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91.
诸广岩体南部伸展构造与铀成矿关系的探索   总被引:7,自引:3,他引:7  
潘永正  张建新 《铀矿地质》1994,10(3):138-143
诸广岩体是我国花岗岩型铀矿床的集中产出区。本文从伸展构造的角度探索了南雄和塘洞-胡坑剥离构造的特点,提出龙华山变质核杂岩对富铀矿床的控制作用,并指出以硅化带为主的脆性构造与塑性流动构造复合叠加的过渡带是寻找富大铀矿床的有利地段.  相似文献   
92.
Tadashi  Usuki  Hiroshi  Kaiden  Keiji  Misawa  Kazuyuki  Shiraishi 《Island Arc》2006,15(4):503-516
Abstract   In order to define the timing of granulite facies metamorphism, sensitive high-resolution ion microprobe (SHRIMP) U-Pb analyses were performed on zircons of three pelitic granulites from the lower metamorphic sequence of the Hidaka Metamorphic Belt, southern central Hokkaido, Japan. Both rounded and prismatic zircons were found in the granulite samples. The rounded zircons had thin (10–20 µm) concentric overgrowth rims on detrital cores, while the prismatic zircons did not have detrital cores. Both the overgrowth rims on the rounded zircons and the entire prismatic zircons were formed under granulite facies metamorphism and consistently yield Latest Oligocene–Early Miocene ages (23.7 ± 0.4 Ma to 17.2 ± 0.5 Ma; 206Pb/ 238U ages ( n  = 31) with low Th/U ratios, mostly <0.1). The internal structure of zircons and their SHRIMP U-Pb ages provide strong evidence in support of the granulite facies event occurring during the Latest Oligocene-Early Miocene. The detrital cores of rounded zircons show a huge variety of ages; Mesoarchean to Paleoproterozoic, Paleozoic to Mesozoic and Paleogene. The interior and marginal portions of the Eurasian continent including cratonic areas are suggested for their source provenances. These wide variations in age suggest that the protolith of the granulites of the lower metamorphic sequence were deposited near the trench of the Eurasian continental margin during Paleogene. The protolith of the lower metamorphic sequence of the Hidaka metamorphic belt was thrust under the upper metamorphic sequence, which had already been metamorphosed in early Paleogene. The Latest Oligocene-Early Miocene Hidaka high-temperature metamorphic event is presumed to have been caused by asthenospheric upwelling during back-arc rifting of the Kuril and Japan basins.  相似文献   
93.
胶南-威海造山带研究进展及重要地质问题讨论   总被引:1,自引:0,他引:1  
胶南-威海造山带基底主要由新元古代变质花岗岩组成,另有少量变质表壳岩、浅变质碎屑岩、基性-超基性岩及榴辉岩.变质花岗岩可分为同造山花岗岩及后造山花岗岩.造山带之上曾经有过古生代盖层,造山带中侵入有三叠纪闪长岩及花岗岩体.在榴辉岩及其围岩中发现了许多高压、超高压变质矿物;确认高压、超高压变质作用分早期的超高压榴辉岩相变质作用和晚期的高压绿片岩相变质作用;变质地层、超镁铁质岩及部分片麻岩等围岩与榴辉岩经历了相同的超高压变质作用,大部分花岗质片麻岩是在超高压变质作用发生后或发生过程中侵入榴辉岩中的.苏鲁造山带是一条以韧性剪切带为格架,穹窿构造、褶皱构造相伴随的"无山"的造山带;造山带可分为南、北二部分,北带主体属于华北板块南缘带,而南带主体则属于扬子板块北缘带.南、北带的界线大致与连云港-嘉山断裂及近岸断裂一致.造山带南界与响水-淮阴断裂一致,北界位于五莲-王台-朱吴-牟平一线,西侧被郯庐断裂带切割.  相似文献   
94.
姜继圣  刘志宏 《岩石学报》1997,13(3):346-355
根据15万区域地质调查,将区内的早前寒武纪基底划分为变质上壳岩、中粗粒黑云长英片麻岩、变黑云母钾长花岗岩和变质基性岩四个岩石单元。通过对上述岩石单元岩石类型、地球化学特征、变质变形作用及同位素年代学研究,对其形成时序进行了讨论,由此确定了本区早前寒武纪基底的地质演化轮廓,即在中晚太古时期,本区经历了由玄武安山岩和英安岩双峰式火山建造为主体的上壳岩系的形成阶段,并于2.6Ga遭受角闪岩相变质;随即伴有大规模的TTG深成岩浆活动,晚太古末经历绿帘角闪岩相的区域变质作用;至早元古初期,深熔成因的钾质花岗岩侵位,区内已存的早期变质岩石受到该期钾质岩浆的交代改造,并在其成岩之后遭受绿片岩相的区域变质。  相似文献   
95.
陕西旬北浅变质岩区的大型层滑构造   总被引:2,自引:0,他引:2  
笔者着重探讨陕西西旬北地区志留系和泥盆系浅变质岩的构造特征,发现这两套地层在构造式要上有明显的差异,它们存在着大型的顺层滑动构造-层滑构造,层滑构造面上下的两套地层是相对独立的构造变形单元。  相似文献   
96.
本文报道了冀西北地区麻粒岩相片麻岩中矿物内流体包裹体的特征并讨论了其地质意义。根据包裹体的形态、赋存状态并结合包裹体CO2密度的演化,在麻粒岩相花岗质片麻岩的矿物中可识别出四种类型的流体包裹体:1)一相富CO2包裹体、2)气液两相富CO2包裹体、3)三相含液态CO2包裹体,4)含石盐子晶的多相包裹体。不同类型包裹体的特征和密度等表明,该区花岗质片麻岩经历了三个阶段的变质过程。第一阶段,在麻粒岩相变质作用峰期之后捕获了高密度的富CO2包裹体。在第二阶段形成了两相富CO2包裹体。第三阶段捕获了低密度的三相含液态CO2包裹体。这种很低密度的流体包裹体反映了晚期变形和退变质期间的温压条件  相似文献   
97.
冀西北麻粒岩是我国北方麻粒岩带的重要组成部分,其年龄对探讨我国地壳早期演化历史具有重要价值。本文报道了采自赤城伙房村和崇礼上新营变质岩样品的地球化学特征和Sm-Nd同位素年龄。赤城伙房村变质岩年龄为2513±55(2σ)Ma,INd=0.50944±5(2σ),εNd(t)=+1.2±0.5;崇礼上新营变质岩年龄为2667±90(2σ)Ma,INd=0.50930±8(2σ),εNd(t)=+2.4±0.7。冀西北变质岩可能存在两个系列,其原岩分别形成于2900~2800Ma和2700~2600Ma。该区最早地壳可能形成于2932±84(σ)Ma  相似文献   
98.
滇西石鼓变质带基本特征   总被引:4,自引:1,他引:4  
沙绍礼 《岩石学报》1989,5(1):78-83
石鼓变质带延伸约100多公里,可划分为绿泥石带、黑云母带、铁铝榴石带、十字石带、蓝晶石带及夕线石带。红柱石-蓝晶石稳定共生,属低—中压变质相系的区域变质带。主要变质时期为海西晚期(K-Ar年龄为258Ma)。  相似文献   
99.
The Louzidian metamorphic core complex (LMCC) in southern Chifeng is located on the northern margin of the North China craton. Structural analyses of the LMCC and its extensional detachment system indicate that the LMCC experienced two-stage extension. The ductile regime experienced top-to-northeast shearing extension and the brittle detachment fault underwent top-down-outwards slipping. Between these two stages, a semi-ductile regime recorded the transition from ductile to brittle. The hanging wall of the detachment fault is similar to those classic supradetachment basins in western North America. Analyses of provenance and paleocurrent directions in the basins show that there were two filling stages. In the early stage, materials came from the southwest margin of the basin and the hanging wall of the detachment system and were transported from southwest to northeast; while in the late stage, deposits were derived from the footwall of the detachment fault and transported outwards to the two sides of the  相似文献   
100.
Abstract   The development of voluminous granitic magmatism and widespread high-grade metamorphism in Mid-Cretaceous southwest Japan have been explained by the subduction of a spreading ridge (Kula–Pacific or Farallon–Izanagi plate boundaries) beneath the Eurasian continent and the formation of a slab window. In the present study, the thermal consequences of the formation of a slab window beneath a continental margin are evaluated through a 2-D numerical simulation. The model results are evaluated by comparison with the Mid-Cretaceous geology of southwest Japan. Of particular interest are the absence of an amphibolite- to granulite-facies metamorphic belt near the Wadati–Benioff plane, and significant melting of the lower crustal-mafic rocks sufficient to form a large amount of granitic magma. Because none of the model results simultaneously satisfied these two geological interpretations, it is suggested that subduction of plate boundaries in Mid-Cretaceous southwest Japan was not associated with the opening of a slab window. According to previous studies, and the results of the present study, two different tectonic scenarios could reasonably explain the geological interpretations for Mid-Cretaceous southwest Japan: (i) The spreading ridge did not subduct beneath the Eurasian continent, but was located off the continental margin, implying the continuous subduction of very young oceanic lithosphere; (ii) ridge subduction beneath the continental margin occurred after active spreading had ceased. Consequently, in both tectonic scenarios, the subduction of plate boundaries at the Mid-Cretaceous southwest Japan was not associated with a slab window, but very young (hot) oceanic lithosphere.  相似文献   
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