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1.
马衔山岩群变质基底岩系中发现大量基性岩墙,作为中祁连造山带东部一次重要的构造-岩浆事件的标志.根据地质-岩石学特征,将马衔山岩群中的基性岩墙分为两期.利用LA-ICP-MS(激光剥蚀等离子体质谱)方法,分别对两期基性岩墙进行单颗粒锆石微区U-Pb同位素测定,并应用CL图像对所测锆石进行了成因研究.获得早期变辉长岩墙的侵入年龄为(441.1±1.4)Ma(早志留世早期),主变质期年龄为(414.3±1.2)Ma(早泥盆世早期);晚期辉绿(玢)岩墙群的侵入年龄为(434±1.0)Ma(早志留世晚期),并保留有曾遭受马衔山岩群混染的信息(捕获锆石的207Pb/206Pb表面年龄为(2325±3)Ma~(2573±6)Ma),以及遭受了加里东晚期构造-热事件的改造的信息(206Pb/238U表面年龄为(400±2)Ma~(429±2)Ma).结合相关研究成果,认为马衔山岩群中的两期基性岩墙群形成于祁连地区由俯冲造山向碰撞造山的转换时期,代表了中祁连地块在区域上遭受北东-南西向强烈挤压的过程中派生北西-南东向扩张作用的地质纪录.  相似文献   

2.
新疆克拉玛依中基性岩墙群的地质地球化学和K-Ar年代学   总被引:33,自引:0,他引:33  
新疆克拉玛依中基性岩墙群出现在后碰撞花岗岩(锆石U-Pb年龄约为300~320Ma)及其下石炭统火山岩-硅质岩围岩之中,空间分布受区域构造裂隙控制,总体走向以280°~300°为主,K-Ar表观年龄为241.3~271.5Ma。岩墙群属于亚碱性系列,根据岩性和Mg#的不同,可分为辉绿岩岩墙、高Mg#闪长玢岩岩墙和低Mg#(石英)闪长玢岩岩墙等三组。主元素、稀土元素和其他微量元素等资料表明,形成岩墙群的岩浆起源于亏损地幔,由部分熔融作用形成的原始玄武质岩浆在侵位过程中发生了分离结晶作用,但同时还受到同化混染作用的影响,致使克拉玛依岩墙群具有较典型的AFC过程的成因特征。克拉玛依岩墙群形成于新疆北部后碰撞伸展构造环境,是幔源岩浆活动的产物,因而可以作为地壳垂向生长的标志之一。  相似文献   

3.
胡国辉  胡俊良  陈伟  赵太平 《岩石学报》2010,26(5):1563-1576
幔源岩浆侵位产生的基性岩墙群是地壳伸展裂解的重要标志。华北克拉通南缘中条山-嵩山地区出露有大量的中元古代基性岩墙群,对其研究将有助于深入了解华北克拉通中元古代构造演化特征。其岩石类型以辉绿岩为主,少量辉长辉绿岩和辉绿玢岩;主要造岩矿物为斜长石和单斜辉石,其它矿物包括角闪石、Fe-Ti氧化物、磷灰石、黑云母、碱性长石和石英。锆石SHRIMPU-Pb年龄为1785±18Ma,代表岩墙的结晶年龄。岩石K2O+Na2O含量为3.63%~6.18%,K2O/Na2O比值为0.73~1.38,FeOT含量较高(10.03%~13.59%),属于拉斑玄武岩系列。岩石的稀土元素含量高(142×10-6~381×10-6),亏损Nb、Ta、Zr、Hf等高场强元素,富集Rb、Ba、La等大离子亲石元素,全岩εNd(t)值为-6.2~-8.1。岩墙的固结指数(SI)和MgO含量呈明显的正相关关系,说明幔源岩浆发生过明显的结晶分异作用。地球化学分析表明,研究区基性岩墙属于板内拉斑玄武岩系列,与熊耳群火山岩有相似的地球化学特征;基于两者紧密的产出关系,我们认为该区岩墙可能是熊耳群火山岩的通道岩墙,共同代表了华北克拉通东、西陆块碰撞后伸展事件。  相似文献   

4.
斜锆石U-Pb定年是基性岩墙时代确定的有效方法。前人对太行岩墙群高分异组岩墙(Ti O2通常1%,Mg O一般6%)进行了较多的定年,但缺少对低分异组岩墙(Ti O2约为1%,Mg O6%)的高精度测年。两者年龄是否一致是讨论两组岩墙是否来源于同一岩浆的基本前提。本研究对华北太行岩墙群丰镇地区低、高分异组代表性岩墙进行了斜锆石离子探针207Pb/206Pb定年。结果表明,低分异组车道沟岩墙207Pb/206Pb平均年龄为1768±4Ma(n=9,MSWD=2.1);而高分异组酸刺湾岩墙斜锆石207Pb/206Pb年龄可以分为两组,加权平均值分别为1780±3Ma(n=8,MSWD=0.65)和1760±3Ma(n=5,MSWD=1.7)。斜锆石成分分析表明,酸刺湾岩墙两组年龄对应的矿物成分存在差异,如晚期斜锆石比早期更富Ti,Zr/Hf比值变化范围相对较小。据此认为,酸刺湾岩墙两组斜锆石可能结晶于岩浆不同阶段:早期(~1780Ma)的斜锆石可能结晶于成分更加原始的岩浆,很可能形成于岩浆房中;晚期(~1760Ma)的斜锆石可能结晶于成分更加演化的岩浆,可能是岩浆通道(岩墙)或岩浆房中。Zr/Hf值与单点年龄的负相关趋势可能记录了单斜辉石的结晶过程。已有的太行岩墙群U-Pb年代学结果集中于1785~1760Ma。我们的研究认为,太行岩墙群岩浆房存在了约20Myr,即岩浆房形成于~1785Ma,岩墙就位于1785~1760Ma。  相似文献   

5.
刘函  王国灿 《地质通报》2012,31(9):1461-1468
北阿尔金拉配泉北侧米兰群混合角闪斜长片麻岩被2期基性岩墙群(辉绿玢岩和棕闪煌斑岩)侵位。本次分别对三者进行了LA-ICP-MS锆石U-Pb同位素侧年。混合岩化角闪斜长片麻岩中锆石结晶年龄为2007Ma±25Ma,结合西北地区2.0Ga左右广泛的构造-热事件,可能与Columbia超大陆汇聚有关。辉绿玢岩和棕闪煌斑岩的年龄结构相似,锆石较老年龄组分分别为1962~2093Ma和1804~2038Ma,系在侵位时从围岩(混合角闪斜长片麻岩)中捕获的锆石的年龄;最年轻的年龄组分(79~94Ma)代表基性岩墙群的侵位时间,与阿尔金北缘断裂伸展活动有关;古生代年龄(288~504Ma)为岩墙群上侵过程中同化混染北阿尔金蛇绿混杂岩带部分岩石的年龄。  相似文献   

6.
晋冀蒙交界地区五期岩墙群的界定及其构造意义   总被引:13,自引:0,他引:13       下载免费PDF全文
以幔源岩浆侵位为标志的岩墙群是伸展作用的产物。根据同位素年龄测定 ,华北克拉通北缘晋冀蒙交界地区基性岩墙群可分为 :180 0~ 170 0 Ma,80 0~ 70 0 Ma,2 30 Ma,14 0~ 12 0 Ma,5 0~ 4 0 Ma五个年龄组。本文通过这五组岩墙群的地质、岩石及同位素地球化学特征的研究 ,探讨本地区地幔物质组分随时间的演变规律 ;并将本地区出现的五期伸展作用与华北克拉通乃至全球同期的重要构造事件进行对照。  相似文献   

7.
福建晋江晚中生代中-基性岩墙群可分为两期:早期岩墙群,岩性为角闪辉绿岩,近东西走向(N70-85E),锆石SHRIMP U-Pb年龄为90±2Ma;晚期岩墙群,岩性为微晶闪长岩,北东走向(N35~50E),锆石SHRIMP U-Pb年龄为87±2Ma。两期岩墙群沿晚中生代花岗片麻岩的节理侵入。在地球化学上,它们具有轻稀土元素和大离子亲石元素富集、高场强元素亏损等特点,I_(Sr)=0.7045~0.7053,ε_(Nd)(t)=-1.18~-1.97,与金门、小金门岛的镁铁质岩墙群相似,也和闽东南晚中生代基性火成岩(辉长岩、玄武岩)的一致。它们是起源于受消减作用影响的岩石圈地幔部分熔融而产生的玄武岩浆,经岩浆分异作用,在拉张的构造环境中侵入形成。  相似文献   

8.
西准噶尔东部哈拉阿拉特山南麓的乌尔禾地区新发现大量中基性岩墙群。岩墙群侵位于早二叠世佳木河组磨拉石建造中,展布方向与达尔布特大断裂延伸方向相一致。岩墙群岩性为辉绿岩、辉绿玢岩和辉长闪长岩,地球化学特征显示其具有低钾钙碱性玄武岩安山岩特征。稀土总量偏低(34.53×10-6~82.43×10-6),δEu(0.74~0.98)和δCe(0.98~1.15)负异常不明显,稀土元素分配模式皆呈LREE/HREE富集(LREE/HREE=2.47~7.18)的右倾型配分型式,富集K、Rb、Ba、Sr等大离子亲石元素,而高场强元素Nb、Ta强烈亏损,Zr、Hf适度亏损,具有岛弧俯冲作用的地球化学特征。正的εNd(t)值(5.51~5.71)和相对低的初始87Sr/86Sr比值(0.703 802~0.704 223)表明亏损地幔是岩墙群的源区。岩浆来自于亏损的地幔楔,且受到俯冲组分的改造。该岩墙群表明在早二叠世地表完成汇聚造山后,深部的弧岩浆作用仍在进行,所代表的"滞后型"弧岩浆作用晚于西准中西部的俯冲增生作用,表明整个西准地区俯冲造山作用结束的最终时限应在早二叠世晚期。  相似文献   

9.
王团华  毛景文  王彦斌 《岩石学报》2008,24(6):1273-1287
对小秦岭-熊耳山地区岩墙锆石开展了SHRIMP Ⅱ U-Pb法年代学研究显示,岩墙岩浆源区的锆石主要表现为华北南缘陆壳基底中的继承性锆石特征.根据地质关系确定的侵位于中生代花岗岩中的岩墙,其锆石年龄定年结果主要表现为1843±10Ma和768±15Ma左右的年龄,多数锆石表现为该区域熊耳群火山活动事件1850Ma左右的年龄,只有很少的锆石颗粒记录了中生代时期128Ma左右的侵位年龄.总体看来,岩墙中锆石较全面地记录了区域构造演化的历史.锆石测年结果反映出华北陆块阜平运动(2500~2400Ma)、华北南缘熊耳群火山喷发事件(1850Ma)、震旦纪构造活动(850~700Ma)、扬子陆块俯冲拼贴于华北南缘的造山事件(约200Ma)和燕山期(约130Ma)的岩墙岩浆侵位活动.岩墙的Sr、Nd、Pb同位素示踪揭示了岩墙岩浆源区与扬子陆块的亲缘性,从而证明新元古代-晚古生代时期扬子陆块向华北陆块南缘俯冲,以及后来秦岭造山带在造山期后华北南缘下地壳基底拆沉的地球动力学过程.岩墙中锆石测年结果多显示为老的继承性锆石的原因可能是中生代时期生长的锆石颗粒较小,而继承性锆石颗粒较大,锆石单矿物分选过程中主要挑选出继承性锆石的缘故.  相似文献   

10.
王团华 《地质学报》2008,82(11):1580-1591
对出露于华北南缘小秦岭熊耳山地区的中基性岩墙的Sr、Nd、Pb同位素研究显示:岩墙的(87Sr/86Sr)i变化于0.712310~0.735100,平均值0.722117,(143Nd/144Nd)i变化于0.511160~0.512066,平均值0.511436。用t=130Ma计算的岩墙的εSr(t)变化于113.06~436.61,εNd(t)变化于-7.90~-25.57,岩墙的Sr、Nd同位素组成显示出极端富集特征。岩墙的206Pb/204Pb变化于16.1921~19.8149,平均17.7067, 207Pb/204Pb变化于15.3245~15.7540,平均15.6638,208Pb/204Pb变化于36.8607~41.6251,平均38.9494,其铅同位素比值显示出明显的富放射性成因铅的特征。通过对岩墙与区域太华群、熊耳群地层和中生代花岗岩的对比示踪研究表明,岩墙岩浆源区显示出与洋壳和深海沉积物质混染有关的特征,形成岩墙的岩浆物质与扬子陆块具有更大的亲缘性,由此证明秦岭造山带是由扬子陆块俯冲于华北陆块南缘之下造山的大陆动力学演化过程。结合现今的秦岭造山带深部地球物理资料,认为中生代时期太平洋构造域的兴起是导致秦岭造山带地区由陆陆碰撞向岩石圈拉张伸展构造体制转化的根本原因,从而造成小秦岭熊耳山地区燕山期大规模花岗岩体和中基性岩墙的浅成侵位活动。  相似文献   

11.
The structural organization of a giant mafic dyke swarm, the Okavango complex, in the northern Karoo Large Igneous Province (LIP) of NE Botswana is detailed. This N110°E-oriented dyke swarm extends for 1500 km with a maximum width of 100 km through Archaean basement terranes and Permo-Jurassic sedimentary sequences. The cornerstone of the study is the quantitative analysis of N>170 (exposed) and N>420 (detected by ground magnetics) dykes evidenced on a ca. 80-km-long section lying in crystalline host-rocks, at high-angle to the densest zone of the swarm (Shashe area). Individual dykes are generally sub-vertical and parallel to the entire swarm. Statistical analysis of width data indicates anomalous dyke frequency (few data <5.0 m) and mean dyke thickness (high value of 17 m) with respect to values classically obtained from other giant swarms. Variations of mean dyke thicknesses from 17 (N110°E swarm) to 27 m (adjoining and coeval N70°E giant swarm) are assigned to the conditions hosting fracture networks dilated as either shear or pure extensional structures, respectively, in response to an inferred NNW–SSE extension. Both fracture patterns are regarded as inherited brittle basement fabrics associated with a previous (Proterozoic) dyking event. The Okavango N110°E dyke swarm is thus a polyphase intrusive system in which total dilation caused by Karoo dykes (estimated frequency of 87%) is 12.2% (6315 m of cumulative dyke width) throughout the 52-km-long projected Shashe section. Assuming that Karoo mafic dyke swarms in NE Botswana follow inherited Proterozoic fractures, as similarly applied for most of the nearly synchronous giant dyke complexes converging towards the Nuanetsi area, leads us to consider that the resulting triple junction-like dyke/fracture pattern is not a definitive proof for a deep mantle plume in the Karoo LIP.  相似文献   

12.
The Indian Shield is cross-cut by a number of distinct Paleoproterozoic mafic dyke swarms. The density of dykes in the Dharwar and Bastar Cratons is amongst the highest on Earth. Globally, boninitic dyke swarms are rare compared to tholeiitic dyke swarms and yet they are common within the Southern Indian Shield. Geochronology and geochemistry are used to constrain the petrogenesis and relationship of the boninitic dykes (SiO2 = 51.5 to 55.7 wt%, MgO = 5.8 to 18.7 wt%, and TiO2 = 0.30 wt% to 0.77 wt%) from the central Bastar Craton (Bhanupratappur) and the NE Dharwar Craton (Karimnagar). A single U-Pb baddeleyite age from a boninitic dyke near Bhanupratappur yielded a weighted-mean 207Pb/206Pb age of 2365.6 ± 0.9 Ma that is within error of boninitic dykes from the Dharwar Craton near Karimnagar (2368.5 ± 2.6 Ma) and farther south near Bangalore (2365.4 ± 1.0 Ma to 2368.6 ± 1.3 Ma). Rhyolite-MELTS modeling indicates that fractional crystallization is the likely cause of major element variability of the boninitic dykes from Bhanupratappur whereas trace element modeling indicates that the primary melt may be derived from a pyroxenite mantle source near the spinel-garnet transition zone. The Nd isotopes (εNd(t) = −6.4 to +4.5) of the Bhanupratappur dykes are more variable than the Karimnagar dykes (εNd(t) = −0.7 to +0.6) but they overlap. The variability of Sr-Nd isotopes may be related to crustal contamination during emplacement or is indicative of an isotopically heterogeneous mantle source. The chemical and temporal similarities of the Bhanupratappur dykes with the dykes of the Dharwar Craton (Karimnagar, Penukonda, Chennekottapalle) indicate they are members of the same giant radiating dyke swarm. Moreover, our results suggest that the Bastar and Dharwar Cratons were adjacent but likely had a different configuration at 2.37 Ga than the present day. It is possible that the 2.37Ga dyke swarm was related to a mantle plume that assisted in the break-up of an unknown or poorly constrained supercontinent.  相似文献   

13.
《地学前缘(英文版)》2020,11(6):2127-2139
The Dharwar Craton in Peninsular India was intruded by a series of mafic dykes during the Paleoproterozoic and these mafic magmatic events have important implications on continental rifting and LIPs. Here we report ten precise Pb–Pb TE-TIMS age determinations on baddeleyite grains separated from seven mafic dykes and three sills, intruding into Archean basement rocks and Proterozoic sedimentary formations of the Eastern Dharwar Craton respectively. The crystallization age of the baddeleyite shows 2366.3 ​± ​1.1 ​Ma, and 2369.2 ​± ​0.8 ​Ma for the NE–SW trending dykes, 2368.1 ​± ​0.6 ​Ma, 2366.4 ​± ​0.8 ​Ma, 2207.2 ​± ​0.7 ​Ma and 1887.3 ​± ​1.0 ​Ma for the ENE–WNW to E–W striking dykes, 1880.6 ​± ​1.0 ​Ma, 1864.3 ​± ​0.6 ​Ma and 1863.6 ​± ​0.9 ​Ma for Cuddapah sills, and 1861.8 ​± ​1.4 ​Ma for the N–S trending dyke. Our results in conjunction with those from previous studies identify eight distinct stages of widespread Paleoproterozoic magmatism in the Dharwar craton. The mantle plume centres of the four radiating dyke swarms with ages of ~2367 ​Ma, ~2210 ​Ma, ~2082 ​Ma, and ~1886 ​Ma were traced to establish their proximity to the EDC kimberlite province. Though the ~2367 ​Ma and ~1886 ​Ma plume centres are inferred to be located to the west and east of the present day Dharwar craton respectively away from the kimberlite province, location of plume heads of the other two swarms with ages of ~2207 ​Ma and ~2082 ​Ma are in close proximity. In spite of the ubiquitous occurrence of dyke intrusions of all the seven generations in the kimberlite province, only few of these kimberlites are diamondiferous. Kimberlite occurrences elsewhere in the vicinity of older Large Igneous Provinces (LIPs) like the Mackenzie, Karoo, Parana-Etendeka and Yakutsk-Vilui are also non-diamondiferous. This has been attributed to the destruction of the lithospheric mantle keel (that hosts the diamonds) by the respective mantle plumes. The diamondiferous nature of the EDC kimberlites therefore suggests that plume activity does not always result in the destruction of the mantle keel.  相似文献   

14.
大陆克拉通广泛发育元古代镁铁质岩墙群,其形成时限短,侵位机制复杂,可以侵位于不同的地壳层次,岩墙群的岩浆可能有多种来源,但主要来自陆下软流圈或地幔岩石圈,很少经历结晶分异与地壳混染,岩墙群的总体化学成分量富集型的,从古元古代到新元古代,其碱性组分逐渐增多,反映地幔演化特征,板块构造理论可应用于晚太古代-古元古代的构造研究,元古代以超级大陆的聚合及裂解为特征,岩墙群的形成普遍与伸展体制相联系,是超级大陆开始裂解或地幔柱活动的重要标志。华北克拉通区广泛发育中元古代镁铁质岩墙群,对其进行多学科的研究,将为确定华北克拉通在中元古代超级大陆中的构造位置及其古板块再造提供重要依据。  相似文献   

15.
Ion microprobe U–Th–Pb analyses of baddeleyite and zircon yield precise ages for several mafic intrusions in the Pilbara Craton of Western Australia. Baddeleyite was dated from four dolerite dykes of the north‐northeast‐trending Black Range swarm intruded into granitoid‐greenstone basement in the northern part of the craton. The mean 207Pb*/206Pb* age of 2772 ± 2 Ma, interpreted as an unambiguous age of emplacement for the dykes, is within error of previous ion microprobe U–Pb zircon ages for the Mt Roe flood basalts and confirms that the dykes acted as feeders to the volcanic rocks. The Sylvania Inlier, in the southeastern Pilbara Craton, also contains north‐northeast‐trending dykes that were correlated previously with the Black Range swarm. Based on concordant and discordant zircon analyses from samples of two dykes, the best estimate of the age of the Sylvania dykes is 2747 ± 4 Ma. The Sylvania dykes thus appear to be significantly younger than, and hence unrelated to, the Black Range swarm, but may have acted as feeders to younger volcanic units in the Fortescue Group such as the Kylena Formation.  相似文献   

16.
西藏夏瓦地区位于特提斯喜马拉雅构造带中东部,广泛发育大量近东西向的基性脉岩,这些基性脉岩对于研究该区域地质构造演化具有重要的意义。本文对夏瓦地区基性脉岩开展了系统的岩石学、年代学、地球化学等研究。夏瓦基性脉岩的岩石类型以辉绿岩和辉长玢岩为主。锆石U-Pb年代学揭示基性脉岩结晶年龄为146~145 Ma。夏瓦基性脉岩具有低SiO2(47.20%~50.54%)和高Mg~#值(39.78~53.79)特征,富集Ti、Fe、P元素,属碱性系列,富集轻稀土元素(LREE),高场强元素(Nb、Ta、Zr、Hf、Th)相对富集,显示出似OIB的地球化学特征,指示夏瓦基性脉岩来源于软流圈地幔的部分熔融,形成于大陆边缘裂谷背景下。结合区域大火成岩省基性岩的发育,认为夏瓦地区基性脉岩是大陆边缘裂谷背景下Kerguelen地幔柱作用的产物。夏瓦基性脉岩的结晶年龄虽然早于Kerguelen地幔柱活动的峰期(132 Ma),但可能属于地幔柱峰期之前的小规模岩浆活动。  相似文献   

17.
We report seven high precision U–Pb age determinations for mafic dykes from a number of major Precambrian swarms located in the Dharwar craton, south India. These new age results define two previously unrecognized widespread Paleoproterozoic dyking events at 2221–2209 and 2181–2177 Ma, and confirm a third at 2369–2365 Ma. Three parallel E–W trending mafic dykes from the petrographically and geochemically variable Bangalore dyke swarm, the most prominent swarm in the Dharwar craton, yield indistinguishable U–Pb baddeleyite ages of 2365.4 ± 1.0, 2365.9 ± 1.5 and 2368.6 ± 1.3 Ma, indicating rapid emplacement in less than five million years. A compilation of Paleoproterozoic U–Pb ages for mafic magmatic events worldwide indicates that the 2369–2365 Ma Bangalore dyke swarm represents a previously unrecognized pulse of mafic magmatism on Earth.  相似文献   

18.
在滇西南澜沧江构造带东侧、扬子板块西缘中元古代团梁子岩组含有大量的平行于区域面理(S2)的构造热液石英脉,利用LA-ICP-MS对3件石英脉和1件绿片岩中的锆石进行~(206)U/~(238)Pb测年,获得3组明显的组合年龄:395~461Ma、240~260Ma和222~228Ma,大部分集中于222~228Ma。对比研究表明,区域上2期变质变形(M_1D_1、M_2D_2)与获得的锆石年龄有较好的对应性,早期的变质变形(M_1D_1)形成于早古生代(395~461Ma)原特提斯洋盆向东俯冲阶段;晚期的2期变质变形(M_(2a)D_(2a),M_(2b)D_(2b))发生于晚古生代—中生代早期(240~260Ma)古特提斯洋盆向东俯冲阶段和晚三叠世早期(222~228Ma)古特提斯洋盆闭合阶段。晚三叠世早期变质变形(M_(2b)D_(2b))构造热液发生在临沧花岗岩侵位和弧陆碰撞型忙怀组火山岩(229~235Ma)之后,早于小定西组/芒汇河组拉伸期火山岩(210~222Ma),是古特提斯洋与扬子陆块碰撞后的应力松弛阶段俯冲岩片快速折返的证据,同时也反映了古特提斯洋盆在晚三叠世早期之前已经关闭。  相似文献   

19.
金厂峪金矿床是冀东最大的金矿床 ,具有早期复脉型和晚期石英大脉型两种矿石类型。矿区产有多期钠长岩脉 ,且与含金矿脉有密切的时间和空间关系。青山口花岗岩体位于矿区西约 2~ 3km,有研究者认为金矿床成因上与花岗岩体有关。应用先进的 SHRIMP测年技术 ,测得肉红色钠长岩脉的锆石 w (2 0 7Pb) / w (2 0 6Pb)年龄为 (185 8± 8) Ma,青山口花岗岩体锆石 w(2 0 6Pb) / w(2 3 8U )年龄为 (199± 2 ) Ma。金厂峪金矿床的的复脉型矿化早于肉红色钠长岩脉 ,故其矿化的时代应在晚元古代。青山口岩体的年龄和区域上与辉钼矿化有关的花岗岩年龄一致 ,均为燕山早期。推测金厂峪金矿床晚期石英大脉型矿化中的辉钼矿化可能与青山口花岗岩体有关 ,石英大脉型金矿化时代为中生代燕山期  相似文献   

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