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1.
作为中亚造山带的重要组成,阿拉善地块北缘已成为研究古亚洲洋构造演化历史的关键地区。本次工作对阿拉善地块北大山地区两类辉长岩进行LA-ICP-MS锆石U-Pb测年,获得成岩年龄分别为293±2Ma和267±2Ma,为早、中二叠世。早二叠世辉长岩为堆晶岩,呈亚碱性,拉斑玄武质,高Mg#值(64)、Eu显著正异常、极低的REE、富集大离子亲石元素(Ba、K、Sr),亏损高场强元素(Th、Nb、Ta、Hf、Zr),锆石的εHf(t)平均值为0.91,以上特征显示其岩浆源区为受俯冲板片混染或交代的岩石圈地幔,形成于俯冲相关的挤压环境;中二叠世辉长岩呈碱性、富集大离子亲石元素(Ba、K)和稀土元素,但Nb、Ta等高场强元素亏损不明显,锆石的εHf(t)平均值为3.5,显示其岩浆源区为受陆壳混染的亏损地幔,形成于大陆板内拉张环境。综合本文及前人研究成果,认为阿拉善地块北缘存在一条西起龙首山,东到狼山的晚古生代(328~262 Ma)超基性—基性岩浆带,其形成与古亚洲洋的俯冲—闭合—造山后伸展过程相关。在晚石炭世—早二叠世晚期,阿拉善地块北缘为大洋俯冲环境,到早二叠世晚期—中二叠世进入大陆板内拉张环境,限定了古亚洲洋在阿拉善地块北缘的最终闭合时代为早二叠世晚期—中二叠世。  相似文献   

2.
那丹哈达增生杂岩为中国东部古太平洋板块俯冲最为可靠的地质记录之一,对限定古大洋板块的西向俯冲具有重要意义。跃进山杂岩位于那丹哈达增生杂岩的增生前锋位置,发育典型的增生杂岩组合。其中变玄武岩类多呈构造透镜体状与硅质岩、片理化泥岩和片岩相伴产出,部分可见变余枕状构造。本文对位于研究区北部勤得利和南部东方红地区的3件变玄武岩样品进行了同位素年代学和地球化学研究。变玄武岩样品中含有数量不等的锆石,多呈自形-半自形,条带结构,结合其较高Th/U比值(0.15~2.4),暗示其具有典型的基性岩岩浆锆石特征。锆石LA-ICP-MS U-Pb年代学证据显示跃进山杂岩中的变玄武岩形成于270±2 Ma~279±4 Ma,表明其原岩形成时代应为早二叠世。地球化学分析显示,跃进山杂岩南、北地区的地球化学组成略有不同,北部勤得利地区的变玄武岩具有富Na2O,贫Mg O,轻度富集轻稀土元素,富集大离子亲石元素Sr和Ba,亏损高场强元素Nb等特征,南部东方红地区变玄武岩具有贫Na2O、K2O和Mg O,亏损轻稀土元素和富集大离子亲石元素Rb、Sr等特征,结合构造判别图解,北部勤得利地区变玄武岩形成于消减带或俯冲带(SSZ)构造背景下,而南部东方红地区变玄武岩显示为N-MORB型,形成于大洋中脊(MOR)环境。结合前人资料及北部勤得利地区岩石的年代学与地球化学研究确定了佳木斯地块与那丹哈达地体之间的缝合线的具体位置为勤得利-二龙山-尖山子乡—线,并对该岩浆岩演化的动力学背景进行了初步分析。  相似文献   

3.
本文报道了佳木斯地块东部方山花岗岩体的锆石LA--ICP--MS U--Pb定年结果、全岩地球化学特征,确定了花岗质岩石的形成时代以及大地构造背景。花岗岩的锆石主要呈自形-半自形晶,振荡环带发育,Th/U在0.26~1.16之间,显示其典型的岩浆成因;测年结果表明这些花岗岩形成于早二叠世(278 Ma,277 Ma)。方山花岗岩呈现出弱过铝质高钾钙碱性的地球化学特征,这些岩石轻稀土富集,重稀土亏损,具有Eu负异常,富集大离子亲石元素(Rb、K等),相对亏损高场强元素(Nb、Ta、P、Zr和Ti)。该区花岗岩地球化学特征与佳木斯东缘二叠纪的美作、青山、楚山、柴河、石场、锦山等岩体相似,体现出火山弧型花岗岩的特征。结合区域研究资料,我们认为佳木斯地块东缘在早二叠世期间为活动大陆边缘。  相似文献   

4.
滇西南澜沧江带的热水塘—龙洞河一带的沉积-岩浆岩组合被认为是反映昌宁-孟连洋开始俯冲阶段"弧前-弧-弧后"古地理格局的典型代表。本文对该体系中出露于热水塘一带的辉长岩进行了矿物学、岩石地球化学、年代学及锆石Hf同位素研究。热水塘辉长岩中单斜辉石组成为Fs16~18,Wo42~45,En38~42,Mg#Cpx=69~72。根据单斜辉石与岩浆间Fe-Mg分配关系计算,单斜辉石结晶时,其母岩浆的Mg#范围约为31~40,低于其全岩Mg#范围(约45~50),表明热水塘辉长岩全岩化学组成特征受到了矿物堆晶作用的影响。热水塘辉长岩全岩轻稀土元素弱富集,无明显Eu正异常,大离子亲石元素相对富集而高场强元素亏损。辉长岩的矿物学及岩石地球化学特征表明该岩体形成于火山弧构造背景,为火山弧玄武质岩浆经较高程度分异和斜长石分离结晶的产物。LA-ICP-MS锆石U-Pb测年结果显示辉长岩体形成于早二叠世早期(295 Ma±4 Ma),锆石Hf同位素分析显示其εHf(t)=7.5~14.0,平均为10.7,低于其结晶时的亏损地幔值。热水塘辉长岩的形成应与早二叠世早期昌宁-孟连洋在思茅地体西缘热水塘地区自西向东发生俯冲有关。  相似文献   

5.
晨明岩体位于小兴安岭东南段,其岩石组合为花岗闪长岩和二长花岗岩。所测定样品中的锆石均具有振荡生长环带,结合Th /U 比值,表明这些锆石为岩浆成因,LA--ICP MS U--Pb 测年结果显示,其形成时代分别为432. 8 ± 1. 2 Ma 和431. 9 ± 1. 7 Ma,即早志留世。晨明岩体的地球化学特征显示,其属于高钾钙碱性系列,ACNK 值为1. 16 ~ 1. 40,属于过铝质花岗岩; 微量元素表现出富集大离子亲石元素( Rb、Ba、U 和Th) 和轻稀土元素,亏损高场强元素( Nb、Ta、Ti) 和P、Sr 以及重稀土元素。上述地球化学特征暗示其主要来源于下地壳物质的部分熔融,样品的过铝质特征暗示其形成于陆壳加厚环境。结合前人研究成果,认为晨明岩体形成于松嫩地块和佳木斯地块的碰撞拼合环境,即松嫩地块和佳木斯地块可能在早志留世碰撞拼合。  相似文献   

6.
为加深对中亚造山带东段晚古生代构造背景的认识,选取内蒙古索伦山蛇绿岩中较新鲜的玄武岩和辉长岩开展岩相学、年代学和地球化学研究。结果表明,玄武岩和辉长岩的LA-ICP-MS锆石U-Pb谐和年龄分别为(276.4±1.4) Ma和(273.9±3.3) Ma,形成于早二叠世。二者均为亚碱性拉斑系列,Mg~#分别变化于41~50和62~65之间,均低于幔源原生岩浆值;主量元素与SiO_2含量之间具有一定的线性关系,反映岩浆演化过程中分离结晶占主要地位。两种岩石的Th/La、Th/Ce和Lu/Yb值均低于大陆地壳的平均值,而与幔源岩浆的比值接近,推测岩浆演化过程中地壳混染的影响不大。稀土元素组成上,玄武岩表现为轻稀土亏损的N-MORB特征,可能起源于尖晶石二辉橄榄岩亏损地幔的5%~10%部分熔融;辉长岩具有轻稀土略亏损、整体平坦的稀土特征,但稀土元素总量明显比N-MORB更亏损,是源区熔融程度更大所致。此外,二者都富集K、Sr、Ba和Pb等大离子亲石元素而亏损Nb、Ta等高场强元素,具有岛弧岩浆特征,指示它们遭受了俯冲板片含水流体或者俯冲沉积物熔体的影响。上述岩石地球化学特征表明,索伦山蛇绿岩应为俯冲带上盘(SSZ)型,推测其形成于洋内弧后盆地。索伦山SSZ型蛇绿岩的存在说明该区早二叠世仍存在洋内俯冲,综合分析认为古亚洲洋在晚二叠世—早三叠世沿索伦—西拉木伦一线闭合。  相似文献   

7.
内蒙古雅布赖地区位于阿拉善地块北缘,雅布赖—诺日公—红谷尔玉林构造带西端,对该地区辉长岩产出年代、地球化学特征进行研究,结果表明:锆石U-Pb同位素测年结果为(273.2±1.0)Ma,显示其形成于早二叠世晚期,稀土元素配分曲线右倾,轻重稀土分馏较明显,Eu异常不明显(δEu为0.93~1.15);微量元素原始地幔标准化蛛网图中相对富集大离子亲石元素,亏损高场强元素;可能形成于古亚洲洋向南俯冲环境,并在成岩过程中受到了明显的陆壳物质的混染。  相似文献   

8.
青海玉树地区出露一套晚古生代—早中生代的蛇绿混杂岩。其中,让娘贡巴辉长岩的锆石SHRIMP U-Pb年龄为258.4±2.9 Ma,表明该岩石形成于晚二叠世。地球化学特征表明,岩石具有富碱,高TiO2、Fe2O3的主量元素特征,稀土元素总量相对较高,富集轻稀土元素,(La/Yb)N=5.09~5.52,与原始地幔相比,富集大离子亲石元素(Rb、Ba、Th、K)及高场强元素(Nb、Ta、Zr、Hf)。综合研究表明,让娘贡巴辉长岩的形成环境为洋岛,这足以表明,至少在晚二叠世时,玉树地区已经存在洋壳。  相似文献   

9.
本文对华北板块北缘东段大河深组、关门咀子组火山岩进行了锆石LA-ICP-MSU-Pb定年和岩石地球化学研究以便制约该区的区域构造演化。大河深组和关门咀子组火山岩中的锆石均呈自形-半自形晶,具有清晰的岩浆振荡生长环带和条痕状吸收(玄武安山岩)的特点,其Th/U比值高达0.31~1.56,表明其岩浆成因。测年结果表明,桦甸大河深组流纹岩形成于早二叠世(279±3Ma~293±2Ma),珲春和图们关门咀子组玄武安山岩和玄武岩分别形成于早二叠世(275±7Ma)和晚二叠世(250±5Ma)。大河深组火山岩SiO2含量介于64.9%~75.4%,Mg#值介于0.21~0.57,属于中钾-高钾钙碱性系列,明显富集轻稀土元素(LREEs)和大离子亲石元素(LILEs)、亏损高场强元素(HFSEs,如Nb、Ta、Ti)以及P元素,类似活动大陆边缘火山岩;其锆石的εHf(t)值为+0.9~+10.37,Hf同位素二阶段模式年龄值为785~1240Ma,表明它们均起源于中-新元古代新增生玄武质下地壳的部分熔融。珲春早二叠世关门咀子组属于中钾钙碱性系列;贫硅(53.4%~53.7%)和HFSEs,富铝(16.4%~16.8%)和LILEs,具有较低的稀土元素总量,以及较平坦的稀土配分型式,显示出岛弧火山岩的地球化学属性;该组火山岩的原始岩浆应起源于受俯冲板片脱水熔融交代的亏损地幔楔。图们晚二叠世关门咀子组玄武岩SiO2含量为48.7%~49.6%,Mg#值高达0.64~0.72,相对富集LREEs和LILEs,亏损HREEs和HFSEs,具有火山弧玄武岩的地球化学属性,同时其εNd(t)=+6.01,暗示其原始岩浆起源于亏损的岩石圈地幔。综上所述,我们认为早二叠世至晚二叠世期间,华北板块北缘东段(吉林中部地区)和兴凯地块西南缘均处于古亚洲洋的俯冲作用下。  相似文献   

10.
东北地区古生代经历了古亚洲构造域演化,中生代经历了蒙古-鄂霍茨克构造域向西太平洋构造域的转换,这期间形成了不同期次的岩浆活动。本文对松辽盆地西缘吉林省白城市岭下地区的花岗质糜棱岩首次进行了锆石LA-ICP-MS U-Pb年代学和岩石地球化学研究,确定其侵位时代、岩石成因,从而揭示区域构造背景及转换机制。岭下地区花岗质糜棱岩中的锆石多呈半自形-自形,振荡生长环带明显,暗示其岩浆成因。测年结果显示,花岗质糜棱岩原岩形成于281.9±7.4Ma和296.2±2.7Ma,为早二叠世岩浆事件的产物。岩石具有高硅(SiO2=64.10%~75.98%)、富铝(Al2O3=11.22%~16.00%)、贫铁(Fe2O3多介于0.23%~0.85%)等特征,在地球化学上属于准铝质-过铝质(A/CNK=0.97~1.19)系列。岭下地区花岗质糜棱岩相对富集轻稀土元素(LREE)和大离子亲石元素(LILE),亏损重稀土元素(HREE)和高场强元素(HFSE)。上述特征表明,岭下地区花岗质糜棱岩的岩浆起源于高温高压下加厚陆壳物质脱水的部分熔融。结合区域地质特征,岭下地区早二叠世花岗质糜棱岩的侵位应与古亚洲洋闭合过程中的弧后拉张体制有关;花岗质糜棱岩的变质岩浆热事件年龄(157~153Ma)与蒙古-鄂霍茨克洋的挤压闭合事件有关;而花岗质糜棱岩的主变形时代(137~117Ma)为早垩世早中期,其限定了西太平洋伊泽奈崎板块向欧亚大陆的斜向俯冲的起始时间。  相似文献   

11.
Controversy has long surrounded the tectonic framework and evolution of the Mudanjiang Ocean between the Bureya–Jiamusi–Khanka Massif and Songnen–Zhangguangcai Range Massif, which are located in the easternmost segment of the Central Asian Orogenic Belt. To address these issues, we present zircon U-Pb ages, geochemical data, and zircon Hf isotopic compositions of the Taipinggou amphibolite and metagabbro exposed along the boundary area of Bureya–Jiamusi Massif and Songnen–Zhangguangcai Range Massif. Magmatic zircons from the amphibolite and metagabbro yield 206Pb/238U ages of 267 ± 2 Ma and 264 ± 2 Ma, respectively, which are interpreted as protolith ages. The geochemical data of the amphibolite samples show transitional characteristics of calcalkaline to tholeiitic series, with high MgO concentrations (9.44–10.48 wt.%) and Mg-numbers (73–75). These samples are enriched in large ion lithophile elements (e.g. Rb, Ba, and K) and light rare earth elements and are depleted in high-field-strength elements (e.g. Nb, Ta, and Ti) and heavy rare earth elements, with εHf(t) values of ?6.63 to ?3.26. It is inferred that the parental magma originated from an enriched lithospheric mantle that had been metasomatized by fluids derived from subducted oceanic slab. During magma evolution, the magma that formed the amphibolite mainly experienced accumulation with a shallow-level evolutionary process involving fractional crystallization. The Taipinggou metagabbro samples are subalkaline series and also characterized by enrichment in large ion lithophile elements (e.g. Rb, Ba, and K) and light rare earth elements and by depletion in Nb–Ta–P–Ti, with εHf(t) values of ?3.09 to +1.16. The Taipinggou metagabbro and amphibolite have similar geochemical and Hf isotopic compositions, indicating a common parental magma source but with different degrees of magmatic differentiation. Based on the new geochronological and geochemical data presented in this study, we propose that both the Taipinggou metagabbro and amphibolite formed in a Middle Permian continental arc setting, closely related to eastward subduction beneath the Bureya–Jiamusi Massif. Combined with previous studies and regional geological observations, we suggest that a double-side subduction model is favoured for the Late Palaeozoic–Early Mesozoic geodynamic processes along the boundary area of Bureya–Jiamusi–Khanka Massif and Songnen–Zhangguangcai Range Massif.  相似文献   

12.
New U–Pb and Sm–Nd isotope data have been obtained in the Kandalaksha–Kolvitsa zone, Baltic Shield, on accessory zircon and rutile, along with whole-rock and secondary metamorphic minerals. Isotope U–Pb age of single zircon grains from metagabbro of the Kandalaksha Anorthosite Massif is 2453.5 ± 4.8 Ma, which is close to the U–Pb age of zircon from the Kolvitsa Massif metagabbro (2448 ± 5 Ma). For the first time, REEs in zircon grains of the Kandalaksha metagabbro have been analyzed and the results have been plotted. Ti-in-zircon thermometry has been applied using LA–ICP–MS: it yielded an average temperature of zircon crystallization of 844°C. The isotope and geochemical new data obtained indicate a magmatic genesis of the zircon crystals studied.  相似文献   

13.
Laser ablation-inductively coupled plasma mass spectrometry (LA-ICP-MS) zircon U-Pb dating and geochemical data for the Permian gabbros and diorites in the Hunchun area are presented to constrain the regional tectonic evolution in the study area. Zircons from gabbro and diorite are euhedral-subhedral in shape and display fine-scale oscillatory zoning as well as high Th/U ratios (0.26–1.22), implying their magmatic origin. The dating results indicate that the gabbro and diorite formed in the Early Permian (282±2 Ma) and in the Late Permian (255±3 Ma), respectively. In addition, the captured zircons with the weighted mean age of 279±4 Ma are also found in the diorite, consistent with the formation age of the gabbro within uncertainty. The gabbros belong chemically to low-K tholeiitic series, and are characterized by low rare earth element (REE) abundances, flat REE pattern, weak positive Eu anomalies (δEu), and depletion in high field strength elements (HFSEs, Nb, Ta, and Ti), similar to the high-aluminum basalts from island arc setting. Initial Hf isotopic ratios of zircons from the gabbro range from +7.63 to +14.6, suggesting that its primary magma could be mainly derived from partial melting of a depleted lithospheric mantle. The diorites belong to middle K calc-alkaline series. Compared with the gabbros, the diorites have higher REE abundance, weak negative Eu anomalies, and more depletion in HFSEs (Nb, Ta, and Ti), similar chemically to the volcanic rocks from an active continental margin setting. Initial Hf isotopic ratios and Hf two-stage model ages of zircons from the diorite range from +11.22 to +14.17 and from 424 to 692 Ma, respectively, suggesting that its primary magma could be mainly derived from partial melting of the Early Paleozoic and/or Neoproterozoic accretted lower crust. Taken together, it is suggested that geochemical variations from the Early Permian gabbros to the Late Permian diorites reveal that the subduction of the Paleo-Asian oceanic plate beneath the Khanka Massif and collision between the arc and continent (Khanka Massif) happened in the late stage of the Late Paleozoic.  相似文献   

14.
黑龙江省东部马家街群碎屑锆石年代学及其大地构造意义   总被引:2,自引:0,他引:2  
赵亮亮  王宗起  张兴洲 《岩石学报》2014,30(6):1769-1779
马家街群分布在黑龙江省东部佳木斯地块桦南隆起的西南缘,主要由一套经历了接触变质作用的富铝、富碳沉积碎屑岩所组成。区域上,这套接触变质岩系具有变质矿物分带特征,由西向东依次出现十字石、红柱石、石榴石和黑云母。红柱石碳质板岩和石榴云母石英片岩2件样品获得的LA-ICP-MS U-Pb碎屑锆石年龄谱均显示有272~310Ma、479~533Ma和>800Ma三组年龄。根据两件样品显示的最小年龄均未小于272Ma,而且二者的最小年龄组(272~310Ma)具有类似的峰值年龄,分别为276Ma和279Ma,这限定了马家街群主体岩石沉积年龄的下限应在中二叠世之前。侵入马家街群的花岗岩的锆石年龄为259Ma,说明其接触变质作用时代为晚二叠世早期,限定了马家街群形成时代的上限。479~533Ma年龄组中,2件样品的峰值年龄分别为499Ma和522Ma,这是佳木斯地块麻山群中最为重要的高级变质和花岗质岩浆作用年龄。>800Ma的年龄组具有多个峰值年龄,说明源区(佳木斯地块)具有前寒武纪-早前寒武纪地壳。上述证据表明,马家街群是晚二叠世早期形成的一套接触变质岩系,而非前寒武纪区域变质岩系。鉴于479~533Ma的麻山群在佳木斯地块中普遍存在,说明以麻山群为代表的早古生代变质结晶岩系既是马家街群沉积的基底,也是重要的物源区;而276~279Ma的早二叠世火山岩在佳木斯地块东缘分布广泛,表明其对马家街群的沉积也具有一定的贡献。  相似文献   

15.
This study presents new secondary-ion mass spectrometry (SIMS) rutile and laser ablation–inductively coupled plasma–mass spectrometry (LA–ICP–MS) zircon U-Pb geochronological and whole-rock geochemical data for amphibolites of the Heilongjiang Complex, located within the Yilan area of NE China, to constrain the tectonic evolution of the Mudanjiang Ocean between the Songnen–Zhangguangcai Range and Jiamusi massifs. Magmatic zircon from amphibolites collected from the Yilan Marble Quarry yields a weighted mean 206Pb/238U age of 274 ± 2 Ma, which is interpreted as the protolithic age. Amphibolites from the Longlangang and Tuanshanzi areas yield rutile U-Pb ages of 177 ± 11 Ma and 172 ± 5 Ma, respectively, which are interpreted to reflect the cooling of these rocks below the closure temperature of Pb diffusion in rutile. Amphibolites from the Yilan Marble Quarry are enriched in light rare earth elements (LREEs) and depleted in high field strength elements (HFSEs; e.g., Nb, Ta and P) relative to large ion lithophile elements (LILEs). Amphibolites from the Longlangang and Tuanshanzi areas have relatively flat chondrite-normalized rare earth element (REE) patterns, and remarkable negative Nb and Ta anomalies. Moreover, all of the amphibolites from the Heilongjiang Complex in the Yilan area have tholeiitic and arc-type geochemical affinities. These amphibolites formed by similar petrogenetic processes, but from distinct mantle sources. The magmas that formed these units were generated by the partial melting of mantle sources metasomatized by subducted slab fluids, and the magma that formed the amphibolites within the Yilan Marble Quarry may have also incorporated sedimentary material. Mantle peridotite from the garnet-spinel transition zone is a possible source for the protolith of amphibolites in the Yilan Marble Quarry, and spinel-peridotites may have been the magma sources for the protoliths of amphibolites in the Longlangang and Tuanshanzi areas. Combining our data for amphibolites from the Heilongjiang Complex in the Yilan area with the results of previous research on Late Paleozoic–Early Mesozoic arc magmatism and metamorphism, we infer that the Late Paleozoic–Early Mesozoic tectonic evolution of the Mudanjiang Ocean was characterized by double-sided subduction. These data indicate that the Mudanjiang Ocean closed during the Jurassic (180–160 Ma).  相似文献   

16.
《China Geology》2021,4(4):630-643
The Nan Suture and Sukhothai Arc Terrane are products of the eastward subduction of the Paleotethyan Ocean during the Late Carboniferous to Triassic. However, their footprints in northwestern Laos are poorly constrained. New geochronological and geochemical data presented in this study demonstrate a Late Permian origin for the andesitic rocks in the B.Xiengnou area rather than Late Triassic. The breccia-bearing andesitic tuff in the B.On ultramafic complex yield a zircon U-Pb age of 260 ± 1.4 Ma, geochemically displaying a MORB-like signature. The andesitic tuff in the B.Kiophoulan-B.Houayhak belt gave the U-Pb age of 254 ± 1.3 Ma, with arc-like geochemical affinity. By combining geochronological and geochemical data from the Nan Suture and Sukhothai Arc Terrane, the authors suggest that the andesitic rocks in the B.On ultramafic complex formed in a back-arc basin background, which connected the Jinghong and Nan back-arc basin during the Permian; while the andesitic tuff in the B.Kiophoulan-B.Houayhak belt erupted in the Sukhothai continental arc setting.©2021 China Geology Editorial Office.  相似文献   

17.
A combined study of LA-ICP-MS zircon U-Pb dating and geochemical analyses (major and trace elements, and Hf isotopic compositions) for five Permian granitic plutons (Mingyi, Tuoyaozi, Mengjiagang, Hengtoushan, and Qingbei plutons) from the Jiamusi Massif was carried out to determine their ages, petrogenesis, and tectonic evolution. The studied granitic plutons are composed of syengranites, monzogranites, and granodiorites, and they were emplaced in the Early-Middle Permian (278–263 Ma). These granitic plutons are mostly high-K calc-alkaline and weakly peraluminous, and show consistent correlations of different oxides versus SiO2. They are all enriched in large ion lithophile elements (e.g., Rb, Th, K) and light rare earth elements, and depleted in high field strength elements (e.g., Nb, Ta, Ti) and heavy rare earth elements. And they have relatively homogeneous Hf isotopic compositions, with εHf(t) values varying from − 6.16 to + 2.95 and two-stage model ages ranging from 1681 to 1111 Ma. According to their emplacement ages, geochemical characteristics, and Hf isotopic compositions, we conclude that these granitoids might be originated from parental magmas with similar compositions but evolved different degrees of fractionation, and their magmas were derived from the partial melting of amphibolite-facies mafic lower crust. These data, combined with previous studies on contemporaneous magma-tectonic activities in the Jiamusi Massif and Songnen-Zhangguangcai Range Massif, indicate that two paralleled N-S trending Permian magmatic belts are distributed in these two massifs. The eastwards subduction of the Mudanjiang oceanic plate beneath the Jiamusi Massif induced crustal melting to produce the studied Permian N-S trending granitoids in the Jiamusi Massif. Furthermore, westwards subduction of the Mudanjiang oceanic plate beneath the Songnen-Zhangguangcai Range Massif gave rise to Permian magmatism along eastern margin of the Songnen-Zhangguangcai Range Massif. Taken together, we suggest that the Jiamusi Massif and Songnen-Zhangguangcai Range Massif were not collided before the Permian, and a double-side subduction model is favored for the tectonic evolution of the Mudanjiang Ocean during the Permian.  相似文献   

18.
本文对延边开山屯地区二叠纪侵入岩和地层中的(碎屑)锆石进行了LA-ICP-MS和SIMS U-Pb年代学及Hf同位素的研究,同时对侵入岩进行了全岩地球化学特征的研究,以便制约开山屯地区的构造属性以及延边地区晚古生代-早中生代演化历史。延边开山屯地区大蒜沟组复成分砾岩和岩屑杂砂岩中锆石最年轻峰值年龄为298Ma和293Ma,此外还存在330Ma、366Ma、438Ma、454Ma、479Ma峰值年龄。这些古生代碎屑锆石的ε_(Hf)(t)值介于-1.14~+15.17之间;开山屯组长石杂砂岩和长石砂岩中的锆石最年轻年龄峰值分别为259Ma和253Ma,此外还存在279Ma、456Ma、476Ma、500Ma、529Ma以及新元古代-古元古代(891~1765Ma)的峰值年龄。其中古生代碎屑锆石的ε_(Hf)(t)值介于-5.22~+10.15之间。开山屯地区中二叠世闪长岩和晚二叠世辉长闪长岩的形成时代分别为261Ma和256Ma,属于低钾拉斑-中钾钙碱性系列,相对富集轻稀土和大离子亲石元素,亏损重稀土和高场强元素,主要来源于受俯冲流体/熔体交代的亏损地幔楔的部分熔融。综合研究认为,开山屯地区与兴凯地块具有亲缘性;大蒜沟组的沉积时限为早-中二叠世,形成于兴凯地块西部活动大陆边缘的弧前盆地或增生楔环境;开山屯组形成于早-中三叠世,具有双向物源的特点(华北板块和兴凯地块)。早-中二叠世延边地区处于活动大陆边缘的构造背景。延边地区的古亚洲洋于早-中三叠世最终闭合。  相似文献   

19.
ABSTRACT

The tectonic affiliation of the Khanka Massif, in the easternmost section of the Central Asian Orogenic Belt (CAOB), is still a matter of debate. Here, we provide new constraints on the provenance and timing of deposition of Permian strata in the western margin of the Khanka Massif. The results, which include U–Pb dating of detrital zircon grains using laser ablation–inductively coupled plasma–mass spectrometry (LA-ICP-MS), provide evidence regarding the tectonic position of the Khanka Massif and its role in the late Palaeozoic evolution of the eastern CAOB. Detrital zircon grains from a sublitharenite (Pingyangzhen Formation), a litharenite (Liangzichuan Formation), and a metamorphic siltstone (Qinglongcun Group) yielded multiple age populations ranging from Neoproterozoic (~914 Ma) to Permian (~272 Ma). Combined with age constraints from overlying/late-stage igneous rocks and other magmatism of the Khanka Massif, we conclude that the dated strata were deposited during the early–middle Permian and were sourced from the Khanka Massif. A comparison between the detrital zircon age populations and the history of magmatic activity in the neighbouring areas suggests that the Khanka Massif was tectonically linked to the Songnen–Zhangguangcai Range Massif. Based on tectonic discrimination diagrams, we conclude that the western margin of the Khanka Massif was positioned in a convergent-boundary basin during the early–middle Permian. Strike-slip faulting along the Dunhua–Mishan Fault, in response to ridge subduction of the Paleo-Asian Ocean Plate, resulted in a north-eastward movement of the Khanka Massif. The occurrence of Precambrian detrital zircon grains (with ages of 1900–1700 and 900–700 Ma) implies the presence of an ancient basement within the Khanka Massif.  相似文献   

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