要分布在岩体北部和中部,晚期岩浆活动仅在岩体中部及东部矿体附近可见,两期岩浆活动具有相同的岩性组合。另外,对含矿花岗岩的锆石U-Pb定年结果表明该地区可能存在晚三叠世的成矿作用,结合前人的工作推断锡田地区钨锡矿的形成受晚三叠世和晚侏罗世两期岩浆事件的影响。  相似文献   

9.
北岔沟门中生代岩浆侵入作用成矿系统   总被引:3,自引:0,他引:3  
采用颗粒锆石U Pb同位素年代学研究方法 (TIMS)阐明河北省北部北岔沟门地区极具特色的中生代浅成侵入岩组合的形成时代及其成矿意义。研究表明 ,北岔沟门一带发育了包括闪长玢岩、石英二长斑岩、角闪黑云二长岩和花岗闪长斑岩等在内的具浅成岩浆侵入作用特征的侵入岩共生组合 ,其中石英二长斑岩、角闪黑云二长岩、花岗闪长斑岩的TIMS锆石U Pb同位素年龄分别为 14 7.6± 1.6Ma、14 6 .2± 1.4Ma和 14 6 .2± 3.9Ma,代表了浅成侵入岩的侵位成岩时代 ,该侵入岩石组合与北岔沟门含金银多金属矿床的形成具有密切的时、空及成因联系 ,构成了华北陆块北缘地区中生代典型的浅成岩浆侵入作用成矿系统。  相似文献   

10.
狮吼山矿区是江西省内规模最大的矽卡岩型硫铁多金属矿床,伴生W、Cu、Au多种成矿元素,成矿作用与矿区出露的茶山迳复式花岗岩体有关。岩体主要包括茶山迳似斑状黑云母二长花岗岩和莲湖细粒二长花岗岩两期,为研究成矿岩体的侵位时代、岩石成因及与成矿的关系,本次工作进行了U-Pb锆石定年、岩相学和岩石地球化学等测试分析。结果表明:岩体具有高硅、高钾、富铝的特征,属高钾钙碱性系列花岗岩;轻重稀土元素分馏明显,均为右倾型,弱Eu负异常,以富集Cs、Rb、Th、U、Pb,亏损Ba、Nb、Sr、和Ti等元素为主要特征,属于低Ba-Sr壳源花岗岩类;锆石具较好晶形,具典型岩浆锆石特征,利用LA-ICP-MS进行U-Pb测年,获得谐和年龄为(162.4±0.6)Ma(MSWD=1.8),加权平均年龄为(162.4±1.4)Ma(MSWD=1.4),谐和年龄与加权平均年龄在误差范围内高度一致,表明茶山迳复式岩体侵位于燕山早期中侏罗世;综合考虑岩体矿物组合、主微量元素及高分异特征,认为其成因分类应属于S型花岗岩;对比中国花岗岩成矿元素平均含量,茶山迳两期花岗岩均具有较高的W、Mo、Bi、Pb等成矿元素含量,可同时为成矿作用提供热源、流体及物质。  相似文献   

11.
湖南金船塘锡铋矿床辉钼矿Re-Os同位素测年及其地质意义   总被引:18,自引:14,他引:4  
湖南东坡矿田位于南岭成矿带的西段,构造位置上处于扬子板块与华夏板块的对接地带,矿田内以千里山岩体为中心,发育一系列与燕山期花岗质岩浆作用有关的超大型、大型和中型钨锡钼铋多金属矿床。金船塘锡铋矿床是东坡矿田内一个以锡铋为主的大型矽卡岩型多金属矿床。本文对该矿床的矽卡岩型矿石中的辉钼矿进行了Re-Os同位素测年。结果显示,辉钼矿Re-Os同位素模式年龄范围为157.2±2.8Ma至162.4±2.4Ma,加权平均值为159.8±2.9Ma,对应的Re-Os等时线年龄为158.8±6.6Ma;这些年龄数据与柿竹园矿床辉钼矿的Re-Os等时线年龄(151.0±3.5Ma)在误差范围内基本一致,亦与区内千里山岩体锆石U-Pb年龄(152±2Ma)接近,指示金船塘Sn-Bi矿床与区内花岗岩具有密切的时间和成因关系。结合区域上已有的研究成果,包括金船塘矿床在内的东坡矿田的成岩成矿作用主要集中在149~161Ma,与南岭地区大规模的钨锡多金属成矿作用时限(150~160Ma)一致;另外,区域上的研究表明,幔源物质广泛参与了湘南钨锡矿集区晚中生代的成岩成矿作用,指示该区中-晚侏罗世爆发式的成岩成矿作用可能是区域地壳拉张-岩石圈伸展减薄背景下,强烈的壳幔相互作用的结果。  相似文献   

12.
The post-Variscan complex of Porto consists of metaluminous to slightly peraluminous A-type biotite granites mingled with gabbro-dioritic rocks, and late dykes with basaltic to trachyandesitic composition. U-Pb zircon dating by LA-ICP-MS on two mafic intrusive samples constrains the time of the gabbro–granite crystallisation at 281 ± 3 Ma and 283 ± 2 Ma. Hornblende 40Ar-39Ar ages from a late trachyandesite dyke date the dyking event at 280 ± 2 Ma, which is within error the U-Pb zircon ages of the intrusives. Biotite granites show variable major and trace element compositions and similar initial εNd (−0.3 to +0.9). Whole rock chemistry variations and trace element compositions of plagioclase and allanite indicate that the granites are genetically linked, essentially through fractional crystallisation of feldspars and minor allanite. On the basis of whole-rock chemistry e.g. initial εNd +4.9 to +1.7 and trace element clinopyroxene compositions, we have ascertained that the mafic intrusives and basic dykes formed from isotopically depleted mantle source-derived melts with similar trace element signature. These basic melts experienced slightly different evolutionary histories, controlled by fractional crystallisation and crustal contamination, mainly by the acid magma that gave rise to the associated biotite granites, but also by the enclosing older Variscan granitoids. U-Pb zircon data suggest that the Porto complex was affected by hydrothermal fluid circulation at 259 ± 9 Ma.  相似文献   

13.
道伦达坝铜多金属矿床位于大兴安岭成矿带南段,对道伦达坝矿床黑云母花岗岩开展了锆石U-Pb测年、锆石微量元素和Lu-Hf同位素研究.锆石U-Pb LA-ICP-MS测年结果显示黑云母花岗岩形成时代为282.2±4.5~287.0±3.7 Ma.锆石Lu-Hf同位素研究结果显示黑云母花岗岩锆石均具有较高的176Hf/177Hf(平均值分别为0.282 770和0.282 769)和低的176Lu/177Hf(平均值分别为0.002 224和0.001 984)同位素组成,εHf(t)值变化范围为3.05~8.58之间和2.31~7.36,二阶段模式年龄分别为730.22~1 083.46 Ma和812.42~1 134.56 Ma,暗示其来源为年轻的新生下地壳,可能遭受了古老地壳的混染.锆石微量元素研究显示,黑云母花岗岩的锆石具有低的Nb含量(< 2×10-6)和强烈的Eu异常,符合S型花岗岩特征.锆石的Ti饱和温度平均值为770℃和785℃,指示其源区经历了水近饱和情况下的部分熔融,暗示其可能形成于俯冲环境下.   相似文献   

14.
华南中部地区大义山、塔山等早中生代花岗岩的展布和侵入特征与这一时期褶皱构造之间存在着非常密切的关系,对这些岩体进行精确年代学研究,可以为构造变形时代提供年代学约束。大义山岩体南部地区锆石U-Pb LA-ICP-MS年龄为东缘(171.8±1.9)Ma、西缘(169.9±1.8)Ma、中部(164.2±2.6)Ma,塔山岩体东段为(247±5.9)Ma。大义山岩体在164.2—171.8 Ma之间经历两个期次的侵入,形成了一个复式岩体,岩体形成后至125 Ma经历了快速隆升,之后以接近1°C/Ma的冷却速率抬升到地表。大义山和塔山岩体记录了华南早中生代印支和燕山两期重要的岩浆活动。阳明山、塔山岩体等E—W向展布岩体受印支期构造带控制;大义山、骑田岭等岩体年龄限定了燕山期构造地层的变形下限时代,华南地区NNE向褶皱构造形成时代应早于(171.8±1.9)Ma。  相似文献   

15.
大井是内蒙古东部地区的一处大型铜银锡多金属矿床,矿体呈脉状产出在二叠系林西组地层中,受NW或NWW向断裂控制。本文对大井矿区及其外围主要侵入岩体和火山岩开展了年代学和地球化学研究。LA-MC-ICP-MS锆石测年结果表明,大井矿区内靠近1号矿脉产出的2件霏细岩脉样品的锆石年龄分别为170.7±1.4Ma(MSWD=1.9)和170.7±1.1Ma(MSWD=1.3);矿区外围马鞍子黑云母二长花岗岩体的锆石年龄为279.7±1.3Ma(MSWD=0.74);唐家营子附近安山玢岩脉的锆石年龄为252.0±1.8Ma(MSWD=1.6);大四段村似斑状黑云母二长花岗岩体的锆石年龄为242.8±1.7Ma(MSWD=1.7);采自大坝南部的流纹质晶屑熔结凝灰岩、流纹质火山角砾熔岩和晶屑凝灰岩的锆石年龄分别为143.5±0.7Ma(MSWD=0.38),144.3±0.7Ma(MSWD=1.2)和145.3±1.0Ma(MSWD=2.5);小城子村南部石英斑岩脉的锆石年龄为146.1±0.9Ma(MSWD=1.7),安山玢岩脉的锆石年龄133.2±0.7Ma(MSWD=0.96)。反映本区至少存在四期岩浆活动,分别是海西晚期、印支早期、燕山早期和燕山中期。岩石地球化学分析结果表明,大井矿区及外围主要侵入岩(黑云母二长花岗岩、似斑状黑云母二长花岗岩、霏细岩、安山玢岩和石英斑岩)均为富SiO2、富碱、准铝的钙碱性岩石,在SiO2-K2O图解上均落入"高钾钙碱系列"区。所有的岩石样品具有轻稀土分异明显、富集大离子亲石元素(LILE)的特征,其中Ba、Nb、Sr、P、Ti相对亏损,而Rb、Th、K、Ce、Nd、Hf、Sm、Y 和Yb相对富集。侵入岩和火山岩的年代学与岩石地球化学特征表明,马鞍子黑云母二长花岗岩和大四段村似斑状黑云母二长花岗岩的侵位可能与古亚洲洋的碰撞闭合有关,形成于挤压的构造环境;燕山早期侵入岩在本区并不发育,其形成环境还有待进一步查明,可能与西伯利亚板块和蒙古-华北板块之间的鄂霍茨克洋消亡及后碰撞造山有关;而燕山晚期大规模的侵入-火山喷发活动可能是由岩石圈减薄,区域大规模伸展所引起。根据本文对矿区内及外围侵入岩与火山岩的年代学研究,结合矿区地质和前人研究成果,认为大井铜银锡矿床的成矿主要与晚侏罗世-早白垩世岩浆活动(146~133Ma)有关,是区域伸展构造背景下岩浆活动的产物。  相似文献   

16.
青海东昆仑复合造山带西段的祁漫塔格地区是一个特征显著的侵入岩浆构造带,同时也是重要的多金属成矿带。野马泉铁铜多金属矿是该区较为典型的接触交代矽卡岩型矿床。利用LA-ICP-MS锆石U-Pb定年方法,获得该矿区与野马泉铁铜矿床有关的花岗闪长岩体的成岩年龄为226±2Ma;该结果与前人利用辉钼矿Re-Os法获得的矽卡岩型铜钼多金属矿石和矽卡岩型钼矿石的等时线年龄一致,因此本文厘定野马泉矿区成岩成矿时代为中—晚三叠世。  相似文献   

17.
矽卡岩型钨矿是赣南地区的一种重要钨矿床类型。本文以焦里和宝山两个典型的矽卡岩型钨多金属矿床为例,开展了系统的成岩成矿年代学和岩石地球化学研究,结合区域钨锡矿床最新年代学研究成果,探讨了赣南地区钨矿的成岩成矿时代及形成构造环境。结果表明,焦里矽卡岩型钨多金属矿区斑状花岗闪长岩SHRIMP锆石U-Pb年龄为164.4±1.1Ma,辉钼矿Re-Os等时线年龄为170.6±4.6Ma;宝山矽卡岩型钨矿区花岗岩SHRIMP锆石U-Pb年龄为156.6±3.9Ma,辉钼矿Re-Os模式年龄加权平均值为161.0±1.9Ma,厘定了它们的成岩成矿年龄为中-晚侏罗世,同一矿区的成岩和成矿年龄在误差范围内基本一致。结合赣南崇(义)-(大)余-(上)犹钨锡矿集区已有的年代学资料,指出本区的成岩成矿年龄介于170~150Ma,集中在160~150Ma,认为赣南钨矿形成于华南中生代岩石圈伸展-减薄时期的侏罗纪板内拉张的地球动力学背景,系同一成岩成矿系统的产物。  相似文献   

18.
西藏甲玛超大型铜矿区斑岩脉成岩时代及其与成矿的关系   总被引:7,自引:3,他引:4  
甲玛铜多金属矿是冈底斯成矿带上资源储量达到超大型规模的又一个重要矿床,2010年7月已正式投产。产于矽卡岩、斑岩和角岩中的辉钼矿Re-Os定年已表明甲玛矿床的铜钼成矿时代集中于17~14Ma,而成岩时代的研究相对较少,尤其是矿区及外围大量出露的近南北向展布的斑岩脉。本文选取矿区铅山上52号平硐内的2件弱矿化斑岩脉样品,花岗斑岩(JM52-0)和花岗闪长斑岩(JM52-46.7),首次开展斑岩脉的锆石SHRIMP U-Pb定年,获得的206Pb/238U-207Pb/235U协和年龄分别为14.2±0.2Ma和14.1±0.3Ma,代表了甲玛矿区地表出露的近南北向展布的斑岩脉侵位时岩浆锆石的结晶年龄。斑岩脉的成岩时代与区域上与近南北向正断层系统及裂谷裂陷带有关的冈底斯含矿斑岩侵位时代(18~12Ma)一致。甲玛的成岩成矿时代显示了成岩作用与成矿作用基本同期,且与冈底斯成矿带东段主要斑岩型-矽卡岩型铜多金属矿床的成岩成矿时代基本一致,成矿高峰集中在17~14Ma之间,指示了冈底斯在中新世的岩浆构造活动事件,而且表明了甲玛铜钼矿化与岩浆热液的成因联系。  相似文献   

19.
The Kalguty ore-magmatic system comprises two intrusive complexes: the Kalguty granite-leucogranite complex and Eastern Kalguty complex of dikes and small intrusions. U-Pb dating of individual zircon grains from granites of the main intrusive phase demonstrated that the crystallization age of small grains of magmatic habits and outer rims of large grains is almost concordant and is 216 ± 3 Ma. Ar-Ar isotope study shows that the K-Ar system of biotites from granites of the main phase within the Kalguty ore field was disturbed (radiogenic Ar was partially lost) and gave an age of 202 ± 1 Ma. The Ar-Ar dating of muscovites from intraore and postore dikes of the Eastern Kalguty complex devoid of signatures of postmagmatic recrystallization and superimposed greisenization gave similar ages of 205–201 Ma. This date is considered as the emplacement age of the Eastern Kalguty dikes and associated complex W-Mo-Bi-Be ore mineralization. Sm-Nd and Pb-Pb isotopic study of granites, ongonites, and elvans of the Kalguty ore-magmatic system and host rocks shows that these systems were closed. For example, recalculation of Nd isotopic ratios for corresponding ages of crystallization of magmatic systems (216 and 205 Ma) shows that ?Nd(T) values decrease from ?1.9 to ?3.5 ... ?5.08 with transition from granite-leucogranite to subvolcanic granite porphyry, ongonite, and elvan dikes with corresponding increase of model ages of protoliths from 1.0 to 1.25 Ga. Lead isotopic ratios for leaching residues of whole-rock samples of all rock varieties (206Pb/204Pb = 18.305–18.831; 207Pb/204Pb = 15.527–15.571) are plotted well below the line of average crustal lead evolution according to the Stacey-Kramers model.  相似文献   

20.
The Spanish Central System (SCS) batholith, located in the Central Iberian Zone, is one of the largest masses of granite in the European Variscan Belt. This batholith is a composite unit of late- and post-kinematic granitoids dominated by S- and I-type series granite, with subordinate leucogranite and granodiorite. Zircon trace element contents, from two representative S-type and three I-type granitoids from the eastern portion of the SCS batholith, indicate a heterogeneous composition due to magma differentiation and co-crystallisation of other trace element-rich accessory phases. In situ, U–Pb dating of these zircons by SHRIMP and LA-ICP-MS shows 479–462-Ma inherited zircon ages in the I-type intrusions, indicating the involvement of an Ordovician metaigneous protolith, while the S-type intrusions exclusively contain Cadomian and older zircon ages. The zircon crystallisation ages show that these granites have been emplaced at ca. 300?Ma with a time span between 303?±?3?Ma and 298?±?3?Ma. Precise dating by CA-ID-TIMS reveals a pulse at 305.7?±?0.4?Ma and confirms the major pulse at 300.7?±?0.6?Ma. These ages match the Permo-Carboniferous age for granulite-facies metamorphism of the lower crust under the SCS batholith and coincide with a widespread granitic event throughout the Southern Variscides. Ti-in zircon thermometry indicates temperatures between 844 and 784°C for both the S- and I-type granites, reinforcing the hypothesis that these granites are derived from deep crustal sources.  相似文献   

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