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101.
华南由扬子板块与华夏板块在新元古代拼合而成,其拼合时间与演化模式一直广受争议。江南造山带是其重要的拼合带,带内保留一系列新元古代沉积作用-岩浆活动记录,是研究扬子板块与华夏板块拼贴碰撞时间与演化机制的理想场所。本文针对江南造山带东段陈蔡地区花岗闪长岩,开展了LA-ICP-MS锆石U-Pb年代学、全岩主微量元素及Sr-Nd同位素地球化学研究。代表性样品的~(206)Pb/~(238)U加权平均年龄为838±5Ma和836±4Ma,为花岗闪长岩的原岩结晶年龄。样品K_2O含量为1.30%~2.57%,铝饱和指数(A/CNK)为1.01~1.54,为钙碱性过铝质花岗闪长岩。样品高Si O_2(63.38%~68.97%)、Al_2O_3(15.30%~16.70%)、Na_2O(3.89%~6.24%)、Sr(306×10~(-6)~628×10~(-6))、Sr/Y(26~80)和低Mg O含量(0.64%~1.99%)、K_2O/Na_2O(0.17~0.64)、低Y含量(3.38×10~(-6)~16.10×10~(-6))和Yb含量(0.42×10~(-6)~1.67×10~(-6)),δEu异常不明显,相对富集轻稀土和大离子亲石元素、强烈亏损重稀土和高场强元素、低~(87)Sr/~(86)Sr初始值(0.7015~0.7022)和高ε_(Nd)(t)值(+4.10~+6.13),具有与高硅埃达克岩相似的特征。结合区域构造演化背景,认为陈蔡花岗闪长岩是扬子板块与华夏板块之间的古洋壳向双溪坞陆弧地体俯冲的过程中,俯冲板片熔体被少量地幔楔橄榄岩同化和交代的产物,暗示838~836Ma时江南造山带东段仍处于俯冲消减阶段,扬子与华夏尚未完成最终拼合。综合现有证据,认为扬子与华夏在江南造山带各区段于ca.825~820Ma完成拼合。  相似文献   
102.
浙西北建德地区休宁组(原称志棠组)是华南新元古代的重要地层单元之一,但其沉积时限和区域对比关系长期存在争论。本文对采自休宁组下部和上部的凝灰岩进行了LA-ICP-MS锆石U-Pb定年,获得两件凝灰岩样品的形成年龄分别为785.0±2.8Ma(MSWD=0.85,n=37)和727.5±7.3Ma(MSWD=0.64,n=7)。结合前人研究成果认为,休宁组沉积时限为~800Ma至~728Ma;野外沉积学研究表明,休宁组沉积构造发育,主体属于正常气候条件下的冲积扇和滨浅海(湖)沉积,非南华冰期地层;区域上,休宁组与板溪群及其相当地层的中上部、莲沱组、苏雄组/开建桥组、澄江组沉积时限基本相当,与下冰期(Sturtian冰期)长安组不存在对比关系,应明确为华南"四堡造山运动"不整合面之上、南华冰期之下的一套裂谷充填序列。  相似文献   
103.
赣西北九岭南缘宜丰岩组是江南造山带的一个重要地层单元,但其沉积时限和区域地层对比关系尚不确定。本次1∶5万区调工作中,在万载—宜丰一带宜丰岩组地层中发现有呈夹层产出的变英安岩、变凝灰岩。SHRIMP锆石定年表明,变英安岩、变凝灰岩分别形成于835.0±7.8Ma和830.3±9.5Ma。结合宜丰岩组底部凝灰质砂岩最年轻的一组碎屑锆石U-Pb年龄852.9±2.6Ma,认为宜丰岩组沉积时限为~853 Ma至~830Ma,表明宜丰岩组主体形成于新元古代早期。锆石Hf同位素显示,εHf(t)变化范围较大,为-16.02~+12.04,总体以正值为主。最为接近亏损地幔成分的5个锆石颗粒的εHf(t)变化范围为+9.65~+12.04,具有最年轻的Hf二阶段模式年龄0.95~1.09Ga,与成岩年龄差距不大,表明源区中可能有新生地壳物质的加入。野外沉积学研究表明,宜丰岩组浊流沉积构造发育,主体属于半深海大陆斜坡沉积。区域上,宜丰岩组与溪口岩群、双桥山群、冷家溪群、西村岩组、南桥岩组、苍溪岩组沉积时限基本相当,沉积环境相似,应明确为华南"晋宁运动"不整合面之下的一套弧后盆地环境产物。  相似文献   
104.
蔡志慧  马绪宣  何碧竹 《地质学报》2019,93(10):2426-2445
长久以来,中国主要陆块被普遍认为比世界其他陆块开始参与罗迪尼亚超大陆聚合的时间较晚,为新元古代早期。为了探讨此问题,我们选择中国中天山、伊犁及塔里木地块作为主要研究对象,系统分析了新元古代早期(1.0~0.8Ga)的构造变形及岩浆特征。新元古代早期构造变形主要表现为拉伸线理近平行于造山带方向,反映了后造山陆内走滑剪切过程。1.0~0.8Ga的岩浆岩皆为较小规模花岗岩,未见基性包体,矿物组合中基本无角闪石,具有高钾钙碱性和过铝质特征,并含有大量捕获老锆石,说明古老基底或重熔地壳的显著参与。岩石源区主要为重熔基性下地壳,在构造背景判别图上基本落在后造山环境。锆石Ti及全岩Zr温度计算结果显示这些岩体的结晶温度普遍偏高,约800℃。结合已有区域地质资料,我们认为:①在新元古代原塔里木陆块(包括早期中天山、伊犁及塔里木地块)已经位于罗迪尼亚超大陆内部,1.0~0.8Ga变形及岩浆记录皆反映了原塔里木陆块与其它陆块碰撞后的构造事件;②由于超大陆聚合后的热毯效应使得新元古代早期花岗岩结晶温度偏高;③中天山、伊犁及现今塔里木地块最初参与罗迪尼亚超大陆汇聚的时间应早于新元古代(1.0Ga)。  相似文献   
105.
滇中昆阳群一直是华南前寒武纪地质研究的热点之一,其地层序列、时代与区域对比长期存在争议。通过对滇中易门县小街乡普家村-岔河水库剖面禄表组2个凝灰岩样品进行SHRIMP锆石U-Pb定年,获得禄表组凝灰岩的锆石206Pb/238U年龄为878.5±4.7Ma和878.0±4.0Ma,首次证实禄表组的形成时代为新元古代中期。禄表组凝灰岩SHRIMP锆石U-Pb年龄的获得,有利于正确认识昆阳群的划属关系,并为西南地区青白口纪地层格架的建立和对比提供可靠的年代学依据。  相似文献   
106.
The exploration of the Cryogenian manganese deposits in the Datangpo Formation of South China has achieved great progress in recent years. It is concern in the long term there are many studies on this manganese deposits due to its particularity in the temporal and spatial distribution and the mineralization background. In this paper,we systematically summarize the previous achievements on the Datangpo-type manganese deposits. Besides,we also review current findings of Neoproterozoic global geotectonics,palaeoclimate evolution,ancient marine chemistry,and microbial evolution etc. The possible linkage between the massive metallogenesis of the Cryogenian Datangpo manganese deposits in the South China and Neoproterozoic major geological events is established. The break-up of Rodinia supercontinent led to the widespread rift basin systems in the world since the Middle Neoproterozoic. The Nanhua Basin in South China,which is a manganese-forming sedimentary basin,developed from the rift basin. The rift basin provided space for manganese deposits and controlled the distribution of manganese deposit. The hydrothermal activities at the bottom of the basin provided favorable manganese source. During the Neoproterozoic ice period(“Snowball Earth”event),global ice-sheets cut off or hindered exchanges of mass and energy between different spheres of Earth,which may lead to the widespread anoxic condition in the ice age ocean. The palaeoclimate changes during the glacial-interglacial period led to the disappearance of ice-sheets and the triggering of mass and energy exchanges between different sub-systems of Earth,followed by the variation of redox condition of the ancient sea. For the Nanhua Basin,the oxidation of surface water and the oxygen-bearing base flow provided the oxidation environment for the precipitation of manganese. Besides,new evidence indicated that manganese microbiological mineralization was the potential mechanism for manganese deposit under the microbial resuscitation condition during the interglacial period. All these major geological events have complicated connections and they provided essential metallogenic conditions for the sedimentary mineralization of “Datangpo”manganese deposit. It is believed that there is a coupling between the sedimentary metallogenesis of the Cryogenian Datangpo-type manganese deposit in South China and Neoproterozoic major geological events.  相似文献   
107.
徐通  张晓团  焦建刚  张红强  贾力 《地质学报》2020,94(12):3607-3624
纸房沟岩片位于勉略构造带略阳地区。通过细致的岩石学和地球化学研究,将纸房沟岩片内的火山岩分为拉斑玄武岩系列(Ⅰ类)和钙碱性火山岩系列(Ⅱ类)。Ⅰ类火山岩稀土配分曲线左倾,富Na贫P,整体具有N- MORB特点,形成于洋脊构造环境。相比Ⅰ类火山岩,Ⅱ类火山岩具有更高的SiO2(49.02%~61.86%)和K2O(0.32%~1.55%)含量,相对亏损Nb、Ta、P和Ti,形成于陆缘弧构造环境。Ⅱ类火山岩锆石Lu- Hf同位素测试结果显示,εHf(t)值主体为负值,介于-8.01~+0.77,表明其主要为古老地壳物质熔融成因。Ⅱ类火山岩LA- ICP- MS锆石U- Pb测年结果为854±3Ma(MSWD=0.12, n=30)、844±4Ma (MSWD=0.03, n=15),表明纸房沟岩片火山岩结晶时代为新元古代早中期。综合前人成果认为,纸房沟岩片火山岩为新元古代勉略洋盆俯冲的产物,俯冲作用一直持续到800Ma左右,该俯冲过程很可能是对全球性Rodinia超大陆聚合事件的响应。  相似文献   
108.
新元古代末期是生命演化的关键转折期,也是以微生物占主导的生态系统向显生宙以后生动物占主导的生态系统的转变期,埃迪卡拉纪大型软躯体生物以固着、底栖、食悬浮为特色,普遍缺乏运动能力。作为这一时期特殊代表的高家山生物群,是目前新元古代唯一一个以黄铁矿化三维保存的管状和锥管状化石为主导,兼有骨骼生物、原生动物、钙化蓝细菌类及遗迹化石的多门类生物组合,是研究埃迪卡拉纪末期生命演化和生态系统演变十分重要的载体。本文通过对高家山生物群古生态学的初步研究,揭示出在前寒武纪—寒武纪之交,生态系统已显示一定的多样性。为适应平底面上(level-bottom)微生物席的发育,高家山生物群的许多生物采取了适应性的生存策略,通过黏附或插入微生物席中,营底栖固着食悬浮(如CloudinaConotubus)或化学共生(可能的Shaanxilithes)或平躺(如GaojiashaniaSinotubulites)食碎屑生活。底内遗迹化石表明存在可能的表栖和半内栖、可自由运动、食碎屑的造迹生物。Conotubus中常见的“回春”或“复苏”现象,GaojiashaniaSinotubulites的身体扭转或生活姿态调整则是对频繁风暴事件的被动适应。  相似文献   
109.
《地学前缘(英文版)》2020,11(6):2243-2269
The Gurupi Belt, in north-northeastern Brazil, is a mobile belt developed in the south-southwestern margin of the São Luís cratonic fragment and crops out as a tectonic and erosional window within the Phanerozoic cover. Field, petrographic, geochemical, geochronological, and Nd isotopic information (new and published) constrain the timing and types of magmatic associations present in the belt and the tectonic settings in which they formed. The Rhyacian was the main period of magmatic activity, which can be grouped into two main stages. (1) ~2185–2130 ​Ma: pre-collisional, juvenile, calc-alkaline magnesian and calcic ferroan granitoid suites, and minor calc-alkaline and tholeiitic mafic plutonism (now amphibolites), formed in intra-oceanic to transitional/continental arcs; and intra- or back-arc volcano-sedimentary basin. (2) ~2125–2070 ​Ma: syn- (two-mica granites) to late-collisional (potassic to shoshonitic granites and quartz-syenite) plutonic suites produced after crustal thickening and melting, with localized migmatization, that intruded during the compressive D1 deformational phase and concomitantly with greenschist to amphibolite metamorphism. There is a zonation of the Rhyacian episodes, with intra-oceanic stages occurring to the northeast, and the continental arc and collisional phases occurring to the southwest, indicating the presence of an active continental margin to the southwest, and subduction from NE to SW (present-day configuration). This magmatic framework is a continuation to the south of what is described for the São Luís cratonic fragment to the north, and the orogenic scenario is identical to what is observed for the same period in the West African Craton (Eburnean/Birrimian orogen), which additionally supports previous geological correlations. In the Neoproterozoic, a few magmatic occurrences are recognized. An extensional event allowed the intrusion of an anorogenic, nepheline syenite at ca. 730 Ma, which was followed by the intrusion of a crustal, calc-alkaline microtonalite, of uncertain tectonic setting, at 624 ​Ma. Both intrusions underwent greenschist to amphibolite facies metamorphism between 580 Ma and 529 ​Ma. This metamorphic event is probably related to crustal thickening, which produced crustal melting and intrusion of two-mica granites between 595 Ma and 549 ​Ma. The absence of oceanic and arc-related assemblages, along with geophysical information about the basement of the Phanerozoic cover indicates an intracontinental setting for the Neoproterozoic–Early Cambrian evolution of the Gurupi Belt, with rifting and posterior closure of the basin, without oceanization. Rifting and closure correlate in time with the onset of Rodinia breakup and West Gondwana assembly, respectively, but we interpret the events in the Gurupi Belt as having no direct role in these two global supercontinent-related events, but, instead, as being related to orogenic events occurring in the periphery of the West African and Amazonian cratons at that time.  相似文献   
110.
新元古代沂沭海峡位于郯庐断裂带昌邑—大店断层西侧宽60~90,km、长300,km的区域内,其分布范围基本与郯庐断裂带中段一致。新元古代,该海峡盆地先后沉积了青白口系、南华系及震旦系的滨—浅海相陆源碎屑、泥质及碳酸盐沉积物,其岩石地层称之为土门群。本次研究从该海峡盆地土门群佟家庄组(由石英砂岩、泥灰岩和页岩组成,属南华系)、浮来山组(由细—粉砂岩夹页岩组成,属震旦系)及石旺庄组(主要由碳酸盐岩组成,下部夹页岩,属震旦系)中鉴别出了一系列地震触动软沉积物形成的变形构造,包括液化砂墙和砂脉、负载构造、火焰构造、球枕构造、软布丁构造、底辟构造、滑塌褶曲和同沉积断层等。它们是地震事件的记录——震积岩。新元古代中晚期(约800—600,Ma)沂沭海峡盆地拉张裂陷是它们形成的动力机制。根据石旺庄组中的微亮晶方解石脉与地震成因的变形构造(如负载、火焰、软布丁及同沉积断层等)共(伴)生的事实,并结合模拟地震试验结果分析,认为微亮晶方解石脉很可能是地震引发的饱和灰泥(方解石微粒)液化脉。微量化学元素分析结果表明,这些震积岩中的w(La)/w(Sc)和 w(La)/w(Th)值高于上地壳平均值和正常沉积层,而w(Th)/w(Sc)值则较低,深源微量元素Ni和Cr的含量也高于上地壳平均值及正常沉积层。这些微量元素特征是当时的盆地基底不稳定、快速沉积且伴有深部物质元素混入的反映,强地震很可能是快速沉积和促进深源物质混入的主要动力。土门群中发育的一系列地震引起的软沉积物变形(震积岩),再次证明了古郯庐断裂带的存在,由它们记录的地震事件也是晋宁运动乃至Rodinia超大陆的裂解的响应。  相似文献   
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