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1.
小秦岭早元古代变质侵入体,系指分布于蓝田县灞源以北箭峪岭一带的古老闪长质侵入体,前人将其划归太古界太华群变质地层,或划归下元古界。建立秋岔组。认为该组为一套变质火山岩地层。作者经野外工作研究证实。将其从变质地层中解体出来,厘定为箭峪岭早元古代变质闪长质杂岩体。  相似文献   

2.
浙江诸暨陈蔡地区发育一套副变质岩层,由中深度变质的片麻岩、片岩和大理岩组成,与双溪坞群为断层接触,其地质时代多被视为与江山-绍兴断裂带南东侧的华夏地块古老变质基底相同。陈蔡岩群地处江绍断裂带北东端,变质和变形较深,前人将其划归为华夏古陆的小块体,地层时代曾与福建古元古代麻源岩群或浙江八都岩群和江西中元古代铁砂街组对比。在陈蔡岩群下吴宅组含榴夕线黑云斜长片麻岩及含榴黑云斜长片麻岩中获得大量的锆石,具有典型的核、幔、边结构,核部年龄集中在新元古代,206Pb/238U年龄加权平均值为848±10Ma和845±9Ma,锆石后期增生边部年龄多为加里东期的年龄,206Pb/238U年龄加权平均值为431.4±7.8Ma。陈蔡岩群斜长片麻岩获得的锆石核部较单一的U-Pb年龄,反映出陈蔡岩群下吴宅组夕线石所代表的泥质成分所含的锆石单一,其锆石核部年龄应代表陈蔡岩群下吴宅组的原岩年龄;同时,认为陈蔡岩群既不能与福建古元古代的麻源岩群对比,也不能与江西地区中元古代铁砂街组对比。其原岩为稍晚于双溪坞群(905~877Ma)的新元古代地层(848~845Ma),从年代上倾向于江南造山带范畴。该年龄对江山-绍兴断裂带变质地层的区域对比和构造演化有重要意义。  相似文献   

3.
浙江诸暨陈蔡地区发育一套副变质岩层,由中深度变质的片麻岩、片岩和大理岩组成,与双溪坞群为断层接触,其地质时代多被视为与江山—绍兴断裂带南东侧的华夏地块古老变质基底相同。陈蔡岩群地处江绍断裂带北东端,变质和变形较深,前人将其划归为华夏古陆的小块体,地层时代曾与福建古元古代麻源岩群或浙江八都岩群和江西中元古代铁砂街组对比。在陈蔡岩群下吴宅组含榴夕线黑云斜长片麻岩及含榴黑云斜长片麻岩中获得大量的锆石,具有典型的核、幔、边结构,核部年龄集中在新元古代,206Pb/238U年龄加权平均值为848±10Ma和845±9Ma,锆石后期增生边部年龄多为加里东期的年龄,206Pb/238U年龄加权平均值为431.4±7.8Ma。陈蔡岩群斜长片麻岩获得的锆石核部较单一的U-Pb年龄,反映出陈蔡岩群下吴宅组夕线石所代表的泥质成分所含的锆石单一,其锆石核部年龄应代表陈蔡岩群下吴宅组的原岩年龄;同时,认为陈蔡岩群既不能与福建古元古代的麻源岩群对比,也不能与江西地区中元古代铁砂街组对比。其原岩为稍晚于双溪坞群(905~877Ma)的新元古代地层(848~845Ma),从年代上倾向于江南造山带范畴。该年龄对江山—绍兴断裂带变质地层的区域对比和构造演化有重要意义。  相似文献   

4.
多种同位素年代学方法综合研究表明,扬子克拉通北缘中段基底岩系后河群和西乡群变质地层的原岩形成时代并非早期推测或报道的新元古代.后河群斜长角闪岩原岩的形成时代应为古元古代,并有太古宙岩石存在的可能.后河群混合岩化变质作用发生于2141Ma.西乡群底部白勉峡组属古元古代,而中上部孙家河组为中元古代末期.普遍存在的700~800Ma的K-Ar和Rb-Sr年龄反映了区内于晋宁期发生了一次大规模的构造热事件  相似文献   

5.
河北平山小觉地区早前寒武纪阜平群的部分岩石,在经历了区域变质高峰之后,又遭受了差异性深熔作用的改造。笔者采用单颗粒锆石U-Pb稀释法测年技术,对变质岩及深熔作用改造形成的岩石,进行了同位素年代研究。认为不一致线上交点数值即为相应岩石所经受的变质作用或深熔作用的年龄。测定结果说明小觉及其以东地区三种岩石所经历的区域变质作用的年龄,不小于2.55±0.04 Ga,小觉附近深熔岩石(花岗闪长质岩石)的深熔年龄为2.47±0.09Ga。因而变质作用和深熔作用都可划归阜平期。小觉西南下康家峪两块标本的测定结果,提供了该地区阜平群岩石在2.06~2.08 Ga经历了古元古代时期重熔作用改造的信息。  相似文献   

6.
马长信 《江西地质》1995,9(4):267-273
在赣北前寒武纪变质地层中,发现了三套微古植物群,每套微古植物群的种属数量,所占比例,膜壳轮廓形态,纹蚀结构,个体大小等组合特征,均有着显著的差异。第一套微古植物群组合最为原始,所代表的地层时代属早元古代晚期,第二套微古植物群组合比第一套演化程度较高,所代表的地层时代属中元古代。  相似文献   

7.
庐山地区星子群碎屑锆石SIMS U-Pb年龄及其地质意义   总被引:1,自引:0,他引:1  
江西庐山地区出露的星子群为一套遭受角闪岩相变质的中深变质岩系,前人将其划分为古元古代地层,并将其与华南早期地壳的形成与演化和中生代变质核杂岩构造相联系。本文通过对星子群浅粒岩中碎屑锆石U-Pb SIMS年代学研究,获得了(834±4)Ma碎屑锆石年龄,代表了该套地层沉积时代的下限;再结合其上覆筲箕洼组(830±5)Ma的火山岩年龄,将星子群的地层时代限定于新元古代。这一研究结果表明庐山地区并未出露古元古代的变质基底;而且野外也并未找到典型大规模拆离断层的存在,因此前人厘定的中生代变质核杂岩构造也值得商榷。根据碎屑锆石U-Pb不一致线下交点年龄为(133±20)Ma,推断星子群的变质作用发生在中生代。另外,由星子群单一的碎屑锆石年龄、锆石形态特征及矿物组成特征推断,星子群是源区花岗质岩石快速抬升、风化剥蚀和搬运沉积的产物,暗示着强烈的地壳运动过程,可能与Rodinia超大陆的裂解有关。  相似文献   

8.
以宏观岩石学为基础,结合侵入岩事件、高精度同位素测年、变质变形特征、岩石化学及地球化学特征,对通化地区古元古代、中元古代"岩石地层"单位重新进行划分和厘定,并赋予新的含义。研究结果表明:通化地区出露的古元古代、中元古代岩石地层自下而上划分为光华岩群、集安岩群和老岭群,光华岩群与集安岩群呈整合接触关系,为同一时期、同一地球动力学机制下裂谷构造环境的产物,老岭群角度不整合覆盖于集安岩群之上。LA-ICPMS锆石U-Pb同位素测年显示,光华岩群双庙岩组变质玄武岩形成年龄为(2 120±10)Ma。  相似文献   

9.
华北克拉通南缘安沟群的SHRIMP年龄及地层对比   总被引:5,自引:3,他引:2  
华北克拉通南缘安沟群的时代及地层划分对比一直存有争议.侵吞安沟群的许台花岗岩原划为古元古代,本文通过SHRIMP测试,获得其精确的形成年龄为2503±11Ma.安沟群石梯沟组变质酸性火山岩的SHRIMP锆石U-Ph年龄为2521±11Ma,安沟群寨沟组变质酸性火山岩的SHRIMP锆石U-Ph年龄为2517±12Ma,表明安沟群形成于新太古代,与登封群和五台群的形成时代基本一致.安沟群地层的原岩组合为基性火山岩-中酸性火山岩、泥质.碎屑沉积岩和少量碳酸盐岩,总体上与登封群和五台群的原岩组合类似.  相似文献   

10.
柴达木盆地北缘“达肯大坂群”的再厘定   总被引:39,自引:12,他引:39  
柴达木盆地北缘原划为古元古代的“达肯大坂群”出露相当广泛,不仅包含了变质程度不同的表壳岩,而且包括了时代迥然不同的变质深成侵入体。原“达肯大坂群”至少有四种类型的岩石组合:其中德令哈杂岩形成时代最老,为古元古代早期的产物;厘定后所称的达肯大坂岩群为一套中至高级变质、并以副变质岩为主的表壳岩系统,推测其形成时代为古元古代晚期至中元古代;第三套岩石组合为花岗片麻岩,主要形成于新元古代早期,不属于沉积地层范畴,其中大量出现榴辉岩包体;榴辉岩除以规模较小的独立包体形式赋存于新元古代花岗片麻岩中外,还和大理岩、石英岩、含石榴石片岩共生在一起,在花岗片麻岩中形成规模较大的残块,这些榴辉岩及与其共生的表壳岩共同构成鱼卡河或沙柳河岩群。  相似文献   

11.
本文从五台地区滹沱群豆村亚群四集庄组、东冶亚群纹山组和郭家寨亚群西河里组地层中共采集了5件浅变质砂岩样品,并对其进行了La-MC-ICPMS锆石U-Pb年龄测定。分析结果显示,四集庄组2件砂岩样品碎屑锆石207Pb/206Pb年龄主要集中于~2.5Ga和2.1~2.2Ga两个峰值,其中~2.5Ga碎屑锆石来自新太古代五台群和五台地区花岗质杂岩;2.1~2.2Ga碎屑锆石获得207Pb/206Pb加权平均年龄2134±5Ma,限定了四集庄组砂岩沉积下限为2134Ma。结合四集庄组火山岩形成时代(2140±10Ma)和四集庄组底部发育厚层砾岩,我们认为滹沱群初始形成时代为~2.2Ga,即早元古代中期。东冶亚群纹山组底部砂岩中碎屑锆石207Pb/206Pb年龄主要集中于2050~2122Ma之间,其中64粒相对年轻的锆石获得207Pb/206Pb加权平均年龄2068±3Ma,代表了东冶亚群形成时代下限为2070Ma左右。综合豆村亚群青石村组火山岩形成时代2087±9Ma,我们认为东冶亚群初始形成于2070Ma左右。郭家寨亚群中最年轻碎屑锆石207Pb/206Pb年龄为1958±10Ma,表明郭家寨亚群开始沉积时代小于1.95Ga,为早元古代晚期/末期。区域上,早元古代末期是华北最终克拉通阶段,而郭家寨亚群与东冶亚群呈明显的角度不整合接触关系,两者记录了明显不同的地质过程。因此,我们建议郭家寨亚群应从滹沱群中解体出来并独立命名为郭家寨群,且郭家寨群可能沉积于华北克拉通化过程中/之后,开始沉积的时代为1.9~1.8Ga。  相似文献   

12.
荆山岩群是胶北地体最重要的古元古代变沉积岩系之一,经历了高角闪岩相?麻粒岩相变质与韧性变形,准确限定其沉积时代与物质来源对探究胶?辽?吉带古元古代构造演化过程具有重要意义.本文利用LA-ICP-MS(激光剥蚀电感耦合等离子质谱仪)对旌旗山地区荆山岩群禄格庄岩组中长石石英岩进行了锆石U-Pb测年和稀土元素分析.根据碎屑锆石内部结构和年龄结果,认为在最年轻一组碎屑锆石中谐和的207Pb/206Pb加权平均年龄2 120 Ma,可以大致限定其原岩的最大沉积时代,两件样品获得的变质年龄分别为1 886±12 Ma与1 969±23 Ma,结合区内禄格庄岩组被2 103~2 085 Ma二长花岗质片麻岩侵入的地质关系,初步限定旌旗山地区禄格庄岩组的沉积时代约为2 100 Ma.长石石英岩中有效碎屑锆石年龄谱图呈现2 105 Ma主峰值年龄和2 185 Ma次峰值年龄,指示旌旗山地区禄格庄岩组的主要物源为古元古代(2 200~ 2 100 Ma)中?酸性岩浆岩或再循环的产物,同时接受了少量太古宙的碎屑物质.综合胶?辽?吉带已发表的其他相关数据,认为以荆山岩群禄格庄岩组为代表的胶?辽?吉带南侧底部变沉积岩沉积时可能位于弧后盆地靠近岛弧一侧,以粉子山岩群小宋岩组为代表的胶?辽?吉带北侧底部变沉积岩则可能位于弧后盆地靠近太古宙大陆一侧.   相似文献   

13.
荆山群禄格庄组是胶北地体古元古代变沉积岩系最重要的组成部分之一,准确测定其原岩沉积时代与物质源区,对进一步探讨荆山群与粉子山群之间的成因关系具有重要的地质意义.以山东莱阳沐浴店地区出露的禄格庄组长石石英岩为研究对象,通过对长石石英岩中碎屑锆石内部矿物包体、阴极发光图像、LA-ICP-MS U-Pb定年与稀土元素组成的综...  相似文献   

14.
鲁西杨庄条带状铁建造特征及锆石年代学研究   总被引:3,自引:0,他引:3  
赖小东  杨晓勇 《岩石学报》2012,28(11):3612-3622
泰山群主要分布于鲁西地区中部,是鲁西花岗-绿岩带的一个重要组成部分。近年来,在沂水县杨庄发现了一定规模的沉积变质铁矿,铁矿层位赋存于柳杭岩组上段的斜长角闪岩段内。本文对杨庄铁矿BIF及侵入地层的岩浆岩进行锆石年代学测定,测定的含磁铁矿斜长角闪岩中锆石U-Pb年龄数据主要集中在2.6Ga附近,确定斜长角闪岩的形成年龄为2615±61Ma;铁矿顶板黑云母石英片岩的形成年龄小于2527±66Ma,该岩段又被晚期混合花岗岩穿插,其锆石年龄测定结果为2469±34Ma,所以推测黑云母石英片岩的形成年龄在2.5Ga附近。据此我们认为鲁西地区的"柳杭岩组"似可近一步解体为新太古的斜长角闪岩段(含磁铁矿建造)和古元古的表壳岩段(以片岩系为主)。混合花岗岩的形成年龄属于古元古代早期,似乎可以填补全球地质演化的静寂期 (2.3~2.5Ga)。以泰山群为代表的变质岩系在地下较深部位出现或者被中晚元古代盖层覆盖,为探讨华北克拉通早期演化和开展华北克拉通BIF型铁矿研究具有重要意义。  相似文献   

15.
五台群长期被多数学者作为新太古代地层,自下而上分为石咀亚群、台怀亚群和高凡亚群,但同位素年代学研究给出了一些古元古代年龄,致使五台群形成时代及地层划分对比方案悬而未决.全面收集了五台群已有同位素年龄数据,仅锆石U-Pb谐和年龄数据就有800多组.数据显示,高凡亚群包括洪寺组和羊蹄沟组,沉积时间不早于2331±38 Ma...  相似文献   

16.
On the southwestern margin of the Yangtze Block, the Dongchuan Group consists of slightly metamorphosed sedimentary rocks, including silty slate, argillaceous slate, clayey slate, arkose, dolomite, and minor volcanic rocks. To date, it is still a controversy over the depositional age and stratigraphic sequence of the Dongchuan Group. In this study, we analyzed five samples of meta-sedimentary rocks and one sample of meta-tuff from the Yinmin, Luoxue and Etouchang Formations of the Dongchuan Group in the Yuxi region for detrital zircon U-Pb ages and Lu-Hf isotope. The detrital zircon ages of the meta-sediments vary from 3073 to 1703 Ma, mainly clustered at three periods, from 1889 to 1840, 2490 to 2008 and 2878 to 2844 Ma. The youngest age peak of all the samples is ~1859 Ma, with the εHf(t) values of the zircons ranging from-20.3 to +4.3 and more than 90% being negative, indicating that the Paleoproterozoic crustal accretion on the southwestern margin of the Yangtze Block was dominated by reworking of the ancient crustal materials involved in the assembly and breakup of the Columbia supercontinent. Another important age range is between 2490 Ma and 2008 Ma, with εHf(t) values from-14.7 to +8.9 and 70% of them are negative, suggesting that the magmatism in the source area was also dominated by reworking and recycling of the ancient crustal materials, with minor juvenile mantle substances added. The detritus was probably derived from the Paleoproterozoic crystalline basement in the southern Yuxi region. The oldest peak age is ~2847 Ma and the εHf(t) values are from-7.7 to +7.0 with 50% of both positive and negative values, demonstrating a possible ~2.85 Ga ancient continental nucleus on the southwestern margin of the Yangtze Block and substantial growth in juvenile crust materials during this period. Besides, the weighted average age of the zircons from the meta-tuff of the Etouchang Formation is 1677 ± 14 Ma. Combining the previous research data and this study, we can constrain the depositional age of the Dongchuan Group in central Yunnan Province to the period from the late Paleoproterozoic to early Mesoproterozoic, slightly earlier than that of the Dongchuan Group in the Dongchuan area near to the southwestern Sichuan Province. The depositional age of the Dongchuan Group is older than that of the Kunyang Group.  相似文献   

17.
Located in the middle segment of the Trans-North China Orogen, the Fuping Complex is considered as a critical area in understanding the evolution history of the North China Craton (NCC). The complex is composed of various high-grade and multiply deformed rocks, including gray gneiss, basic granulite, amphibolite, fine-grained gneiss and marble, metamorphosed to upper amphibolite or granulite facies. It can be divided into four rock units: the Fuping TTG gneisses, Longquanguan augen gneisses, Wanzi supracrustals, and Nanying granitic gneisses. U-Pb age and Hf isotope compositions of about 200 detrital zircons from the Wanzi supracrustals of the Fuping Complex have been analyzed. The data on metamorphic zircon rims give ages of 1.82-1.84 Ga, corresponding to the final amalgamation event of the NCC, whereas the data for igneous zircon cores yield two age populations at -2.10 and -2.51 Ga, with some inherited ages scattering between 2.5 and 2.9 Ga. These results suggest that the Wanzi supracrustals were derived from the Fuping TTG gneisses (-2.5 Ga) and the Nanying granitic gneisses (2.0-2.1 Ga) and deposited between 2.10 and 1.84 Ga. All zircons with -2.51 Ga age have positive initial εHf values from +1.4 to +10.9, suggesting an important crustal growth event at -2.5 Ga through the addition of juvenile materials from the mantle. The Hf isotope data for the detrital zircons further imply that the 2.8 Ga rocks are important components in the lower crust, which is consistent with a suggestion from Nd isotope data for the Eastern Block. The zircons of 2.10 Ga population have initial εHf values of-4.9 to +6.1, interpreted as mixing of crustal re-melt with minor juvenile material contribution at 2.1 Ga. These results are distinct from that for the Western Block, supporting that the Fuping Complex was emplaced in a tectonic active environment at the western margin of the Eastern Block.  相似文献   

18.
The Wutai greenstone belt in central North China Craton(NCC) hosts a number of Precambrian gold deposits and ore occurrences. Based on the host rock association, these can be divided into Banded Iron Formation(BIF), meta-volcano-sedimentary and meta-conglomerate types. The two former types formed during ~2.5-2.3 Ga and the third one at ~1.85 Ga. The characteristics of these Precambrian gold deposits are broadly similar with those of the orogenic gold deposits. Based on available geochronological data, here we reconstruct the major tectonic events and their relationship with gold mineralization in the Wutai-Hengshan-Fuping region during Neoarchean to Paleoproterozoic as follows.(1)~2.6-2.5 Ga: widespread intrusion of tonalite-trondhjemite-granodiorite(TTG) magmas in the Hengshan terrane and Fuping continental arc, formation of the Wutai volcanic arc in the southern margin of Hengshan terrane with granitoids emplacement, and the Hengshan-Wutai intra-oceanic arc accretion to the Fuping arc at the end of Neoarchean.(2) ~ 2.5-2.3 Ga: the subduction of Hengshan arc from north leading to persistent magmatism and orogenic gold mineralization.(3)~2.2-2.1 Ga:extension leading to the formation of graben structure in the Wutai and Fuping region, deposition of the Hutuo and Wanzi Group sediments, formation of placer gold through erosion of the orogenic gold deposits.(4)~2.2-2.0 Ga: widespread magmatism in the Wutai-Hengshan-Fuping region.(5)~1.95-1.8 Ga: regional metamorphism associated with collision of the Western and Eastern Blocks of the NCC and associated orogenic gold deposits. The multiple subduction-accretion-collision history and subsequent deep erosion has significantly affected most of the Precambrian gold deposits in the Wutai greenstone belt.  相似文献   

19.
辽东半岛南辽河群锆石U-Pb年代学及其地质意义   总被引:20,自引:13,他引:7  
李壮  陈斌  刘经纬  张璐  杨川 《岩石学报》2015,31(6):1589-1605
本文报道了辽东半岛古元古代胶-辽-吉活动带南辽河群中变质火山岩和沉积岩的锆石U-Pb年代学数据。变质流纹岩的锆石具典型的岩浆振荡环带结构和较高的Th/U比值(0.3),锆石U-Pb年龄为~2.2Ga,该年龄可代表其原岩形成年龄,在误差范围内与古元古代辽吉花岗岩年龄一致,表明辽吉花岗岩并不是辽河群的基底。变质玄武岩的锆石阴极发光强度较弱、弱分带或无分带,同时具较低的Th/U比值(0.1),为典型的变质成因锆石,锆石U-Pb年龄为~1.9Ga,代表其变质时代。变质沉积岩的碎屑锆石年龄主要介于1981~3520Ma之间:峰期年龄为2033Ma和2092Ma的锆石年龄信息暗示辽东半岛至少存在一期2000~2100Ma的岩浆事件,并且该时期的中酸性岩浆岩是南辽河群沉积岩的一个重要物源;峰期年龄为2155Ma、2446Ma、2509Ma、2594Ma、2668Ma、2790Ma、3356Ma、3467Ma和3520Ma的锆石年龄信息,区域上与古元古代辽吉花岗岩、辽河群火山岩及太古宙基底年龄相吻合,暗示它们为南辽河群沉积岩提供了重要物源。沉积岩中最年轻的碎屑锆石U-Pb年龄为~2.0Ga,可代表其沉积时的最大年龄。所以,辽河群火山-沉积-变质的时限为2.2~1.9Ga,其演化时间约300Myr。结合前人有关辽东半岛前寒武纪岩石的研究成果,本文研究认为胶-辽-吉活动带的形成演化与弧-陆碰撞有关,而不是许多人坚持的裂谷环境。  相似文献   

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