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11.
地处板块接触地带的滇西北剑川地区是研究新构造运动的重要场所。剑川盆地保留有较为完整的新生代地层,在1:250000地质图上,新生界自下而上为古新统勐野井组、始新统宝相寺组、渐新统金丝厂组、中新统双河组和上新统剑川组;其中双河组为一套含可采煤层的砂泥岩夹泥灰岩沉积,剑川组为一套火山-沉积岩组。近期的研究揭示双河组和剑川组均属始新世,但发表的年龄相互包含,并没有清楚的把两者分开。本文采用Ar-Ar和锆石U-Pb方法测试了双河组和剑川组顶、底凝灰岩的年龄,辅以岩体、岩脉的年龄,重新厘定了两个组的顶、底年龄。剑川组顶部凝灰岩锆石SHRIMP U-Pb年龄为34 Ma±;底部凝灰岩黑云母Ar-Ar坪年龄为36 Ma±,与底部侵入岩脉的锆石SHRIMP U-Pb年龄一致;中上部侵入岩脉的黑云母Ar-Ar坪年龄在34~36 Ma之间。同时,老君山岩体、玉召块岩体和沙帽山岩体的锆石SHRIMP U-Pb年龄在34~35 Ma之间。剑川火山-沉积岩组的年龄集中在34~36 Ma之间,属始新世晚期。剑川双河煤矿矿部至三家村及五家村一带,双河组之下新发现一套凝灰岩,其黑云母Ar-Ar坪年龄和锆石SHRIMP U-Pb年龄均为37 Ma±,表明双河组的起始年代不超过37 Ma;双河组形成于36~37 Ma之间,也属始新世晚期。新的结果表明剑川盆地始新统地层应包括宝相寺组、金丝厂组、双河组和剑川组,缺失渐新统沉积。结合其他盆地的年龄数据,表明剑川乃至整个云南地区在渐新世期间为褶皱隆起期。  相似文献   
12.
基于台湾海峡西部新采集的高分辨率二维地震资料及钻井数据,结合区域地质资料和前人研究成果,建立台湾海峡西部高精度等时地层格架,在此基础上厘定了地质年代属性和沉积相特征分析。研究表明第四纪地层识别出6个三级层序界面,对应地划分为5个三级层序。研究区地震相主要有席状平行—亚平行地震相、前积地震相、下切谷充填地震相、充填状低连续地震相和充填状杂乱地震相等,不同的地震相及其组合代表特定的沉积体系。通过以上分析可知研究区新生代主要发育于海陆过渡地带,主要发育冲积/洪积平原相和滨岸平原相,在此基础上分析沉积演化特征,为台湾海峡西部海域进行精细勘探提供地质依据,这对将来的油气勘探具有重要的指导意义。  相似文献   
13.
北山成矿带东缘的内蒙古呼伦西白地区近年来发现了多处铌稀土矿床(点),矿床(点)产于二叠纪二长花岗岩外接触带上,矿体赋存于滨浅海相碳酸盐岩-变碎屑岩内,其形态、产状、规模受构造-岩浆活动控制,并与磁异常对应,其中灰石山东北铌稀土矿区Nb2O5品位0.02%~0.56%、平均0.11%,REO品位0.13%~2.63%,平均0.93%,辉森乌拉西铌金矿区Nb2O5品位0.01%~0.1%,与白云鄂博Nb-REE-Fe超大型矿床特征类似,成矿潜力巨大。结合区域地质背景及铌稀土多金属矿成矿特征,初步认为区内该类型矿床的找矿标志为:二叠系滨浅海相碳酸盐岩-变碎屑岩地层、构造挤压形成的虚脱空间或韧-脆性转换部位、二叠纪二长花岗岩外接触带、放射性异常梯度带-磁异常位置、岩石蚀变(褐铁矿化、硅化、碳酸盐化等)和石英细网脉发育地段。对该地区铌稀土多金属矿成矿特征和找矿标志的研究有利于拓展北山地区三稀矿产的找矿思路,也可为此类矿产的找矿方向提供借鉴。  相似文献   
14.
三根河林场新民组火山岩主要由流纹岩、流纹质熔结凝灰岩组成,U-Pb定年结果表明流纹岩形成于165.71±0.83 Ma的中侏罗世.岩石地球化学分析结果显示,SiO2含量71.05%~76.77%,Na2O+K2O含量6.66%~8.49%,铝饱和指数(A/CNK)1.02~1.17,相对富硅、碱、过铝质,稀土元素总量中等,轻、重稀土元素分馏明显,具有较强的Eu负异常(δEu=0.39~0.66)和Dy负异常,大离子亲石元素Ba、Sr相对亏损,高场强元素Th、U相对富集,Nb、Dy、Ti相对亏损,岩石具有A型流纹岩的特征.岩石地球化学研究表明,岩浆来源于地壳物质的部分熔融作用.空间上,新民组沿大兴安岭火山岩带中北段均有分布,显示大兴安岭火山岩带于中侏罗世处于张性构造环境.  相似文献   
15.
对大兴安岭满归地区新元古界—下寒武统大网子组变中酸性火山岩进行锆石U-Pb同位素年代学研究,探讨其形成时代及地质意义。大网子组由变安山岩、变英安岩、变流纹岩和少量变晶屑凝灰岩组成,缺少板岩、变砂岩、片岩等沉积岩夹层。通过对变安山岩进行锆石U-Pb同位素年龄测定,获得其锆石206Pb/238U加权平均年龄为(199±1) Ma,表明大网子组变中酸性火山岩形成于早侏罗世早期,非前人认为的形成于新元古代—早寒武世。额尔古纳地块早侏罗世火山岩为漠河盆地提供了物源,表明额尔古纳地块在早侏罗世处于火山-岩浆弧构造背景。该研究为蒙古—鄂霍茨克洋闭合过程中的地球动力学研究提供了新资料。  相似文献   
16.
为确定容果地区二长花岗岩的形成时代、成因及其地质意义,对容果地区二长花岗岩进行了岩相学、LA-ICP-MS锆石U-Pb年龄及地球化学研究。结果表明: 二长花岗岩中的锆石为岩浆成因,206Pb/238U年龄加权平均值为(69±1) Ma,侵入时代属于晚白垩世; 二长花岗岩中Al2O3含量为13.83%~14.41%,Na2O含量为3.68%~3.94%,K2O含量为4.28%~4.35%, K2O/Na2O为1.08~1.18,相对富钾,铝饱和指数A/CNK平均为1.02,属弱过铝质岩石; 微量元素特征表现为相对富集Rb、U、K等大离子亲石元素,亏损Nb、Ta、Ti等高场强元素的特征。结合区域构造演化背景,可得出在80~69 Ma之间,该区的岩浆活动并未停止,仍然持续在发生,所生成的岩体是新特提斯洋壳俯冲的岩浆产物,形成于造山环境下,形成过程贯穿整个造山运动。  相似文献   
17.
To provide better access to thermochronological data and understand the long‐term denudation history of the Japanese Islands, we compiled a low‐temperature thermochronological dataset of fission‐track (FT) and (U–Th–Sm)/He (He) ages for apatite and zircon in bedrocks. These thermochronometric ages are compiled from 90 literature sources and 1,096 localities, and include 418 apatite FT ages, 851 zircon FT ages, 42 apatite He ages, and 30 zircon He ages. Many FT ages have been reported previously; however, the number of He ages is limited in the Japanese Islands. The compiled data are spatially biased; for instance, more data are reported for the Chubu and Kinki districts and the Pacific coast of the Shikoku Island, whereas less data were available for the Tohoku and Chugoku districts. For better understanding arc‐scale uplift‐denudation history, further thermochronological research in the lesser‐studied regions and more He thermochronometric measurements are desired. This compilation will be updated and provided on the website of the Fission‐Track Research Group in Japan ( http://ftrgj.org/index.html ).  相似文献   
18.
In the Cleaverville area of Western Australia, the Regal, Dixon Island, and Cleaverville Formations preserve a Mesoarchean lower‐greenschist‐facies volcano‐sedimentary succession in the coastal Pilbara Terrane. These formations are distributed in a rhomboidal‐shaped area and are unconformably overlain by two narrowly distributed shallow‐marine sedimentary sequences: the Sixty‐Six Hill and Forty‐Four Hill Members of the Lizard Hills Formation. The former member is preserved within the core of the Cleaverville Syncline and the latter formed along the northeast‐trending Eighty‐Seven Fault. Based on the metamorphic grade and structures, two deformation events are recognized: D1 resulted in folding caused by a collisional event, and D2 resulted in regional sinistral strike‐slip deformation. A previous study reported that the Cleaverville Formation was deposited at 3020 Ma, after the Prinsep Orogeny (3070–3050 Ma). Our SHRIMP U–Pb zircon ages show that: (i) graded volcaniclastic–felsic tuff within the black shale sequence below the banded iron formation in the Cleaverville Formation yields an age of (3 114 ±14) Ma; (ii) the youngest zircons in sandstones of the Sixty‐Six Hill Member, which unconformably overlies pillow basalt of the Regal Formation, yield ages of 3090–3060 Ma; and (iii) zircons in sandstones of the Forty‐Four Hill Member show two age peaks at 3270 Ma and 3020 Ma. In this way, the Cleaverville Formation was deposited at 3114–3060 Ma and was deformed at 3070–3050 Ma (D1). Depositional age of the Cleaverville Formation is at least 40–90 Myr older than that proposed in previous studies and pre‐dates the Prinsep Orogeny (3070–3050 Ma). After 3020 Ma, D2 resulted in the formation of a regional strike‐slip pull‐apart basin in the Cleaverville area. The lower‐greenschist‐facies volcano‐sedimentary rocks are distributed only within this basin structure. This strike‐slip deformation was synchronous with crustal‐scale sinistral shear deformation (3000–2930 Ma) in the Pilbara region.  相似文献   
19.
The concentrations of chlorofluorocarbons (CFC‐11, CFC‐12 and CFC‐113) and tritium (3H) content in groundwater were used to date groundwater age, delineate groundwater flow systems and estimate flow velocity in the Hohhot basin. The estimated young groundwater age is fallen in the bracket of 21 ~ 50 a and indicates the presence of two different age profiles and flow systems in the shallow groundwater system. Older age waters occur under the topographically low areas, where the aquifer is double‐layer aquifer system consisting of shallow unconfined‐semi‐confined aquifer and deep confined aquifer. This reflects long flow paths associated with regional flow. Groundwater (range from 21 to 34 years) in the north piedmont and east hilly areas, where the aquifer is a single‐layer aquifer consisting of alluvial fans, are typically younger than those in the low areas. The combination of CFCs dating with hydrogeological information indicates that both local and regional flow systems are present at the basin. The regional groundwater flow mainly flows from the north and east to the southwest, the local groundwater flow system occurs nearby the Hohhot city. The mean regional groundwater flow velocity of the shallow groundwater is estimated about 0.73 km/a. These findings can aid in refining hydrogeological conceptual model of the study area. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   
20.
Migmatites are predominant in the North Qinling (NQ) orogen, but their formation ages are poorly constrained. This paper presents a combined study of cathodoluminescence imaging, U–Pb age, trace element and Hf isotopes of zircon in migmatites from the NQ unit. In the migmatites, most zircon grains occur as new, homogeneous crystals, while some are present as overgrowth rims around inherited cores. Morphological and trace element features suggest that the zircon crystals are metamorphic and formed during partial melting. The inherited cores have oscillatory zoning and yield U–Pb ages of c. 900 Ma, representing their protolith ages. The early Neoproterozoic protoliths probably formed in an active continental margin, being a response to the assembly of the supercontinent Rodinia. The migmatite zircon yields Hf model ages of 1911 ± 20 to 990 ± 22 Ma, indicating that the protoliths were derived from reworking of Palaeoproterozoic to Neoproterozoic crustal materials. The anatexis zircon yields formation ages ranging from 455 ± 5 to 420 ± 4 Ma, with a peak at c. 435 Ma. Combined with previous results, we suggest that the migmatization of the NQ terrane occurred at c. 455–400 Ma. The migmatization was c. 50 Ma later than the c. 490 Ma ultra‐high‐P (UHP) metamorphism, indicating that they occurred in two independent tectonic events. By contrast, the migmatization was coeval with the granulite facies metamorphism and the granitic magmatism in the NQ unit, which collectively argue for their formation due to the northward subduction of the Shangdan Ocean. UHP rocks were distributed mainly along the northern margin and occasionally in the inner part of the NQ unit, indicating that they were exhumed along the northern edge and detached from the basement by the subsequent migmatization process.  相似文献   
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