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1.
对南秦岭封子山岩体进行了锆石U-Pb年代学、岩石地球化学以及Hf同位素的研究,以确定其形成时代、岩体成因及形成时的构造环境.LA-ICP-MS锆石U-Pb定年测试结果表明,该岩体形成于新元古代晚期(716~710 Ma).锆石Hf同位素分析显示εHf(t)为-3.16~1.17,二阶段模式年龄(TDM2)为1.84~1.52 Ga.地球化学特征显示封子山岩体具高硅(62.92%~73.57%)、高钠(3.33%~4.22%),富集轻稀土元素,富集K、Rb、Ba、Th、U等大离子亲石元素,亏损Nb、Ta、Ti、P等高场强元素的特征,Eu显示弱负异常(δEu=0.79~0.95),为准铝质-弱过铝质中钾钙碱性Ⅰ型花岗岩.结果表明,封子山岩体主要来源于陡岭群片麻岩的部分熔融.封子山岩体形成于裂谷扩张与小洋盆间杂并存的构造环境,是洋壳向陆壳俯冲作用的产物,可能是Rodinia超大陆聚合与裂解事件在该地区作用的响应.   相似文献   

2.
The Cretaceous gabbros in the Fujian coastal region, southeastern China, experienced different magmatic and tectonic processes associated with deformation of the Changle-Nanao shear zone. Group 1 gabbros (115 Ma) show marked LILE (e.g., Sr, Ba and K) and LREE enrichment, and HFSE (e.g., Ta, Nb, Zr and Hf) depletion, strongly suggesting an island-arc affinity. The parental magma of group 1 gabbros, arguably derived from an arc-related source mantle modified by previous subduction, rose into and interacted with the coexisting syntectonic granitic magma generated during the main stage of shear zone deformation, and produced the gabbro-diorite-granite complexes. Group 2 and 3 gabbros (106-95 Ma) possibly formed by coupling of the subduction-modified source mantle with part of undepleted mantle (e.g., Nb enrichment) in an extensional environment at the end of deformation. Their parental magmas did not undergo significant magma mixing but produced a cumulate nature. All the three groups of gabbros were contaminated by crustal material during the processes of intrusion and emplacement.  相似文献   

3.
北秦岭新元古代后碰撞花岗岩的确定及其构造意义   总被引:42,自引:0,他引:42  
应用LA ICPMS获得北秦岭蔡凹花岗岩体锆石U Pb年龄 ( 889± 1 0 )Ma ,代表岩体的形成时代。该岩体富集LILE、贫化HFSE ,显示活动陆缘俯冲带I型花岗岩体地球化学特征。同时岩体又具有富铝、高钾和锶、明显亏损Nb、Ti、P等元素的大陆造山带后碰撞演化阶段花岗岩特征。根据区域构造资料并结合岩体的变形特征分析 ,蔡凹岩体为碰撞造山过程地壳增厚背景下 ,在后碰撞拉张阶段由卷入有消减带物质的下部地壳部分熔融所形成 ,指示了秦岭在该时期已进入由主碰撞挤压转向后碰撞伸展演化阶段 ,为进一步精细确定北秦岭新元古代陆块汇聚碰撞造山过程提供了新的依据  相似文献   

4.
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   

5.
The assembly of Late Neoproterozoice Cambrian supercontinent Gondwana involved prolonged subduction and accretion generating arc magmatic and accretionary complexes, culminating in collision and formation of high grade metamorphic orogens. Here we report evidence for mafic magmatism associated with post-collisional extension from a suite of gabbroic rocks in the Trivandrum Block of southern Indian Gondwana fragment. Our petrological and geochemical data on these gabbroic suite show that they are analogous to high Fe tholeiitic basalts with evolution of the parental melts dominantly controlled by fractional crystallization. They display enrichment of LILE and LREE and depletion of HFSE with negative anomalies at Zre Hf and Ti corresponding to subduction zone magmatic regime. The tectonic affinity of the gabbros coupled with their geochemical features endorse a heterogeneous mantle source with collective melt contributions from sub-slab asthenospheric mantle upwelling through slab break-off and arc-related metasomatized mantle wedge, with magma emplacement in subduction to post-collisional intraplate settings. The high Nb contents and positive Nbe Ta anomalies of the rocks are attributed to inflow of asthenospheric melts containing ancient recycled subducted slab components and/or fusion of subducted slab materials owing to upwelling of hot asthenosphere. Zircon grains from the gabbros show magmatic crystallization texture with low U and Pb content. The LA-ICPMS analyses show 206 Pb/238 U mean ages in the range of 507-494 Ma suggesting Cambrian mafic magmatism. The post-collisional mafic magmatism identified in our study provides new insights into mantle dynamics during the waning stage of the birth of a supercontinent.  相似文献   

6.
本文对藏南冈底斯带中段的花岗岩类和角闪辉长岩进行了锆石U-Pb年代学和全岩地球化学分析,据此阐明了岩体的形成机制与演化过程,并探讨了成岩时的大地构造背景。分析结果显示,研究区内花岗岩类和角闪辉长岩体的LA-ICPMS锆石U-Pb定年结果为41~55Ma,为始新世早-中期岩浆活动的产物,代表了区内岩体的成岩年龄。在地球化学组成上,花岗岩类属于钙碱性到高钾钙碱性系列,均富集轻稀土(LREE)和大离子亲石元素(LILE)(Rb、Ba和K),强烈亏损Nb、Ta、P等高场强元素(HFSE),具有弧型岩浆岩的地球化学组成。此外,花岗岩类的铝饱和指数(A/CNK)小于1.1,属于准铝质到弱过铝质的I型花岗岩。角闪辉长岩为石榴橄榄岩部分熔融的产物,并在后期侵位的过程中遭受到了壳源物质的混染。综合分析表明,研究区内的岩体形成于初始碰撞向主碰撞的转化阶段。始新世早期(~50Ma)新特提斯洋板片的断离引起软流圈物质上涌,导致岩石圈地幔发生部分熔融形成基性岩浆,随后基性岩浆底侵至下地壳并诱发下地壳发生部分熔融形成花岗岩质岩浆,最后经过岩浆混合作用形成始新世早-中期冈底斯地区的花岗岩类。  相似文献   

7.
内蒙古狼山地区乌花辉长岩体主要由橄榄辉长岩和角闪辉长岩组成,其锆石LA-ICP-MS U-Pb同位素测年结果表明,岩体形成于(319.8±1.8)~(325.4±1.6) Ma,属于早石炭世末期岩浆活动的产物。地球化学特征上,乌花辉长岩属低钾钙碱性玄武岩系列,具有较高的Mg#(多在76.70~80.35之间)、Al2O3(13.55%~25.13%)和较低的TiO2(0.18%~1.35%)。稀土总含量较低(∑REE= 8.92×10-6~40.10×10-6),稀土元素分馏程度不高,呈现出轻稀土元素(LREE)略微富集、重稀土元素(HREE)相对亏损((La/Yb)N = 1.74~3.06)的特点,Eu呈明显的正异常(δEu=1.156~3.86)。岩石富集Pb和K、Rb、Ba、Sr等大离子亲石元素,明显亏损Nb、Ta、Zr、Hf、Th等高场强元素,较低的Zr含量(4.38×10-6~26.6×10-6)和Zr/Y比值(1.08~2.35),呈现出典型的俯冲-消减带弧火山岩的地球化学特征。Sr-Nd-Hf同位素研究表明,乌花辉长岩岩浆源区为富集地幔,在侵位过程中受到的地壳混染程度较弱。结合区域地质背景,认为乌花辉长岩为俯冲-消减构造体制下由俯冲带流体交代富集地幔部分熔融而成,代表了俯冲相对早期阶段的产物,指示华北板块北缘西段在早石炭世晚期开始进入到安第斯型活动大陆边缘阶段,并可能结束于早二叠世之前。  相似文献   

8.
ABSTRACT

The Ordovician plutons in the Erguna Block, NE China, can be classified into two groups: Early Ordovician diorites with zircon U–Pb ages ranging from 486 to 485 Ma and Middle Ordovician gabbros and granites with zircon U–Pb ages ranging from 466 to 463 Ma. The diorites are calc-alkaline in nature and are characterized by weak to moderate enrichments of large ion lithophile elements (LILE) and light rare earth elements (LREE) relative to high field strength elements (HFSE) and heavy rare earth elements (HREE). The gabbros and granites have high total alkali contents, and all samples are enriched in LREE and LILE and depleted in HFSE such as Nb, Ta, and Ti. Isotopically, Early Ordovician diorites display values that are less radiogenic [εHf(t) = + 9.9–+16.8] compared to those of Middle Ordovician gabbros [εHf(t) = ? 3.0–+5.0]. Middle Ordovician granites have positive εHf(t) values of +1.4 to +4.3 and two-stage Hf model ages (TDM2) of 1167 to 1356 Ma. These data indicate that the diorites may have been generated by the partial melting of a recently metasomatized mantle source, whereas the gabbros and granites may have been formed by the partial melting of enriched lithospheric mantle and Mesoproterozoic crust, respectively. Our results, combined with other regional results, suggest that Early Ordovician magmatism was likely associated with the northward subduction of the Heihe–Xilinhot oceanic plate beneath the Erguna–Xing’an Block, whereas the Middle Ordovician gabbros and granites were most likely formed in an extensional setting controlled by the rollback of this subducted oceanic plate.  相似文献   

9.
对于扬子板块西北缘新元古代早—中期(835~720 Ma)岩浆岩形成的构造背景尚存在较大争议。本文对陕南勉略宁地区碧口微地块内黑木林- 硖口驿SSZ型(俯冲带上盘型)蛇绿混杂岩中的辉长岩、辉长闪长岩和变安山质玄武岩分别进行了锆石LA- ICP- MS U- Pb年代学、岩石学及岩石地球化学研究。研究结果表明,木瓜园辉长岩和变安山质玄武岩属岛弧拉斑玄武岩系列,稀土元素球粒陨石标准化配分曲线均呈右倾型,具有微弱的Eu负异常,微量元素原始地幔标准化图解显示其富集大离子亲石元素(LILE)和轻稀土元素(LREE)而亏损高场强元素(HFSE,如Nb、Ta等),与岛弧岩浆岩相似。黑木林、硖口驿辉长闪长岩属钙碱性系列。黑木林辉长闪长岩具与Bonin弧前玻安质岩石类似的地球化学特征,具较高的SiO2含量(54. 27%~56. 79%)、MgO含量(11. 10%~17. 04%)和较低的TiO2含量(0. 08%~0. 19%),富集大离子亲石元素Rb、Th、U和Pb,亏损高场强元素Nb、Ti,以及弱的Zr、Hf正异常等特征。硖口驿辉长闪长岩MgO含量较低(4. 24%~8. 91%),略低于玻安质岩石,其N- MORB(正常洋中脊玄武岩)标准化微量元素蜘蛛网图与Bonin弧前玻安岩类似,富集LILE、亏损HFSE,具低的Ti/Zr比值等特征,属于过渡类型的类玻安质岩石。锆石LA- ICP- MS U- Pb测年结果显示,黑木林- 硖口驿SSZ型蛇绿混杂岩的原岩形成时代为835~830左右。其中木瓜园辉长岩、黑木林和硖口驿辉长闪长岩的结晶年龄分别为835±4 Ma、830±2 Ma和830±11 Ma。结合前人关于扬子板块西北缘新元古代早—中期构造演化过程的研究,认为扬子板块西北缘在新元古代早—中期(950~720 Ma)处于长期的洋壳东南向俯冲的活动大陆边缘环境并发育俯冲增生造山作用,且新元古代早期(835~830 Ma)在扬子板块西北缘发生了洋内俯冲,形成黑木林- 硖口驿SSZ型蛇绿混杂岩,最终增生拼贴就位于碧口微地块。  相似文献   

10.
以往学者的研究多集中在印支期出露于漠河县城南的黑云母花岗闪长岩,而对该地区燕山早期构造演化的研究相对薄弱.运用LA-ICP-MS锆石U-Pb年代学、全岩地球化学与Hf同位素分析的方法确定其形成时代、岩浆源区性质及成岩构造背景.结果表明:该岩石的加权平均年龄分别为185±2 Ma和182±2 Ma,表明其形成于早侏罗世;岩石属于高钾钙碱性系列,A/CNK介于0.90~1.03,Mg#值为42~48,具有高Sr(489×10-6~653×10-6)低Yb(1.33×10-6~1.99×10-6)的特征,判定其属于埃达克岩类;岩石具有弧岩浆的微量元素特征,轻重稀土元素分馏明显((La/Yb)N=8.36~15.6),较弱的Eu负异常(Eu/Eu*=0.79~0.95),富集Rb、K等大离子亲石元素,明显亏损Nb、Ta、Ti等高场强元素;岩石的εHf(t)值为-3.26~-1.46,二阶段模式年龄介于1.25~1.59 Ga,结合该时期的地幔特征认为该岩石岩浆起源于中元古代亏损地幔新增生的下地壳部分熔融.综合认为岩石形成于蒙古-鄂霍茨克洋板块向南俯冲的活动大陆边缘环境.   相似文献   

11.
杨斌虎  张成立  李雷 《地质通报》2011,30(203):439-447
东秦岭陡岭杂岩中甘沟、三坪沟和封子山等花岗岩体SiO2含量变化大,低碱、高钠,富集LREE和LILE,贫HFSE,亏损Nb、Sr、P和Ti,具准铝质钙碱性I型花岗岩的特征。吐雾山岩体富Si、碱,高Al,贫Ca、Mg,稀土元素总量高,Eu负异常强,富集Rb、Th、U和Pb,明显亏损Sr、P和Ti,显示了A2型花岗岩的地球化学特征。2类花岗岩体Nd-Pb同位素组成基本一致,指示源自相同的物质源区,地球化学特征的差异主要为岩浆分异演化途径不同所致。它们的Pb同位素组成明显不同于北秦岭基底岩系及同时代花岗岩的高放射性成因Pb,与南秦岭和扬子地块基底岩系低放射成因Pb同位素组成类似,表明这次花岗岩浆活动是新元古代中期扬子地块统一陆块形成过程中岩浆活动在秦岭地区的反映,与北秦岭构造带无任何成因联系。  相似文献   

12.
Precise in situ zircon U-Pb dating and Lu–Hf isotopic measurement using an LA-ICP-MS system, whole-rock major and trace element geochemistry and Sr–Nd isotope geochemistry were conducted on the volcanic host rocks of the Tongyu copper deposit on the basis of further understanding of its geological characteristics. Three zircon samples from the volcanic host rocks yielded 206Pb/238 U weighted average ages ranging from 436±4 Ma to 440±5 Ma, which are statistically indistinguishable and coeval with the ca. 440 Ma northward subduction event of the Paleo-Qinling oceanic slab. The volcanic host rocks were products of magmatic differentiation that evolved from basalt to andesite to dacite to rhyolite, forming an integrated tholeiitic island arc volcanic rock suite. The primitive mantle-normalized trace element patterns for most samples show characteristics of island arc volcanic rocks, such as relative enrichment of LILE(e.g. Th, U, Pb and La) and depletion of HFSE(e.g. Nb, Ta, Ti, Zr and Hf). Discrimination diagrams of Ta/Yb vs Th/Yb, Ta vs Th, Yb vs Th/Ta, Ta/Hf vs Th/Hf, Hf/3 vs Th vs Nb/16, La vs La/Nb and Nb vs Nb/Th all suggest that both the volcanic host rocks from the Tongyu copper deposit and the volcanic rocks from the regional Xieyuguan Group were formed in an island arc environment related to subduction of an oceanic slab. Values of ISr(0.703457 to 0.708218) and εNd(t)(-2 to 5.8) indicate that the source materials of volcanic rocks from the Tongyu copper deposit and the Xieyuguan Group originated from the metasomatised mantle wedge with possible crustal material assimilation. Most of the volcanic rock samples show good agreement with the values of typical island arc volcanic rocks in the ISr-εNd(t) diagram. The involvement of crustal-derived material in the magma of the volcanic rocks from the Tongyu copper deposit was also reflected in the zircon εHf(t) values, which range from-3.08 to 10.7, and the existence of inherited ancient xenocrystic zircon cores(2616±39 Ma and 1297±22 Ma). The mineralization of the Tongyu copper deposit shows syn-volcanic characteristics such as layered orebodies interbedded with the volcanic rock strata, thus, the zircon U-Pb age of the volcanic host rocks can approximately represent the mineralization age of the Tongyu copper deposit. Both the Meigou pluton and the volcanic host rocks were formed during the ca. 440 Ma northward subduction of the Paleo-Qinling Ocean when high oxygen fugacity aqueous hydrothermal fluid released by dehydration of the slab and the overlying sediments fluxed into the mantle wedge, triggered partial melting of the mantle wedge, and activated and extracted Cu and other ore-forming elements. The magma and ore-bearing fluid upwelled and erupted, and consequently formed the island arc volcanic rock suite and the Tongyu VHMS-type copper deposit.  相似文献   

13.
东秦岭陡岭杂岩中甘沟、三坪沟和封子山等花岗岩体SiO2含量变化大,低碱、高钠,富集LREE和LILE,贫HFSE,亏损Nb、Sr、P和Ti,具准铝质钙碱性Ⅰ型花岗岩的特征。吐雾山岩体富Si、碱,高Al,贫Ca、Mg,稀土元素总量高,Eu负异常强,富集Rb、Th、U和Pb,明显亏损Sr、P和Ti,显示了A2型花岗岩的地球化学特征。2类花岗岩体Nd-Pb同位素组成基本一致,指示源自相同的物质源区,地球化学特征的差异主要为岩浆分异演化途径不同所致。它们的Pb同位素组成明显不同于北秦岭基底岩系及同时代花岗岩的高放射性成因Pb,与南秦岭和扬子地块基底岩系低放射成因Pb同位素组成类似,表明这次花岗岩浆活动是新元古代中期扬子地块统一陆块形成过程中岩浆活动在秦岭地区的反映,与北秦岭构造带无任何成因联系。  相似文献   

14.
帕米尔高原上广泛分布的加里东期火山岩,印支期火山岩与燕山期火山岩被认为是块体依次向北俯冲拼贴到欧亚板块上的产物。特别是燕山期火山岩被认为是Rushan-Pshart中特提斯洋闭合的产物。但近年来地层古生物、火山岩证据不断表明Rushan-Pshart洋闭合时间在晚三叠—早侏罗世,由此限定Rushan-Pshart古特提斯洋性质,而帕米尔高原上广泛分布的燕山期火山岩是更南部的Shyok中特提斯洋闭合的产物。目前,中国境内Rushan-Pshart缝合带属性的研究工作展开较晚,研究程度较低。我们对塔什库尔干明铁盖沟一线燕山期火山岩带展开的工作发现零星分布的印支期花岗岩。印支期花岗岩锆石U-Pb年龄显示岩体侵位时间在201 Ma左右。全岩主量元素特征表明岩石为Ⅰ型高钾钙碱性闪长花岗岩;稀土元素在球粒陨石标准化图解中呈轻稀土元素相对富集,重稀土元素相对亏损的右倾海鸥型。明铁盖岩体的微量元素显示大离子亲石元素明显富集,而高场强元素明显亏损。稀土微量元素特征倾向花岗岩属性为岛弧型花岗岩,Sr-Nd-Hf同位素比值特征显示岩体形成于下地壳部分熔融环境。岩体的地化特征表明岩体形成的构造环境为板块汇聚的洋壳俯冲阶段,结合区域地质特征,我们将花岗岩体归为Rushan-Pshart古特提斯洋壳俯冲消减的产物。Rushan-Pshart缝合带传统上认为是中特提斯带,近年的研究进展认为其为古特提斯缝合带,本文的工作支持这种观点。Rushan-Pshart古特提斯缝合带的确立对帕米尔高原与青藏高原主体的块体对比提供了可信的对比方案,并对青藏高原新生代陆内变形方式的争论提供了可靠的证据。  相似文献   

15.
对侵位于柴北缘构造带西段达肯大坂岩群中的赛什腾钙碱性系列辉长岩进行了地球化学、年代学研究,结果显示,该辉长岩具有低SiO2、高Al2O3、富MgO及FeOT、贫ALK的特征,且富集LILE元素、亏损HFSE元素,稀土元素配分曲线整体表现为轻稀土元素相对富集、重稀土元素平坦且呈右倾型配分模式,并且低Zr和Zr/Y,指示赛什腾辉长岩形成于活动大陆边缘岛弧环境。锆石LA-ICP-MS U-Pb结晶年龄为271±3 Ma。赛什腾辉长岩原岩岩浆是地幔尖晶石二辉橄榄岩部分熔融的产物,在演化过程中经历了弱的斜长石以及较为明显的单斜辉石的分离结晶作用,并在上升侵位过程中遭受了弱的中上地壳的同化混染作用。结合区域构造演化史以及同时代岩浆岩的年代学和地球化学特征,认为赛什腾辉长岩是中二叠世早期宗务隆洋壳向欧龙布鲁克地块南向俯冲的产物,且宗务隆构造带西段俯冲-碰撞事件明显早于东段,而东西两段俯冲-碰撞时限的差异表明宗务隆洋盆存在西早东晚的"剪刀式闭合"的可能。  相似文献   

16.
吉南地区太古宙基底中发育大量早前寒武纪基性岩墙群,是陆壳伸展的直接证据。对白山市东部天桥太古宙基底出露区内基性岩墙及其围岩进行了锆石U-Pb定年和地球化学分析,以确定该期伸展事件的形成机制及地质意义。天桥地区基性岩墙岩性为斜长角闪岩,侵位于TTG片麻岩中。英云闪长质片麻岩(TN1)中锆石具核-边结构,岩浆核的LA-ICP-MS测年结果为2500±6Ma,指示其形成于新太古代末期。天桥岩墙(TN3)中的锆石内部结构与TN1相同,酸性岩浆核的SHRIMP测年结果为2490±17Ma,与TN1在误差范围内一致,表明这些锆石不是基性岩墙原生锆石,而是岩墙侵位过程中在围岩中捕获的锆石,但根据岩墙仅侵位在太古宙基底中且变质程度高于周围古元古界老岭群,将其侵位年龄大致限制在新太古代末期-古元古代早期。地球化学特征显示,基性岩墙具有低SiO_2、Na_2O、K_2O含量,高CaO、MgO含量,A/CNK=0.56~0.59,属于准铝质的拉斑玄武岩系列岩石,∑REE低、配分曲线平坦,富集LILE(Rb、Ba和K),亏损HFSE(Th、U、Nb和Ta),具有与原始地幔相同的Nb/Ta、Zr/Hf比值及接近地壳的Nb/U、Ta/U比值,指示其岩浆可能来源于地幔且在上升过程中受到地壳混染,形成于板内伸展环境。TTG片麻岩具有中等的SiO_2和MgO含量,高Al_2O_3和Na_2O含量以及低CaO含量,A/CNK=1.00~1.14,属弱过铝质的钙碱性系列岩石,∑REE低、具有右倾的REE配分曲线,轻稀土富集、重稀土亏损,富集LILE(Rb、Ba、K和Sr),强烈亏损HFSE(U、Nb、Ta、Sm和Ti),其岩浆可能来源于变质玄武质岩石和极少量沉积岩的部分熔融,结合邻区TTG的研究成果,认为其形成于与俯冲相关的活动大陆边缘环境。前人研究表明,新太古代晚期板块构造体制可能已经启动,结合我们以往研究,认为新太古代晚期华北克拉通东北部可能发生了弧陆碰撞造山运动,天桥岩墙的侵位标志着新太古代末期至古元古代早期之间华北克拉通东北部进入造山后伸展环境,可能是对新太古代造山运动结束的响应。  相似文献   

17.
Neoproterozoic magmatic rocks in the South Qinling Belt of China provide important clues for understanding the mechanism and timing of the amalgamation and breakup of the Rodinia supercontinent. Here we report new geochemical and high-precision LA-ICP-MS zircon U–Pb–Hf isotopic analyses on magmatic suites from the Liuba and Zhashui areas in the South Qinling Belt. Our data show that the crystallization ages of the granitic intrusions from Tiefodian and Tangjiagou in the Liuba area are 863 ± 22 Ma and 794 ± 11 Ma, respectively, whereas those of the dioritic and gabbroic intrusions at Chishuigou in the Zhashui area are 925 ± 28 Ma and 832.6 ± 4.0 Ma, respectively. The diorites at Chishuigou display arc-related geochemical affinity, characterized by strong depletion in Nb, Ta, P and Ti, and enrichment in large-ion lithophile elements (i.e., Rb, Ba, Th and U), indicating a subduction-related arc setting at ca. 925 Ma. The Tiefodian granitic rocks have high SiO2 (68.46–70.98 wt.%), Na2O (3.87–4.51 wt.%), and low K2O (1.34–2.61 wt.%) contents with TTG affinity. However, their Cr, and Ni contents and Cr/Ni, Nb/Ta ratios are similar to those of continental crust, and together with high negative εHf(t) values (− 4.87 to − 14.84), suggesting a continental margin arc at ca. 863 Ma. The gabbros at Chishuigou have high TiO2 content (2.74–3.14 wt.%), Zr/Y (3.93–4.24), Ta/Yb (0.19–0.25) ratios and low Zr/Nb ratios (11.37–13.17), similar to the features of within-plate basalts, indicating an intra-continental rift setting at ca. 833 Ma. The granitoids at Tangjiagou exhibit enrichment of LREE, K and Pb, and depletion of Nb, Ta, P and Ti, suggesting an extensional tectonic environment at ca. 794 Ma.The results indicate that Neoproterozoic magmatic rocks in the South Qinling Belt formed before ca. 833 Ma and might represent the amalgamation of the Rodinia supercontinent in an arc-related subduction environment, whereas the magmatic events with the peak ages at ~ 740 Ma during ca. 833–680 Ma represent the breakup of Rodinia. Integrating our new data with those from previous works, we propose a new tectonic model for the evolutionary history of the South Qinling Belt in the Neoproterozoic, including four key stages: 1) an ocean that separated the South Qinling Belt and the Yangtze Block in the Early Neoproterozoic (ca.1000–956 Ma); 2) bidirectional subduction of the oceanic lithosphere during ca. 956–870 Ma; 3) subduction and collision between the South Qinling Belt and the Yangtze Block during ca. 870–833 Ma, thus suggesting that the South Qinling Belt was as a part of the Yangtze Block from this period; and 4) intra-continental rifting during ca. 833–680 Ma, although the blocks were not entirely rifted apart.  相似文献   

18.
小兴安岭北部二龙山林场辉长岩的主量、微量和稀土元素的测试分析结果显示: 二龙山辉长岩为钙碱性系列、偏铝质岩石; δEu 正异常,Sr 元素含量富集明显,具有堆晶辉长岩特征; Rb /Sr、Nb / Ta、LILE/HFSE、Th /Ta、Nb /U 和Nb /La 比值特征均显示,辉长岩岩浆来自受到俯冲流体交代的地幔源区。Nb /Zr、Th /Nb、Th /Ta 和Ta /Hf 比值特征及对Th /Hf --Ta /Hf 构造环境判别图解投点表明,二龙山辉长岩形成于陆内拉张环境。  相似文献   

19.
新疆巴里坤地区志留纪花岗岩的确定及其地质意义   总被引:3,自引:0,他引:3       下载免费PDF全文
郭晓俊  张成立  李雷  赵娇 《地质科学》2013,48(4):1050-1068
准噶尔盆地东部巴里坤地区怪石山二长花岗岩体和县煤矿北花岗闪长岩体分别获得440.6±3.7 Ma和412.8±3.3 Ma的 LA-ICP-MS锆石U-Pb形成年龄,指示该区早志留世-早泥盆世一期重要的花岗岩浆活动。两岩体为准铝-弱过铝钙碱性及高钾钙碱性岩系,微量元素具有富集LILE、贫HFSE,亏损Nb、Ta、Ti、P以及Pb正异常的岛弧岩浆成因特征。其中,怪石山岩体高Si、富K,高Rb/Sr和Ga/Al比值、低K/Rb比值,强Eu负异常,代表其为岛弧演化较为成熟阶段岩浆演化的产物,县煤矿北二长花岗岩富Na、高Sr和Sr/Y比值,低Y和Yb,则指示其为岛弧演化晚期,洋盆俯冲消减闭合过程、岛弧区地壳增厚环境下部陆壳物质熔融的结果。此外,两个岩体正的锆石εHf(t)(+7.64~+13.86)和老于其形成年龄的Hf二阶段模式年龄(TDM2=1123~561 Ma)证明,它们主要源自新元古代晚期到早古生代早期的新生岛弧陆壳物质。  相似文献   

20.
The Neoarchean Yishui Terrane (YST) is situated in the east of Western Shandong Province (WSP), south-eastern margin of the North China Craton (NCC). The metavolcanic rocks of the YST are fine-grained hornblende plagioclase gneisses (Group #1) and fine-grained amphibolites (Group #2) in the Yangzhuangzhen area and fine- to medium-grained amphibolites (Group #3) in the Leigushan area. The high-K granitoids associated with Groups #1 and 2 are dominated by fine- to medium-grained monzogranitic gneisses. Zircon LA-ICP-MS U-Pb dating reveals that the magmatic precursors of Groups #1 and #2 were formed at 2641 Ma and the magmatic precursors of concomitant monzogranitic gneisses were emplaced from 2615 to 2575 Ma, whereas Group #3 represents a later 2500 Ma volcanic eruption, and all these metamorphic volcanic rocks and monzogranitic gneisses were subjected to subsequent 2470–2460 Ma metamorphism.The metamorphic volcanic rock samples in Group #1 exhibit the chemical compositions of calc-alkaline andesites, showing fractionated chondrite-normalized REE patterns ((La/Yb)N = 10.48–19.30) and negative Nb, Ta and Ti anomalies ((Nb/La)PM = 0.13–0.22), which are akin to those of typical high-Mg andesites (HMAs) in the subduction-related settings. The magmatic precursors of the Group #1 samples were derived from partial melting of a fluid- or melt-metasomatized depleted mantle wedge at deep levels in the upper mantle. Samples in Group #2 show calc-alkaline chemical compositions with less fractionated chondrite-normalized REE patterns ((La/Yb)N = 2.24–3.34) and negative Nb, Ta and Ti anomalies ((Nb/La)PM = 0.47–0.76), which are consistent with those of the volcanic rocks in the Aleutian island arc. The magmatic precursors of Group #2 were generated by partial melting of a fluid-metasomatized depleted mantle wedge at shallow levels in the upper mantle. The monzogranitic gneisses exhibit high SiO2 and K2O contents with high-K calc-alkaline affinities and peraluminous characteristics. Based on their distinct HREE contents and chondrite-normalized REE patterns, these granitoid samples are subdivided into low-Yb monzogranitic gneisses (LYMGs) and high-Yb monzogranitic gneisses (HYMGs). The LYMG magma was derived from partial melting of a mixed source of juvenile two-mica pelites and minor basic-intermediate igneous rocks at lower crustal levels with pyroxene + amphibole + garnet as the main residual phases, and the HYMG magma was derived from partial melting of multi-sourced juvenile two-mica pelites at middle to lower crustal levels with pyroxene + amphibole and subordinate plagioclase and garnet as the main residual phases. In addition, Group #3 resembles tholeiitic back-arc basalts in the Okinawa Trough and displays flat chondrite-normalized REE patterns ((La/Yb)N = 1.22–2.08) and slightly negative Nb and Ta anomalies ((Nb/La)PM = 0.35–0.59). This group was most likely derived from partial melting of a depleted mantle source that had been modified by the addition of subducted slab-derived fluids at shallow levels in the upper mantle. These metavolcanic rocks and concomitant high-K granitoids record important Neoarchean crust-mantle interactions involving the first modification and partial melting of the lithospheric mantle induced by oceanic crust subduction; then, upwelling and underplating of mantle-derived magmas triggered partial melting of the middle to lower crust and mixing between crust- and mantle-derived magmas. These processes imply that Neoarchean crust-mantle interaction played a crucial role in the evolution of the southeastern margin of the NCC.Available whole-rock Sm-Nd and zircon Lu-Hf isotopic data from metamorphic volcanic rocks and plutonic granitoids from this study and previous studies reveal that YST experienced three crucial juvenile crustal growth events from ~2.78–2.69 Ga, ~2.64–2.56 Ga and ~2.54–2.50 Ga.  相似文献   

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