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131.
采自阿尔金断裂西南端、沿郭扎错—龙木错—空喀山口一线展布的郭扎错断裂内的糜棱岩样品中同构造黑云母~(40)Ar/~(39)Ar同位素测年的坪年龄分别为105.9Ma±0.5Ma、121.5Ma±0.6Ma、150.4Ma±0.9Ma,表明其早期韧性变形事件发生在晚侏罗世和早白垩世晚期,与阿尔金断裂带主期活动的时期基本一致,为阿尔金断裂带西延提供了新的证据。研究表明,郭扎错断裂与阿尔金断裂带具有一致的变形年代学特征、构造特征等属性,前者是后者的西延部分,二者为同一构造带,均是拉萨地块整体向北运动的动力环境下所产生的脉冲式构造活动的产物。  相似文献   
132.
<正>The Central Asian metallogenic domain(CAMD) is a multi-core metallogenic system controlled by boundary strike-slip fault systems.The Balkhash metallogenic belt in Kazakhstan,in which occur many large and super-large porphyritic Cu—Mo deposits and some quartz vein- and greisen-type W—Mo deposits,is a well-known porphyritic Cu—Mo metallogenic belt in the CAMD.In this paper 11 molybdenite samples from the western segment of the Balkhash metallogenic belt are selected for Re—Os compositional analyses and Re—Os isotopic dating.Molybdenites from the Borly porphyry Cu deposit and the three quartz vein-greisen W—Mo deposits—East Kounrad.Akshatau and Zhanet—all have relatively high Re contents(2712—2772μg/g for Borly and 2.267—31.50μg/g for the other three W—Mo deposits),and lower common Os contents(0.670—2.696 ng/g for Borly and 0.0051—0.056 ng/g for the other three).The molybdenites from the Borly porphyry Cu—Mo deposit and the East Kounrad,Zhanet,and Akshatau quartz vein- and greisen-type W—Mo deposits give average model Re—Os ages of 315.9 Ma,298.0 Ma,295.0 Ma,and 289.3 Ma respectively.Meanwhile,molybdenites from the East Kounrad,Zhanet,and Akshatau W—Mo deposits give a Re—Os isochron age of 297.9 Ma,with an MSWD value of 0.97.Re-Os dating of the molybdenites indicates that Cu—W—Mo metallogenesis in the western Balkhash metallogenic belt occurred during Late Carboniferous to Early Permian(315.9—289.3 Ma),while the porphyry Cu—Mo deposits formed at—316 Ma,and the quartz vein-greisen W—Mo deposits formed at ~298 Ma.The Re—Os model and isochron ages thus suggest that Late Carboniferous porphyry granitoid and pegmatite magmatism took place during the late Hercynian movement.Compared to the Junggar-East Tianshan porphyry Cu metallogenic belt in northwestern China,the formation of the Cu—Mo metallogenesis in the Balkhash metallogenic belt occurred between that of the Tuwu-Yandong in East Tianshan and the Baogutu porphyry Cu deposits in West Junggar. Collectively,the large-scale Late Carboniferous porphyry Cu—Mo metallogenesis in the Central Asian metallogenic domain is related to Hercynian tectono-magmatic activities.  相似文献   
133.
内蒙古敖汉旗克力代岩体锆石U-Pb年代及地球化学   总被引:1,自引:0,他引:1  
通过LA-ICP-MS锆石U-Pb测年对内蒙古敖汉旗克力代岩体进行研究。结果表明,岩浆锆石的加权平均年龄为263±1 Ma,表明其结晶年龄为中二叠世。岩石地球化学分析表明,岩体具有高Si(SiO2=69.94%~72.56%),富ALK(Na2O+K2O=8.04%~9.23%),贫Fe(FeOT=1.50%~1.82%)、Mg(MgO=0.65%~0.86%)、Ti(TiO2=0.32%~0.35%)的特点;A/CNK值为0.87~0.93,为准铝质;A/NKC1.1,显示出I型花岗岩特征。固结指数(SI)为6.06~7.36,分异指数(DI)为88.82~91.82,说明岩体经历了较强的分异演化作用。稀土元素总量较低(ΣREE=91.76×10-6~143.16×10-6),轻稀土明显富集,重稀土相对亏损,LREE/HREE值平均为9.14,(La/Yb)N平均值为8.36,δEu平均值为0.58,为Eu亏损型。大离子亲石元素(LILE)Rb、K较富集,强烈亏损高场强元素(HFSE)Nb、Ti、Ta。因此,判定克力代岩体为高钾钙碱性I型花岗岩。结合测年结果和地球化学特征,判定该岩体为晚海西期华北板块和西伯利亚板块碰撞作用形成的同碰撞型花岗岩。  相似文献   
134.
下古城花岗岩体分布于北祁连造山带南缘,岩性主要为石英闪长岩—花岗闪长岩,SiO2质量分数在58.78%~69.53%之间,Al2O3含量为14.30%~15.30%之间,A/CNK为0.86~1.08,属准铝质—弱过铝质,钙碱性—高钾钙碱性系列的I型花岗岩。整体上,具有低SiO2,高CaO、FeOT和MgO的岩石地球化学特征。稀土总量(ΣREE)为87.22×10-6~150.54×10-6,ΣLREE/ΣHREE为6.24~11.11,表明轻重稀土弱分异。富集大离子亲石元素Rb、Th、U、Pb、La等,亏损高场强元素Nb、Ta、P、Ti等,说明下古城花岗岩主要由壳源物质部分熔融形成。锆石原位Lu-Hf同位素分析结果表明,石英闪长岩的εHf(t)=-5.7~-0.7,二阶段模式年龄(tDM2)为1.51~1.83Ga,暗示源岩可能主要为中元古代增生的地壳物质。LA-ICP-MS锆石U-Pb年代学结果表明,下古城石英闪长岩的侵位年龄为505.4±4.1Ma(MSWD=0.78,n=21),与北祁连造山带南缘的柯柯里花岗岩(512Ma~501Ma)、野马咀花岗岩(~508Ma)形成的地球动力学背景相似,均属于北祁连洋向南俯冲活动大陆边缘的岛弧环境。  相似文献   
135.
The Jilongshan skarn Cu–Au deposit is located at the Jiurui ore cluster region in the southwestern part of the Middle–Lower Yangtze River valley metallogenic belt. The region is characterized by NW‐, NNW‐ and EW‐trending faults and the mineralization occurs at the contact of lower Triassic carbonate rocks and Jurassic granodiorite porphyry intrusions. The intrusives are characterized by SiO2, K2O, and Na2O concentrations ranging from 61.66 to 67.8 wt.%, 3.29 to 5.65 wt.%, and 2.83 to 3.9 wt.%, respectively. Their A/CNK (A/CNK = n(Al2O3)/[n(CaO) + n(Na2O) + n(K2O)]) ratio, δEu, and δCe vary from 0.77 to 1.17, 0.86 to 1, and 0.88 to 0.96, respectively. The rocks show enrichment in light rare earth elements ((La/Yb)N = 7.61–12.94) and large ion lithophile elements (LILE), and depletion in high field strength elements (HFSE), such as Zr, Ti. They also display a peraluminous, high‐K calc‐alkaline signature typical of intrusives associated with skarn and porphyry Cu–Au–Mo polymetallic deposits. Laser ablation inductively coupled plasma spectrometry (LA‐ICP‐MS) zircon U–Pb age indicates that the granodiorite porphyry formed at 151.75 ± 0.70 Ma. A few inherited zircons with older ages (677 ± 10 Ma, 848 ± 11 Ma, 2645 ± 38 Ma, and 3411 ± 36 Ma) suggest the existence of an Archaean basement beneath the Middle–Lower Yangtze River region. The temperature of crystallization of the porphyry estimated from zircon thermometer ranges from 744.3 °C to 751.5 °C, and 634.04 °C to 823.8 °C. Molybdenite Re–Os dating shows that the Jilongshan deposit formed at 150.79 ± 0.82 Ma. The metallogeny and magmatism are correlated to mantle–crust interaction, associated with the subduction of the Pacific Plate from the east. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
136.
Cenozoic marine strata occur in the western, eastern, and central parts of the North Patagonian Andes between ∼43°S and 44°S. Correlation of these deposits is difficult because they occur in small and discontinuous outcrops and their ages are uncertain. In order to better understand the age and sedimentary environment of these strata, we combined U–Pb (LA-MC-ICPMS) geochronology on detrital zircons with sedimentologic and paleontologic (foraminifers and molluscs) studies. Sedimentologic analyses suggest that the Puduhuapi Formation on the western flank of the Andean Cordillera was deposited in a deep-marine setting, the Vargas Formation in the central part of the Andes was deposited at outer-neritic or bathyal depths, and the La Cascada Formation on the eastern flank of the range was deposited in a shallow-marine environment. Geochronologic and paleontologic results indicate that the three marine units were deposited during the late Oligocene-early Miocene interval, although it is not clear whether this occurred during one or more marine incursions in the area. The alluvial(?) conglomeratic deposits of the La Junta Formation, exposed in the proximity of the Vargas Formation outcrops, have a maximum depositional age of ∼26 Ma and could have been deposited during the initial stage of subsidence that affected this region prior to the marine transgression over this area. The occurrence of both Pacific and Atlantic molluscan taxa in the La Cascada and Vargas formations suggests that a marine strait connected both oceans during the accumulation of these units. The new data on the age of the Puduhuapi, Vargas, and La Cascada formations indicate that these units may correlate with lower Miocene marine deposits in the forearc of central and southern Chile (Navidad Formation and equivalent units) and on the eastern flank of the Patagonian Andes (Río Foyel Formation and equivalent units). A late Oligocene−early Miocene age for these marine deposits is a reliable maximum age for the deformation and uplift of the North Patagonian Andes.  相似文献   
137.
王盟  张进江  戚国伟  郑勇  刘凯 《岩石学报》2014,30(10):3051-3061
桑树园子剪切带位于中天山南缘,经历了多期韧性变形事件。对其变形样式和变形历史进行深入研究有利于加深对天山造山带构造演化的认识。本文对剪切带北部发生强烈韧性变形的岩石进行变形样式及相关年代学研究,识别出一期早志留世右旋剪切运动。该期走滑剪切事件造成部分前寒武纪斜长角闪岩发生深熔作用形成浅色脉体,使花岗闪长岩发生强烈的糜棱岩化石,并伴随同构造花岗质脉体的侵入。斜长角闪岩中浅色脉体中的锆石具弱的振荡环带或无环带,Th/U比值较低,具深熔作用中新生锆石的特点,其206Pb/238U加权平均年龄为430.1Ma。糜棱状花岗闪长岩样品锆石核部LAICPMS U-Pb年龄为496.3Ma,是中天山北缘古天山洋向南俯冲的记录。其锆石的变质增生边给出430.5Ma的年龄,记录了花岗闪长岩遭受后期糜棱岩化改造的时间。侵入花岗闪长岩中的同构造花岗质脉体也给出较为一致的432.9Ma的锆石结晶年龄。这一年龄范围与中天山北缘古天山洋盆闭合的时间一致,因此桑树园子剪切带北部在~430Ma的右旋走滑事件可能是吐哈地块与中天山碰撞事件的陆内响应。  相似文献   
138.
平顶山金矿床位于佳木斯地块与松嫩地块的衔接处北端,地处中亚造山带的东段。前人对该矿床的岩(矿)石物理化学特征及地质特征已进行了研究,但对与成矿密切相关的花岗岩缺乏系统的岩石学、地球化学和高精度年代学等方面的研究。本次研究通过锆石的LA-ICP-MS U-Pb定年、Hf同位素示踪以及全岩的主、微量元素测试,探讨了平顶山金矿区赋矿花岗岩的源区特征、形成机制和构造背景。矿区花岗岩包括早期的浅色中粒二长花岗岩和稍晚期的细粒黑云母二长花岗岩,两期花岗岩的锆石U-Pb年龄分别为271.7±2.3 Ma和249.8±3.3Ma,对应的εHf(t)为-4.17~-0.58和-4.98~-0.49,两阶段平均模式年龄tDM2分别为1432 Ma、1457Ma,原始岩浆可能来源于中元古代增生的壳源物质的重熔。两期花岗岩均以高碱(Na2O+K2O)、富Al2O3、富集LREE和LILE(Rb、Ba、Th、U和K)、低MgO、贫HREE和HFSE(Nb、Ta、P和Ti)为特征,属高钾钙碱性系列的准铝质/过铝质I型花岗岩,代表了火山弧-同碰撞环境。结合中亚造山带东段构造演化历史,我们认为平顶山金矿的花岗岩可能是古亚洲洋向北俯冲、闭合、华北克拉通与佳-蒙陆块碰撞产物。  相似文献   
139.
滇东北下田坝花岗岩年代学、地球化学及其构造意义   总被引:1,自引:0,他引:1  
滇东北下田坝花岗岩的SiO2质量分数在71.1%~78.15%之间,Al2O3值在11.55%~14.90%之间,A/CNK=0.94~1.25,属于弱过铝质花岗岩。稀土元素总量(∑REE)为259.71×10-6~804.60×10-6,∑LREE/∑HREE为4.12~10.28,说明轻稀土较重稀土富集。岩石具有明显的负Eu异常(δEu=0.04~0.07),大离子亲石元素Rb、Ba、Pb、U等相对富集,高场强元素Nb、Ta、Zr、Ti等明显亏损,这些特征说明下田坝花岗岩是由壳源物质部分熔融形成的,具有A型花岗岩的特征。对下田坝花岗岩进行的激光探针等离子体质谱(LA-ICP-MS)锆石U-Pb同位素年代学研究获得了206Pb/238 U加权年龄年龄769±4.4Ma(MSWD=0.45),可代表花岗岩的形成年龄,下田坝花岗岩并非原来认为的早古生代花岗岩。结合对区域地质资料的分析认为,下田坝花岗岩的形成年龄与扬子地块西部Rodinia超大陆裂解事件在时间上一致,该花岗岩是在Rodinia超大陆裂解过程中由地幔柱活动引起的大陆裂谷环境中形成的,这也证实了扬子地块西南缘新元古代的裂谷环境已影响到滇东北的东川地区。  相似文献   
140.
We present an 8000‐year history spanning 650 km of ice margin retreat for the largest marine‐terminating ice stream draining the former British–Irish Ice Sheet. Bayesian modelling of the geochronological data shows the ISIS expanded 34.0–25.3 ka, accelerating into the Celtic Sea to reach maximum limits 25.3–24.5 ka before a collapse with rapid marginal retreat to the northern Irish Sea Basin (ISB). This retreat was rapid and driven by climatic warming, sea‐level rise, mega‐tidal amplitudes and reactivation of meridional circulation in the North Atlantic. The retreat, though rapid, is uneven, with the stepped retreat pattern possibly a function of the passage of the ice stream between normal and adverse ice bed gradients and changing ice stream geometry. Initially, wide calving margins and adverse slopes encouraged rapid retreat (~550 m a?1) that slowed (~100 m a?1) at the topographic constriction and bathymetric high between southern Ireland and Wales before rates increased (~200 m a?1) across adverse bed slopes and wider and deeper basin configuration in the northern ISB. These data point to the importance of the ice bed slope and lateral extent in predicting the longer‐term (>1000 a) patterns and rates of ice‐marginal retreat during phases of rapid collapse, which has implications for the modelling of projected rapid retreat of present‐day ice streams. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
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