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1.
The Fuping Complex and the adjoining Wutai and Hengshan Complexes are located in the central zone of the North China craton. The dominant rock types in the Fuping Complex are high‐grade tonalitic–trondhjemitic–granodioritic (TTG) gneisses, with minor amounts of mafic granulites, syntectonic granitic rocks and supracrustal rocks. The petrological evidence from the mafic granulites indicates three stages of metamorphic evolution. The M1 stage is represented by garnet porphyroblasts and matrix plagioclase, quartz, orthopyroxene, clinopyroxene and hornblende. Orthopyroxene+plagioclase symplectites and clinopyroxene+plagioclase±orthopyroxene coronas formed in response to decompression during M2 following the peak metamorphism at M1. Hornblende+plagioclase symplectites formed as a result of further isobaric cooling and retrograde metamorphism during M3. The P–T estimates using TWQ thermobarometry are: 900–950 °C and 8.0–8.5 kbar for the peak assemblage (M1), based on the core compositions of garnet, matrix pyroxene and plagioclase; 700–800 °C and 6.0–7.0 kbar for the pyroxene+plagioclase symplectites or coronas (M2); and 550–650 °C and 5.3–6.3 kbar for the hornblende+plagioclase symplectites (M3), based on garnet rim and corresponding symplectic mineral compositions. These P–T estimates define a clockwise P–T path involving near‐isothermal decompression for the Fuping Complex, similar to the P–T path estimated for the metapelitic gneisses. The inferred P–T path suggests that the Fuping Complex underwent initial crustal thickening, subsequent exhumation, and finally cooling and retrogression. This tectonothermal path is similar to P–T paths inferred for the Wutai and Hengshan Complexes and other tectonic units in the central zone of the North China craton, but different from anti‐clockwise P–T paths estimated for the basement rocks in the eastern and western zones of the craton. Based on lithological, structural, metamorphic and geochronological data, the eastern and western zones of the craton are considered to represent two different Archean to Paleoproterozoic continental blocks that amalgamated along the central zone at the end of Paleoproterozoic. The P–T paths of the Fuping Complex and other tectonic units in the central zone record the collision between the eastern and western zones that led to the final assembly of the North China craton at c. 1800 Ma. 相似文献
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华北克拉通及邻区孔兹岩系的时代及对太古宙基底组成的制约 总被引:2,自引:0,他引:2
根据地质、地球化学和Nd同位素研究 ,华北克拉通及邻区孔兹岩系主要形成于古元古代。笔者对孔兹岩系变泥沙质岩石进行了地球化学统计性研究。它们普遍高K2 O低Na2 O ,具有重稀土部分呈平坦型 ,轻重稀土分离较弱 ,存在较强负铕异常的稀土模式。在岩石/MORB -元素图解上 ,除Nb、P、Ti相对亏损外 ,还存在明显的负钡异常。具高成熟度的泥沙质岩石tDM和ΣNd( 2 .3Ga)变化范围分别为 2 .30~ 3.2 4Ga和 - 4 .77± 5.11。孔兹岩系形成于太古宙之后 ,与其主体由泥沙质岩石组成 ,并且需要有一个广泛出露、高成熟度陆壳基底物源区的认识相吻合。在考虑泥沙质岩石组成受源区组成和作用过程双重制约的情况下 ,给出了华北克拉通太古宙基底组成的估计值。它们与Taylor等 ( 1985)给出的太古宙上部地壳组成估计值存在较大区别 相似文献
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华北克拉通的变质沉积岩及其克拉通的构造划分 总被引:8,自引:0,他引:8
早前寒武纪花岗质岩年龄统计结果显示,华北克拉通经历了3.8,3.3,2.9,2.5和1.8~1.9 Ga等多个旋回才从陆核成长为陆台,与之对应沉积岩也由少变多,大约以500 Ma为一周期。由于沉积作用出现在成陆间歇期,所以二者在时间上相间互补,其状如同显生宙超大陆裂解和拼合的周期交替。这一现象不但是地壳演化的普遍规律,而且也可反过来用沉积岩反映陆壳的演化。然而,早前寒武纪尤其是太古宙的沉积岩毕竟太少,无法用来恢复当时古陆块的面貌,但古元古代的特别是陆缘沉积的孔兹岩,尽管已进入下地壳并成为克拉通基底的组成,则以保存甚多、分布延续,使其重塑克拉通的拼合成为可能。已有的华北克拉通的构造划分方案多种多样,但以陆缘沉积的古元古代孔兹岩作为地块的边界,理当最能反映当时古陆块的面貌。因此,以孔兹岩为主要依据,并综合考虑岩石组合、构造环境、变质p-T轨迹、同位素年龄、以及不变质的沉积盖层等地质特征,将华北克拉通主体从西往东划分为:鄂尔多斯地块 / 晋蒙弧形拼合带 / 冀鲁豫地块 /(郯庐断裂)/ 胶辽地块群等构造单元,所得到的不同于以往的构造轮廓,显示华北陆台并非一统的太古宙克拉通,而是吕梁运动拼合成的古元古代大陆。 相似文献
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华北克拉通基底主要构造单元变质作用演化及其若干问题讨论 总被引:23,自引:54,他引:23
华北克拉通基底可分为三个太古宙微陆块(东部陆块、阴山陆块和鄂尔多斯陆块)和三个早元古宙活动带(孔兹岩带、华北中部带和胶-辽-吉带)。这些构造单元具有不同的变质作用时间和P-T 演化特征。东部陆块和阴山陆块晚太古宙基底岩系的变质作用发生在~2.5Ga,变质演化以等压冷却(IBC)逆时针P-T 轨迹为特征,反映变质作用的成因与大规模地幔岩浆底侵有关。孔兹岩带主期变质作用发生在~1.95Ga,变质演化以近等温减压(ITD)顺时针P-T 轨迹为特征,反映阴山陆块与鄂尔多斯陆块碰撞形成西部陆块的热构造过程。华北中部带变质作用发生在~1.85Ga,变质演化同样以近等温减压(ITD)顺时针P-T 轨迹为特征,反映了西部陆块和东部陆块最终碰撞形成统一的华北克拉通基底的构造过程。早元古宙胶-辽-吉带变质作用表现‘双变质带’特征: 西北带的北辽河群、老岭群和粉子山群的变质作用以中压顺时针P-T 轨迹为特征,而东南带的南辽河群、吉安群和荆山群的变质作用以低压逆时针P-T 演化为特征。华北克拉通基底变质作用演化地质图能更好地反映上述不同构造单元的变质作用演化特征。尽管岩浆弧、大陆裂谷和地幔柱模式都能解释东部陆块晚太古宙基底变质作用所具有的近等压冷却(IBC)逆时针P-T 演化特征,地幔柱模式能够更合理解释东部陆块所存在的宽达800 千米而时代近于相同的晚太古代火成岩带、大量科马提质超镁铁质岩石和双峰式火山岩、广泛发育的穹窿构造等。华北克拉通变质基底中具有石榴石-单斜辉石-斜长石-石英组合的高压基性麻粒岩和具有蓝晶石-钾长石组合的高压泥质麻粒岩的出露只局限在早元古宙华北中部带的北段和胶-辽-吉带的南端; 这些高压麻粒岩形成在俯冲和陆-陆碰撞的构造环境中。西部陆块孔兹岩带含假蓝宝石麻粒岩是碰撞后(~1.92Ga)拉伸引发地幔岩浆底侵导致局部地带发生超高温(UHT)变质作用的产物。 相似文献
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华北克拉通的组成及其变质演化 总被引:7,自引:0,他引:7
华北克拉通早前寒武纪变质基底主要由五套不同类型的变质岩系组成。克拉通在形成过程中经历了多期构造活动、多期岩浆侵位、多期变质作用以及不同程度的混合岩化和深熔作用,岩石已遭受多次不同地质作用的叠加改造,因此华北克拉通具有复杂的演化历史。从太古宙到古元古代末的克拉通形成,华北克拉通主要经历了五期区域变质作用。鞍山地区的古—中太古代经历了角闪岩相变质作用改造,尚未获得变质年龄数据。但在TTG岩系中已获得3 560 Ma和3 000~3 300 Ma早期的变质年龄。河南鲁山太华杂岩的中太古代斜长角闪岩中获得2 776~2 792 Ma和2 671~2 651 Ma两期变质作用年龄信息,代表了新太古代早期的变质作用。新太古代麻粒岩-TTG岩系和新太古代花岗-绿岩系都经历了新太古代晚期—古元古代初的变质作用改造。在古元古代阶段,在华北克拉通北缘在1 965~1 900 Ma期间发生了中低压/高压麻粒岩相变质,局部发生超高温变质,这期变质作用与陆块间的俯冲碰撞及其后的地幔上涌有关。在古元古代晚期(1 890~1 800 Ma)在华北克拉通的中部及东部的胶—辽—吉带发生了高压麻粒岩相-角闪岩相的区域变质,代表了陆块间的碰撞拼合过程。不同变质岩系类型经历的变质作用反映了不同的构造背景。太古宙晚期大量的TTG岩系及呈面状分布的中/低压麻粒岩主要出露在华北克拉通的中北部,普遍具有逆时针的p-T轨迹,反映了地幔柱底板垫托的构造环境。新太古代的花岗-绿岩系在新太古代晚期—古元古代早期经历的变质作用多为顺时针的p-T演化轨迹,反映其发生可能与弧后+地幔柱联合作用的构造背景。古元古代晚期的两期变质作用多表现为高压麻粒岩相的顺时针p-T演化轨迹,反映了不同陆块(地块)之间碰撞拼合的过程,意味着类似显生宙的板块构造体制已经出现。 相似文献
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华北克拉通的形成演化与成矿作用 总被引:60,自引:4,他引:60
华北克拉通具有38亿年的漫长历史,特别是与其他克拉通相比,它有更为复杂的多阶段的构造演化史,记录了几乎所有的地壳早期发展与中生代以来的重大构造事件。在太古宙,华北克拉通经历了>3.0Ga的陆核与微陆块的形成;2.7~2.9Ga的陆壳增生;2.5Ga的岩浆、变质作用与克拉通化;2.3~1.9Ga的古元古代活动(造山)带;1.8Ga的基底隆升与裂谷-非造山岩浆事件。在新元古代—古生代,华北克拉通处于相对稳定的地台状态,其南、北缘受到秦岭造山带和中亚造山带的影响;在中生代,华北克拉通则经历了强烈的中生代构造格局的转变和克拉通的破坏与重建;在新生代,华北克拉通的东缘属于环太平洋构造带的一部分。与上述重大构造事件相对应,华北克拉通出现大规模的成矿作用,形成了丰富多样的固体矿产资源。华北克拉通的形成与演化及其不同类型的成矿系统,为深刻理解大地构造背景对成矿作用的制约提供了范例。 相似文献
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本文报道了集宁北部商都县西井子镇一带苏吉火山岩的岩石学、地球化学、锆石年代学及Hf同位素组成。锆石定年显示,苏吉火山岩形成于早-中二叠世(267±2Ma、272±2Ma和270±3Ma)。研究区内的苏吉火山岩为一套酸性火山岩组合,SiO_2、Al_2O_3含量较高并具有极低的Mg#;其轻稀土元素和大离子亲石元素相对富集,高场强元素Nb、Ta、Ti明显亏损。苏吉火山岩的锆石εHf(t)呈较高的负值(-17.3~-5.9)并具有相当古老的Hf二阶段模式年龄(1667~2386Ma),指示它们的原始岩浆主要源自古老地壳物质的部分熔融。系统的地质填图显示,华北克拉通北缘中段存在一条数百千米的晩古生代火山岩带。苏吉火山岩的形成可能与古亚洲洋向华北克拉通俯冲有关,当时华北克拉通北缘存在一个安第斯型活动大陆边缘。 相似文献
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华北克拉通两类早前寒武纪麻粒岩(HT-HP和HT-UHT)及其相关问题 总被引:12,自引:23,他引:12
华北克拉通广泛存在高级变质的早前寒武纪岩石,其中高温高压(HT-HP)麻粒岩和高温超高温(HT-UHT)麻粒岩近年来备受人们的关注,并将它们视为探讨早前寒武纪大陆演化的关键课题。HT-HP麻粒岩主要是含石榴石的基性麻粒岩,它们以透镜体或强烈变形的岩墙状出露于片麻岩中。HT-UHT麻粒岩主要是富铝的变质沉积岩系,俗称孔兹岩系,其中有含假蓝宝石和尖晶石等矿物组合,指示部分岩石的变质温度高于900~1000℃。本文探讨了这两类麻粒岩的出露状况、变质过程与变质历史、原岩与变质年龄。初步研究表明: ①两类麻粒岩在变质的峰期温度和压力上有很大的重叠区间,都经历了一个近等温-略升温的降压变质; ②两类麻粒岩很有可能在峰期和随后的降压变质阶段是同时的或有关联的; ③HT-HP和HT-UHT麻粒岩的分布特征是线状或面状分布仍有待进一步查明; ④高级变质的麻粒岩代表了华北克拉通的最下部地壳,它们变质的温压体系、岩石的刚性程度、分布特征、岩石组合以及抬升速率等具有与显生宙明显的不同。本文从而指出两类麻粒岩是否有成因联系是今后研究中非常值得注意的问题,深入研究将会对华北克拉通早期地壳演化、构造和动力学机制提供丰富的资料和证据。 相似文献
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为了探讨华北板块南缘中元古代沉积地层的时代归属和物质来源、区域古地理格局和大地构造特征,对豫西灵宝福地地区的高山河群进行碎屑锆石U-Pb年代学和锆石微量元素特征研究。获得的高山河群年龄最小(年轻)的单颗碎屑锆石 207Pb/206Pb 年龄值为1685±39 Ma,从而限制了高山河群最早沉积年龄不早于1700 Ma。结合上覆的龙家园组年代学标定(1594±12 Ma),将高山河群的形成年代限定为1700—1600 Ma,即中元古代长城纪的中晚期,属国际地质年表的“固结纪”。高山河群中碎屑锆石 207Pb/206Pb 年龄范围为1685—2751 Ma,呈现1850 Ma、2150 Ma、2300 Ma和2500 Ma共4个年龄峰值,对应于华北克拉通古元古代重要的地质事件,并且高山河群以1850 Ma和2500 Ma峰值年龄段的地质体为主要的物源区。根据高山河群与云梦山组碎屑锆石年龄频率对比,推测在豫西地区西侧存在以往报道较少的年龄为2500 Ma的地质体。根据熊耳群火山岩及其对应锆石的地球化学特征和熊耳期盆地动力学性质,并结合高山河群沉积相特征和沉积盆地构造属性,认为熊耳群形成于与“岛弧”共生的拉张性质的弧后盆地地区,而其上覆的高山河群为弧后盆地靠近大陆一侧的具有被动大陆边缘性质的滨浅海沉积。 相似文献
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华北克拉通南部早前寒武纪基底形成与演化 总被引:1,自引:3,他引:1
简要总结了华北克拉通南部鲁山地区、小秦岭地区、登封及中条山地区的早前寒武纪地质事件序列及其地质意义,并对各地区地质特征和变质演化特点进行对比。结合前人研究工作,初步探讨了华北克拉通南部早前寒武纪基底的演化特点、陆壳形成的主要时期和华北南部基底的构造区划等问题,提出几点认识:1)华北克拉通南部鲁山、中条山、小秦岭等地区均有2.7~2.9Ga岩石记录,以英云闪长质-奥长花岗质-花岗闪长质(TTG)岩石为主,它们共同构成华北南缘的古老结晶基底,并经历了新太古代晚期~2.5Ga构造-热事件,标志着华北克拉通南部在新太古代末期可能已经形成统一基底;2)华北克拉通南部主要的陆壳形成时期为中太古代晚期-新太古代,与全球其他主要克拉通一致,而古元古代早-中期则以地壳再循环为主;3)综合地质、地球化学等特点,将华北南部鲁山-小秦岭地区和中条山等地区划归为"南部古陆块",并提出该陆块呈现为一个大型的倾伏向斜构造,可能在新太古代晚期已经形成,其枢纽向南东倾斜。"南部古陆块"在新太古代末期与其它微陆块拼合,并发生了变质作用和陆壳的活化与再循环,共同指示新太古代晚期华北克拉通统一基底的形成。 相似文献
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千里山-贺兰山地区分布着两组岩墙:一组北东走向,侵入古元古代变质基底岩系,见被晚前寒武系黄旗口组不整合截切,称为千里山岩墙群;一组北西走向,侵入基底岩系,见侵入黄旗口组,被石炭系不整合截切,称为贺兰山岩墙群。一条千里山岩墙分选出斜锆石,二次离子探针Pb-Pb定年获得813±7Ma的年龄(207Pb/206Pb平均年龄;MSWD=0.63,n=6),代表岩墙侵位时代。一条贺兰山岩墙分选出锆石,二次离子探针U-Pb定年获得最小一组年龄~370Ma(206Pb/238U年龄),近似代表岩墙侵位时代或者略大于侵位时代。千里山岩墙为拉斑玄武岩系列,以高TiO_2(2.7%~3.7%)和Fe_2OT_3(13.4%~17.0%)为特征;贺兰山岩墙为(弱)碱性系列,低TiO_2(1.0%~1.5%)和Fe_2OT_3(5.5%~12.4%)为特征。两者均显示轻稀土和大离子亲石元素富集,高场强元素相对亏损的特征;贺兰山岩墙群的富集和亏损特征均更为明显((La/Yb)N:贺兰山岩墙群2.0~5.5;千里山岩墙群1.9~2.4)。这些特征说明岩浆可能起源于交代的岩石圈地幔或者岩浆受到过地壳物质的混染。黄旗口组-王全口组-正目关组与上覆寒武系地层以及下伏千里山岩墙群的地质关系说明这些地层应该形成于新元古代晚期(810~541Ma)。千里山-贺兰山地区基底属于西华北克拉通的一部分,其以西是阿拉善地块;后者的构造归属长期存在争议。鉴于阿拉善地块发育同时期、岩浆性质基本相似的岩浆岩(狼山地区双峰式火山岩系;龙首山地区镁铁-超镁铁岩),考虑到两地的晚太古代-古元古代基底特征的相似性,我们认为阿拉善地块和千里山-贺兰山地块可能属于同一克拉通,同时经历新元古代中期伸展-裂谷事件。 相似文献
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超高温变质作用:以华北内蒙古土贵乌拉地区为例 总被引:13,自引:0,他引:13
超高温麻粒岩(富Mg-Al)是指温度高于900℃、压力为0.7~1.3GPa条件下形成的麻粒岩相变质岩,它记录了下地壳超高温极端变质作用的地质信息。富Mg-Al典型超高温矿物组合有:假蓝宝石+石英,尖晶石+石英,大隅石+石榴石,斜方辉石+夕线石+石英,高氟黑云母和钙镁闪石,刚玉+石英。目前世界上发现的超高温麻粒岩带(块)地区有非洲阿尔及利亚、南非、东南极、巴西中部、澳大利亚中部、印度南部和东南部等地。我们在华北克拉通北部内蒙古中南部地区孔兹岩区中发现了超高温麻粒岩,岩性主要为灰黑色条带状夕线石榴黑云片麻岩,其中含有尖晶石+石英、假蓝宝石+石英、斜方辉石+夕线石+石英以及刚玉+尖晶石+石榴石等超高温矿物组合,指示温度达1000℃,压力超过1.0GPa的变质作用。独居石定年获得了(1927±11)Ma以及(1819±11)Ma两个峰期年龄,代表变质年龄。华北克拉通北部超高温麻粒岩的发现对研究华北克拉通与哥伦比亚超大陆的演化关系有重要意义。 相似文献
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Initial accretion of the North Qinling Terrane to the North China Craton before the Grenville orogeny: constraints from detrital zircons 总被引:2,自引:0,他引:2
Xuefei Liu Pengfei Zuo Leon Bagas Yuliang He Deshun Zheng 《International Geology Review》2019,61(1):109-128
Whether the North Qinling Terrane (NQT) was accreted to the North China Craton (NCC) in the Proterozoic is still a matter of debate. We report the first detrital zircon study from the Baishugou Formation, which forms the uppermost part of the Mesoproterozoic Guandaokou Group, at the southernmost NCC margin. Detrital zircons from carbonaceous silty phyllite in the lower part of the Baishugou Formation yield U–Pb ages peaking at ca. 2500 Ma, with minor peaks at ca. 2300–2000, 1800, and 1600 Ma, and εHf(t) values ranging from ?10.8 to +9.1. These zircons are considered to have been sourced from the NCC. In contrast, the middle-to-upper part of the formation contains detrital zircons which yield an age group ranging from 1800 to 1000 Ma, with peaks at 1800, 1500, 1300, and 1100 Ma; the zircons with ages of 1500–1300 Ma dominantly have εHf(t) values greater than +5 and the majority plot along the depleted mantle evolution curve. The striking difference between the U–Pb ages of the detrital zircons from the upper and lower parts of the formation suggests a shift in provenance. Magmatism at 1500–1300 Ma has not been reported from the southern margin of the NCC but has been discovered in the NQT. Hence, we deduce that the zircons from the upper part of the formation were primarily derived from the NQT, where an episode of crustal growth and magmatism is recorded between 1500 and 1100 million years. The variable sediment provenances imply that the NCC and NQT could be connected during the late Mesoproterozoic to early Neoproterozoic. The pattern of detrital zircon ages in the new sediments from the Baishugou Formation is distinct from those in the Kuanping Group and the Palaeozoic Erlangping Complex, which are at present sandwiched between the NCC and the NQT. The detrital zircons from these two groups are dominated by an age peak at ca. 1000 Ma, which is formed as the result of amalgamation of the NQT and the Rodinia Supercontinent during the Grenville orogeny. It is possible that the new sediments of the Baishugou Formation were deposited before Grenville orogeny. 相似文献
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Composite nature of the North China Granulite-Facies Belt: Tectonothermal and geochronological constraints 总被引:13,自引:3,他引:13
Guochun Zhao Min Sun Simon A. Wilde Li Sanzhong Shuwen Liu Jian Zhang 《Gondwana Research》2006,9(3):337-348
Granulite-facies rocks are intermittently exposed in a roughly E–W trending belt that extends for approximately 2000 km across the North China Craton, from the Helanshan, Qianlishan, Wulashan–Daqingshan, Guyang and Jining Complexes in the Western Block, through the Huai'an, Hengshan, Xuanhua and Chengde Complexes in the Trans-North China Orogen, to the Jianping (Western Liaoning), Eastern Hebei, Northern Liaoning and Southern Jilin Complexes in the Eastern Block. The belt is generally referred to as the North China Granulite-Facies Belt, previously interpreted as the lowest part of an obliquely exposed crust of the North China Craton. Recent data indicate that the North China Granulite-Facies Belt is not a single terrane. Instead, it represents components of three separate terranes: the Eastern and Western Blocks and Trans-North China Orogen. Each of these units records different metamorphic histories and reflect the complex tectonic evolution of the NCC during the late Archean and Paleoproterozoic. Mafic granulites in the Eastern Block and the Yinshan Terrane (Western Block) underwent medium-pressure granulite-facies metamorphism at about 2.5 Ga, with anticlockwise P–T paths involving near isobaric cooling following peak metamorphism, reflecting an origin related to intrusion and underplating of mantle-derived magmas. Pelitic granulites in the Khondalite Belt (Western Block) underwent medium-pressure granulite-facies metamorphism at about 2.0–1.9 Ga, with clockwise P–T paths, which record the Paleoproterozoic amalgamation of the Yinshan and Ordos Terranes to form the Western Block. Mafic and pelitic granulites in the Trans-North China Orogen experienced high- to medium-pressure granulite-facies metamorphism at 1.85 Ga, with clockwise P–T paths involving nearly isothermal decompression following peak metamorphism, which are in accord with the final collision between the Eastern and Western Blocks to form the North China Craton at 1.8 Ga. The NCGB cannot therefore represent a separate unique terrane; instead it reflects the amalgamation of three separate granulite terranes that evolved independently and at different times. 相似文献
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《地学前缘(英文版)》2020,11(3):1053-1068
The late Neoarchean metamorphosed volcanic rocks in the southern Liaoning Terrane (SLT) of the eastern North China Craton (NCC) are mainly composed of amphibolites and felsic gneisses and can be chemically classified as basalt (Group#1), basaltic andesite (Group#2), dacite (Group#3) and rhyodacite (Group#4). LA-ICP-MS zircon U–Th–Pb dating reveals that they formed at ~2.53–2.51 Ga. Group#1 samples are characterized by approximately flat chondrite-normalized rare earth element (REE) patterns with low (La/Yb)N ratios and a narrow range of (Hf/Sm)N ratios, and their magmatic precursors were generated by partial melting of a depleted mantle wedge weakly metasomatized by subducted slab fluids. Compared to Group#1 samples, Group#2 samples display strongly fractionated REE patterns with higher (La/Yb)N ratios and more scattered (Hf/Sm)N ratios, indicative of a depleted mantle wedge that had been intensely metasomatized by slab-derived melts and fluids. Group#3 samples are characterized by high MgO and transition trace element concentrations and fractionated REE patterns, which resemble typical high-Si adakites, and the magmatic precursors were derived from partial melting of a subducted oceanic slab. Group#4 samples have the highest SiO2 and the lowest MgO and transition trace element contents, and were derived from partial melting of basaltic rocks at lower crust levels. Integrating these tholeiitic to calc-alkaline volcanic rocks with the mass of contemporaneous dioritic-tonalitic-trondhjemitic-granodioritic gneisses, the late Neoarchean volcanic rocks in the SLT were most likely produced in an active continental margin. Furthermore, the affinities in lithological assemblages, metamorphism and tectonic regime among SLT, eastern Hebei to western Liaoning Terrane (EH–WLT), northern Liaoning to southern Jilin Terrane (NL–SJT), Anshan-Benxi continental nucleus (ABN) and Yishui complex (YSC) collectively indicate that an integral and much larger continental block had been formed in the late Neoarchean and the craton-scale lateral accretion was a dominantly geodynamic mechanism in the eastern NCC. 相似文献
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华北克拉通从稳定到破坏的演化过程对有关地球动力学的经典理论提出了挑战,研究其独特的演化历史是固体地球科学研究的一项重要内容。上地幔矿物晶体的各向异性记录了上地幔发生构造变形的信息,研究上地幔地震波各向异性能够揭示现今和构造历史时期所发生的构造运动。本文总结了近年来作者在华北克拉通地区所进行的高密度、覆盖广泛的地震波横波分裂观测研究结果。横波分裂的快轴方向与绝对板块运动方向的不一致,以及横波分裂参数快速的空间变化特征表明了华北克拉通的SKS横波分裂主要反映上地幔的变形。观测结果表明:鄂尔多斯块体保留了克拉通较弱的各向异性特征,其西端体现了元古代克拉通拼合的变形特征; 中新生代华北克拉通破坏事件以不同的机制主导了华北克拉通中部和东部的上地幔变形,在东部地区北西—南东向的拉张应力作用使得快轴方向平行于拉张方向,而在中部则因受到较厚岩石圈的阻挡使得地幔流动改变了方向,因此造成了北东和北北东向的岩石圈拉张。 相似文献