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    题名 作者 年代 出处 被引量
1华北岩石圈减薄的时空不均一特征显示文摘总结了华北中生代基性岩浆活动的年代学资料和中 -新生代岩浆的地球化学特征 ,认为岩浆随时间的演化趋势与岩石圈减薄过程密切相关。根据富集岩石圈地幔来源的岩浆作用持续时间 (180~ 90Ma)认为该区岩石圈减薄时限约为 10 0Ma。这暗示热机械侵蚀可能是华北岩石圈减薄的主要机制。华北东、西部新生代玄武岩岩浆具有相反的演化趋势 。徐义刚 2004高校地质学报2004,10,3:97
2华北克拉通东部中生代岩石圈减薄的过程与机制:中生代火成岩和深源捕虏体证据显示文摘基于最新的同位素年代学资料 ,华北克拉通东部中生代的岩浆作用可划分成四个阶段 ,即晚三叠世 ( 2 0 5~ 2 2 5Ma)碱性岩浆作用 ;中晚侏罗世 ( 1 5 5~ 1 6 0Ma)花岗质岩浆作用 ;早白垩世 ( 1 1 2~ 1 32Ma)双峰式岩浆作用和晚白垩世 ( 92~ 73Ma)碱性玄武质岩浆作用。徐淮地区中生代侵入岩中榴辉岩捕虏体的发现及其地质年代学资料 ( 2 1 9Ma)表明 ,华北克拉通东部中生代早期曾发生过一次重要的陆壳加厚过程。俯冲板片的断离以及高压—超高压变质岩的快速折返和晚三叠世 ( 2 0 5~ 2 2 5Ma)的碱性岩浆作用的存在均暗示 ,华北克拉通中生代岩石圈减薄已经开始。拆沉作用则是引起中生代早期岩石圈减薄的主要机制。中、晚侏罗世 ( 1 5 5~ 1 6 0Ma)花岗质岩浆作用形成于造山期后的伸展环境 ,代表了中生代岩石圈减薄的继续和发展。早白垩世 ( 1 1 2~ 1 32Ma)双峰式岩浆作用表明中生代岩石圈减薄达到了峰期。而幔源纯橄岩捕虏体中富硅质熔体的交代作用和玄武岩的高87Sr/ 86Sr值、低ε(Nd ,t)值特征表明 ,软流圈对岩石圈底部的化学侵蚀可能是导致该阶段岩石圈减薄的主导机制。晚白垩世 ( 92~ 73Ma)碱性玄武质岩浆作用和“海洋型”许文良 王清海 王冬艳 裴福萍 高山 2004地学前缘2004,11,3:150
3玄武岩浆起源和演化的一些基本概念以及对中国东部中 -新生代基性火山岩成因的新思路(英文)显示文摘以全球大地构造为背景讨论了玄武岩浆起源和演化的一些基本概念。这些概念的正确理解有助于合理解释各种环境中火成岩的形成机制,也有助于依据野外岩石组合来判别古构造环境。在此基础上结合已有资料和观察,对中国东部中生代岩石圈减薄及中-新生代基性火山岩成因提出了一些新解释。这些解释与地质观察相吻合,且符合基本的物理学原理。虽然中国东部基性火山活动可称为“板内”火山活动,但它实际上是板块构造的特殊产物。中国东部中生代岩石圈减薄是其下部被改造为软流层的缘故。这种改造是加水“软化”所致。水则源于中国东部地幔过渡带(410~6 6 0km)内古太平洋(或其前身)俯冲板块脱水作用。其将岩石圈底部改造为软流层的过程,实际上就是岩石圈减薄的过程。因为软流层是地幔对流的重要部分,而大陆岩石圈则不直接参与地幔对流。中生代玄武岩具有εNd<0的特征,说明其源于新近改造而成的软流层,亦即原古老岩石圈之底部。中国大陆北北东-南南西向的海拔梯度突变界线与东-西部重力异常,陆壳厚度变化,以及地幔地震波速变化梯度吻合。因此可将北北东-南南西向梯度线称为“东-西梯度界”。该界东-西海拔高差(西部高原与东部丘陵平原) ,陆壳厚度差异(西部厚而东部薄)和10 0~15牛耀龄 2005高校地质学报2005,11,1:181
4中国东部中、新生代岩石圈转型与减薄研究若干问题显示文摘文中对中国大陆岩石圈的持续热点研究领域?东部中、新生代岩石圈巨厚减薄所涉及的问题进行了简要评述,特别是对减薄问题的提出和认识的历史过程作了较详细的回顾。笔者特别强调了中生代华北岩石圈地幔高度化学不均一性所反映的减薄作用时空分布特征,以及中生代岩石圈地幔的两次转型所导致的高度化学不均一性,进而建议以岩石圈全面转型来描述这一大尺度地球动力学过程。在此基础上讨论了减薄过程的可能机制,认为虽然在局部地区有可能存在拆沉作用,但从全局来看目前更多的岩石地球化学证据与热减薄-化学减薄的假说相兼容。而反映地球深部圈层相互作用的中生代全球事件则被解释为中国东部岩石圈地幔全面转型的动力学背景。显然,对此问题的深化仍将构成本世纪我国固体地球科学一个重要研究领域。周新华 2006地学前缘2006,13,2:155
5华北岩石圈减薄与克拉通破坏研究的主要学术争论显示文摘华北岩石圈减薄是近十年来国内外研究的热门课题,但关于岩石圈减薄的具体时间、减薄幅度、空间分布范围、机制及其构造控制因素,多有争论。本文对上述问题进行了全面的回顾与讨论,内容包括:(1)是克拉通破坏还是岩石圈减薄;(2)古生代以来华北克拉通岩石圈地幔时代与壳幔解耦;(3)岩石圈减薄与克拉通破坏发生的时间;(4)岩石圈减薄的垂向幅度;(5)克拉通破坏在中国东部的空间分布;(6)克拉通破坏机制;(7)克拉通破坏的地球动力学原因;(8)华北克拉通破坏在世界上的特殊性等。文后,汇编了近10余年来华北岩石圈减薄与克拉通破坏研究的重要文献。吴福元 徐义刚 高山 郑建平 2008岩石学报2008,24,6:410
6中国东北中生代构造体制与区域成矿背景:来自中生代火山岩组合时空变化的制约显示文摘本文系统总结了东北地区中生代火山岩的年代学、岩石组合及其时空分布规律,以便对环太平洋构造体系和蒙古——鄂霍茨克构造体系中生代的演化历史及其东北地区中生代区域成矿背景给出制约。基于火山岩中锆石U——Pb定年结果,东北地区中生代火山作用可划分成六期:晚三叠世(200~228Ma)、早——中侏罗世(173~190Ma)、中——晚侏罗世(158~166Ma)、早白垩世早期(138~145Ma)、早白垩世晚期(106~133Ma)和晚白垩世(88~97Ma)。晚三叠世火山作用主要分布在吉黑东部和小兴安岭——张广才岭地区,前者为A型流纹岩,后者为双峰式火山岩组合,它们共同揭示了古亚洲洋最终闭合后的伸展环境;早——中侏罗世火山岩主要分布在吉黑东部、小兴安岭——张广才岭和额尔古纳地区,吉黑东部和额尔古纳地区早——中侏罗世钙碱性火山岩的存在分别标志着古太平洋板块和蒙古——鄂霍茨克洋板块俯冲作用的发生,而小兴安岭——张广才岭早——中侏罗世火山岩则以双峰式火成岩组合为特征,反映了双向俯冲的弧后伸展环境;中——晚侏罗世和早白垩世早期火山岩主要分布在松辽盆地以西和冀北——辽西地区,前者为碱性——亚碱性的过渡系列,主要由玄武粗安岩、粗安岩和少量粗面岩组成,后者为A型流纹岩或碱性流纹岩组成,这些火山岩形成于加厚陆壳的坍塌或拆沉阶段;早白垩世晚期火山岩广泛分布于东北地区,吉黑东部为钙碱性火山岩组合,而松辽盆地和大兴安岭地区则主要为双峰式火山岩组合,前者标志着古太平洋板块的俯冲,后者与早期加厚陆壳的拆沉和/或类似弧后的伸展环境有关;晚白垩世火山岩主要分布在吉黑东部和陆内,前者为钙碱性火山岩组合,后者为碱性玄武岩,反映了来自东部环太平洋构造体系的俯冲作用。综合上述中生代火山岩的岩石组合及时空分布特征,可以判定:1)环太平洋构造体系对东亚大陆下的俯冲始于早侏罗世,中生代期间存在早侏罗世、早白垩世晚期和晚白垩世三次俯冲事件,其影响的空间范围主要在松辽盆地及其以东地区,陆缘和古俯冲带是寻找斑岩型矿床的有利场所,而陆内的伸展区域主要与浅成低温热液矿床有关;2)蒙古——鄂霍茨克构造体系经历了中生代早期的俯冲事件和中侏罗世及早白垩世早期两次陆内推覆事件,其影响的空间范围主要在松辽盆地以西地区和华北地块北缘,中生代早期的俯冲事件主要与活动陆缘背景下的斑岩型矿床关系密切,而晚侏罗世和早白垩世两次与加厚陆壳拆沉有关的伸展背景有利于多金属矿床的形成。许文良 王枫 裴福萍 孟恩 唐杰 徐美君 王伟 2013岩石学报2013,29,2:436
7东南沿海晚白垩世火山岩浆活动特征及其构造背景显示文摘东南沿海晚白垩世火山岩浆活动微弱,研究程度不高,但构造意义重要。对浙闽沿海晚白垩世小雄组和石牛山组火山岩及其共生侵入岩类进行了较系统研究。测得小雄破火山中央侵入相正长斑岩和石牛山破火山中央侵入相正长花岗斑岩的锆石年龄分别为87.9±1.2Ma和93.8±1.3Ma;岩石学和地球化学特征表明,小雄组和石牛山组火山岩及其共生侵入岩类均属后造山A型花岗质岩类,它们是在东南沿海巨型白垩纪A型花岗岩带主体形成之后、岩石圈进一步强烈伸展的背景下形成的,是区域中生代最晚期的酸性火山岩浆活动产物,标志着燕山造山过程最终结束于约90Ma。邢光福 陈荣 杨祝良 周宇章 李龙明 姜杨 陈志洪 2009岩石学报2009,25,1:75
8河北平泉光头山碱性花岗岩的时代、Nd-Sr同位素特征及其对华北早中生代壳幔相互作用的意义显示文摘光头山碱性花岗岩产出在华北北部的前寒武纪基底变质岩系之中,造岩矿物组合为石英+碱性长石+纳铁闪石+霓辉石+钠铁非石±星叶石,副矿物有锆石、钛铁矿、硅钛铈铁矿等。晚期的伟晶岩囊状体由颗粒粗大的石英、碱性长石和纳铁闪石等组成,全岩Rb-Sr等时线年龄为T=200±16Ma,(^(87)Sr/^(86)Sr)_i=0.705±0.008,MSWD=11.2,代表冷却年龄,单颗粒锆石U-Pb谐和年龄为220±1Ma,代表岩体侵位时代。光头山碱性花岗岩以A/CNK<1和A/NK<1,Al_2O_3、MgO、CaO和Ba、Sr含量低,全碱含量、MnO和Rb、Ga等含量高,负Eu异常特别显著等为特征。矿物学和地球化学完全符合A型花岗岩的特征。光头山碱性花岗岩是华北地区早中生代后造山环境下岩浆活动的产物。光头山碱性花岗岩的ε_(Nd)(T=220Ma)平均值为-8.9,明显高于华北前寒武纪下地壳岩石的范围,而冀北地区前寒武纪高压麻粒岩地体虽具有大陆地幔的特征,但未经历过部分重熔,表明至少前寒武纪下地壳不可能是岩浆主要的或唯一的来源同样,现今华北下地壳由于时代较新,也不可能成为岩浆的源岩,对比时代相近的超镁铁岩和煌斑岩的Nd同位素特征,推测最可能的源区是1.8~1.9Ga形成的富集的岩石圈地幔。光头山碱性花岗岩和华北北缘早中生代侵入岩带规模很大,以富集地慢来源的岩浆为主,反映了当时的岩浆活动已经具有相当的规模和强度,如果130Ma前后中国东部大规模岩浆活动之时,是岩石圈减薄已经达到最大程度之际,那么,此前一定时间段内的幔源岩浆活动都有可能与岩石圈减薄从开始到鼎盛的过程有关,所以,华北北缘早中生代岩浆活动可能是华北中生代岩石圈减薄过程早期阶段的产物。与岩石圈减薄过程有关的早中生代岩浆活动还在中国东北地区东部和阿拉善北部形成了后造山A型花岗岩。与岩石圈减薄过程相关的早中生代侵入岩在一定范围内的带状分布,表明当时岩石圈减薄过程可能并没有涉及到整个中国东部地区只有到了侏罗纪-白垩纪,岩石圈减薄过程才在更大的区域内广泛发生。所以说,中国东部中新生代岩石圈减薄过程是在时间上从早中生代就已经开始、在空间上从华北北缘-中国东北地区东部开始向外逐渐扩展的一个深部过程。这个深部过程对应的地表表现是,先在华北北缘和中国东北东部地区形成规模很大的早中生代侵入岩带。而后,当岩石圈减薄过程扩展到整个中国东部时,岩浆活动才达到鼎盛时期,这可能就是中国东部侏罗纪-白垩纪大规模岩浆活动的深部原因所在。而以富集地幔源区为主的岩浆活动还导致了华北北缘地壳垂向生长。韩宝福 加加美宽雄 李惠民 2004岩石学报2004,20,6:79
9华北东南部中生代岩石圈地幔性质、组成、富集过程及其形成机理显示文摘本文通过对我国华北东南部中生代幔源岩浆活动的时空分布规律及其地球化学特征的系统总结来进一步厘定该地区中生代岩石圈地幔的性质和组成,并通过与华北内部如鲁中地区中生代岩石圈地幔的对比研究探讨华北东部岩石圈的时空演化规律、富集过程及其形成机理。幔源岩石的 Sr-Nd-Ph 同位素特征表明华北东部中生代岩石圈地幔存在明显的时空不均匀性,其中心部位如鲁中地区以弱富集地幔为主体;而东南部如鲁西南和胶东地区则为类似 EM2型地幔(^(87)Sr/^(86)Sr_i 可高达0.7114)。华北东南部中生代岩石圈地幔随时间的演化特征也很明显。这些幔源岩石的地球化学特征和玄武岩中地幔岩捕虏体(橄榄岩和辉石岩)和捕虏晶(橄榄石和辉石)的组成和结构特征皆证明华北东南部中生代岩石圈地幔曾受到过富硅熔体的强烈改造。橄榄岩-熔体的相互反应是该区岩石圈改造和组成转变的重要方式,从而造成古生代高镁橄榄岩转变为晚中生代低镁橄榄岩和辉石岩。进入岩石圈地幔的熔体具下/中地壳物质重熔的特征,从而导致该区晚中生代岩石圈地幔的快速富集。有关华北东部中生代岩石圈减薄和改造的时限、过程和机制等问题也进行较详细的讨论。张宏福 周新华 范蔚茗 孙敏 郭锋 英基丰 汤艳杰 张瑾 牛利锋 2005岩石学报2005,21,4:74
10用玄武岩组成反演中—新生代华北岩石圈的演化显示文摘玄武岩的化学组成与地幔源区特征、部分熔融程度、地幔温度和岩石圈厚度等多个因素有关,因此可以用来反演深部地幔的演化。文中简要地阐述了用玄武岩组成获得岩石圈厚度及其变化的方法,并总结了有关华北中-新生代岩浆演化的两个最主要特征:(a)晚中生代岩浆活动经历了由早期的源自富集地幔的岩浆向后期亏损地幔起源岩浆的转变,而两个阶段为一岩浆间隙期(~10Ma)所分隔;(b)华北东、西部新生代玄武岩具有相反的碱性强度随时间的变化趋势。这些岩浆演化特征可以用岩石圈减薄过程中地幔地温梯度的逐渐升高、岩石圈地幔中富集组分在短时间内的不可再生以及岩石圈盖效应来解释。该认识为华北岩石圈减薄的时间尺度和机制以及减薄作用的时空不均一性提供了新的制约。徐义刚 2006地学前缘2006,13,2:63
11庐枞早白垩世火山岩的地球化学特征及其源区意义显示文摘从中生代到新生代,华北东部岩石圈地幔发生了减薄以及地球化学性质置换,而扬子地块东部中生代岩石圈地幔也表现出类似的过程,对中生代火山岩的地球化学研究有助于了解这一变化过程以及发生置换时的时空关系。庐枞火山岩出露于扬子地块东部,为一套包括粗玄岩–玄武粗安岩–粗面岩的富碱橄榄安粗岩系。研究了双庙组基性火山岩,这些岩石富集Rb,K,Sr,Th和轻稀土元素,亏损高场强元素。(87Sr/86Sr)i=0.7060~0.7063,εNd(t)=-3.9~-6.2,(206Pb/204Pb)i=17.788~18.125,(207Pb/204Pb)i=15.511~15.546,(208Pb/204Pb)i=37.735~38.184。在喷出地表过程中,火山岩没有受到明显的地壳物质混染,因此元素和同位素组成反映了地幔源区的地球化学特征。其地幔源区具有同位素富集特征,表明火山岩源区曾受到地壳物质的影响,是富集地幔部分熔融的产物,并经历明显的结晶分异作用。庐枞火山岩的岩浆成分和源区特征反映该地区在晚中生代岩石圈地幔的伸展和软流圈地幔上涌的演化过程。谢智 李全忠 陈江峰 高天山 2007高校地质学报2007,13,2:73
12On the timing and duration of the destruction of the North China Craton显示文摘The timing and duration of the destruction of the North China Craton, which is pivotal to understanding the destruction mechanism and its geodynamic controlling factors, still remain controversial. On the basis of the principles of magma genesis and evolution, first we outline magmatic expressions that can be related to cratonic destruction, then use magmatic and basin evolution trends to constrain the timescale of the lithospheric thinning in North China. The main conclusions include: (1) the thinning of the lithosphere beneath the North China Craton might have started, at least locally, since late Carboniferous-late Triassic, attained its climax during the late Jurassic-early Cretaceous, and continued till the end of late Cretaceous-early Cenozoic. The destruction of the North China Craton was a relatively slow, rather than a dramatic process. (2) The weakened lithospheric zones along the margins and interiors of the craton played an important role in cratonic destruction, partly accounting for the heterogeneous pattern of cratonic destruction. (3) The tectonic factors that controlled the destruction of the North China Craton may be multiple. The late Carboniferous southward subduction of the Paleo-Asian plate and the late Triassic collision between North China and South China may have re-activated the craton by influencing the thermal and integral structure of the craton. The Pacific subduction underneath the eastern Asian continent played a determinant role in the cratonic destruction, governing the distribution patterns of post-Mesozoic basins and major tectonic configuration, temporal change of magmatism and formation of the North-South gravity lineament.XU YiGang LI HongYan PANG ChongJin HE Bin 2009Chinese Science Bulletin2009,54,19:70
13橄榄岩-熔体的相互作用:岩石圈地幔组成转变的重要方式显示文摘橄榄岩-熔体/岩浆的相互作用常被用来解释蛇绿岩套橄榄岩、造山带橄榄岩、超镁铁质侵入杂岩体、地幔橄榄岩捕虏体中某些具有不平衡结构和矿物组成的岩石的形成过程。橄榄岩-熔体的反应主要有两种方式,即消耗橄榄石(和单斜辉石)生成斜方辉石或消耗斜方辉石生成橄榄石(和单斜辉石)。反应的结果不仅造成矿物百分含量的变化,而且造成矿物组成的变化;后者更重要但未引起足够的重视。华北东部中生代玄武质岩石中具有环带状结构的橄榄石和辉石捕虏晶,特别是具有环带状结构的地幔橄榄岩捕虏体的发现,暗示这种橄榄岩-熔体的相互作用在华北东南部中生代岩石圈地幔中很可能普遍存在,为岩石圈地幔组成转变和快速富集的重要方式。这是全球首例由橄榄岩-熔体相互反应造成的岩石圈地幔大规模的组成变化。反应熔体来源途径主要有地壳来源和软流圈地幔来源。来源不同的熔体与橄榄岩的反应造成的组成变化完全不同。张宏福 2006地学前缘2006,13,2:59
14Evolution of the Mesozoic Granites in the Xiong'ershan-Waifangshan Region,Western Henan Province,China,and Its Tectonic Implications显示文摘摘要:基于同位素的年龄和 geochemical 分析的新数据,中生代花岗石的三种类型在西方的河南省为 Xiong'ershan-Waifangshan 区域被识别了省:在早阶段(160 妈) 的 high-Ba-Sr 我类型花岗石 emplaced,在中间的阶段(130 妈) 的我类型花岗石和在迟了的阶段(115 妈) 的 anorogenic A 类型花岗石。high-Ba-Sr 我类型花岗石的 Geochemical 特征建议它可能被与闪石和石榴石的主要残余的部分融化从变厚的更低的外壳产生了。异例和 Sr 内容变化反映的否定 Eu 的渐渐的增加这些花岗石从的来源区域的进步 shallowing 对迟了的舞台早。早阶段的 Wuzhangshan 花岗石的新 40Ar/39 Ar 高原年龄(156.0 摮牵摥愠 ? 敬獡 ? 睴? 瑳条獥 ? 桔 ? 慥汲 ? 瑳条 ? 桳畯摬戠 ? 敲慬整 ? 潴琠敨椠瑮畲楳湯漠 ? 桴 ? 慭湩戠摯 ? 景琠敨圠湡硧慩汮湩 ? 牧湡瑩 ? 眠楨档眠獡攠灭慬散 ? 畤楲杮琠敨 ? 摮獯湩慩? 数楲摯眠瑩 ?? 楤条湥瑥捩愠摮洠湩牥污穩摥愠敧漠 ? 有 ? 0 ?????? ??NAN Yigui ZHANG Shihong Franco PIRAJNO ZHANG Yuanhou 2007Acta Geologica Sinica(English Edition)2007,81,2:57
15Chronology and Sources of Mesozoic Intrusive Complexes in the Xuzhou-Huainan Region, Central China: Constraints from SHRIMP Zircon U-Pb Dating显示文摘SHRIMP zircon U-Pb dating in the Liguo and Jiagou intmsives indicates that they were formed at ~130 Ma in the Early Cretaceous. Most inherited zircons in the Liguo intrusive were formed at 2509±43 Ma. Most inherited and detrital zircons in the Jiagou intrusive were formed at ~2500 Ma, ~2000 Ma and ~1800 Ma. The SHRIMP zircon U-Pb dating in two gneiss xenoliths from the Jiagou intrusive yields the ages of 2461+22 Ma and 2508±15 Ma, respectively. The dating results from inherited and detrital zircons in the intmsives and the gneiss xenoliths imply that the magmas could be derived from the partial melting of the basement of the North China Block (NCB). The magmatism is strong and extensive in the periods from 115 to 132 Ma, which is of typical bimodal characteristics. It is suggested that the lithospheric thinning in the eastern North China Block reached its peak in 115-132 Ma.XUWenliang WANGQinghai LIUXiaochun WANGDongyan GUOJinghui 2004Acta Geologica Sinica(English Edition)2004,78,1:46
16中国东南部中—新生代地球动力学背景若干问题的探讨显示文摘近年来,有关中国东南部中新生代地球动力学背景的研究已取得了重要的进展,主要体现在:地幔性质、岩石圈减薄、岩石圈伸展和构造背景四个方面。研究表明,中国东南部中新生代的地幔性质主体是亏损地幔和EM型富集地幔混合,中生代以富集地幔为主,而新生代主体为亏损地幔。中国东南部晚中生代经历了岩石圈减薄,并伴生了玄武质底侵作用,具有较为复杂的岩石圈增生—减薄过程。大量事实表明中国东南部中新生代存在多期岩石圈伸展事件,侏罗纪存在局部岩石圈伸展,主要集中于内陆地区,白垩纪经历了区域性岩石圈伸展。近二十年来,中国东南部大规模岩浆的构造背景一直存在着争论,焦点在于太平洋俯冲对中国东南部产生什么的影响。从目前已有的资料来看,白垩纪地幔源区受到太平洋俯冲的影响,太平洋俯冲和玄武质岩浆底侵诱发了地壳加厚,岩石圈拆沉和软流圈上涌而导致岩石圈伸展是中国东南部主要构造背景。但是,中国东南部晚中生代以来的岩石圈伸展—减薄及其深部动力学机制是目前急需进一步深入探讨的问题。谢桂青 毛景文 胡瑞忠 李瑞玲 曹建劲 2005地质论评2005,51,6:45
17Comparison of mantle-derived matierals from different spatiotemporal settings:Implications for destructive and accretional processes of the North China Craton显示文摘Cratonic destruction or lithospheric thinning beneath North China makes it as one of the most ideal areas for the studying on the formation and evolution of continent. However, the mechanism, time, range and dynamic setting of the destruction, even the lithospheric status before the destruction, are contentious. The comparison among mantle xenoliths in the volcanic rocks from different captured times (e.g. Paleozoic, Mesozoic and Cenozoic) and locations (e.g. intra-plate or its rim, the translithospheric Tanlu fault or the North-South Gravity Line), and peridotitic massifs within the Sulu-Dabie ultrahigh-pressure metamorphism belt along the southern margin of the North China Craton, indicates that (1) the cratonic lithosphere is heterogeneous in structure and composition, and contains mantle weak zones; and (2) the Mesozoic-Cenozoic lithospheric thinning process is complex, including lateral spreading of lithosphere, interaction between melt and peridotite, non-even asthenospheric erosion (huge lithospheric thinning), and the limited lithospheric accretion and thus thickening, which resulted in the final replacement of the refractory cratonic lithosphere by juvenile fertile mantle. In early Mesozoic, the integrity of the North China Craton was interrupted, even destroyed by subduction and collision of the Yangtze block. The mantle wedge of the North China Craton was also metasomatized and modified by melt/fluids revealed from the subducted Yangtze continent. Lithospheric mantle extension and tectonic intrusion of the North China Craton also occurred, accompanied by the asthenospheric upwelling that due to the detachement of the subducted Yangtze continent (orogenic root). During early Cretaceous-early Tertiary, the huge thinning of lithosphere was triggered by the upwelling astheno- sphere due to the subduction of the Pacific plate. Since late Tertiary, the cooling of the upwelling asthenosphere resulted in the replacement of the mantle in existence by the newly accreted lithosphere, accompanied with a little thickness in lithosphere and thus finally achieved the lithospheric thinning as a whole. The translithospheric faults, such as the Tanlu fault, play excellent channels for asthenospheric upwelling. Meanwhile, the channels in lithosphere are usually irregular, which resulted in different eruption times of magma. Peridotite xenolith in the basalts erupted at 100 Ma is mainly fertile, indicating such a fact, that is, the mantle replacement occurred before the eruption (e.g. 125―100 Ma) beneath the eastern part of the North China Craton.ZHENG JianPing 2009Chinese Science Bulletin2009,54,19:45
18Mesozoic mafic magmatism in North China:Implications for thinning and destruction of cratonic lithosphere显示文摘The North China Craton(NCC) has been thinned from >200 km to <100 km in its eastern part. The ancient subcontinental lithospheric mantle(SCLM) has been replaced by the juvenile SCLM in the Meoszoic. During this period, the NCC was destructed as indicated by extensive magmatism in the Early Cretaceous. While there is a consensus on the thinning and destruction of cratonic lithosphere in North China, it has been hotly debated about the mechanism of cartonic destruction.This study attempts to provide a resolution to current debates in the view of Mesozoic mafic magmatism in North China. We made a compilation of geochemical data available for Mesozoic mafic igneous rocks in the NCC. The results indicate that these mafic igneous rocks can be categorized into two series,manifesting a dramatic change in the nature of mantle sources at ~121 Ma. Mafic igneous rocks emplaced at this age start to show both oceanic island basalts(OIB)-like trace element distribution patterns and depleted to weakly enriched Sr-Nd isotope compositions. In contrast,mafic igneous rocks emplaced before and after this age exhibit both island arc basalts(IAB)-like trace element distribution patterrs and enriched Sr-Nd isotope compositions.This difference indicates a geochemical mutation in the SCLM of North China at^121 Ma. Although mafic magmatism also took place in the Late Triassic, it was related to exhumation of the deeply subducted South China continental crust because the subduction of Paleo-Pacific slab was not operated at that time. Paleo-Pacific slab started to subduct beneath the eastern margin of Eruasian continent since the Jurrasic. The subducting slab and its overlying SCLM wedge were coupled in the Jurassic, and slab dehydration resulted in hydration and weakening of the cratonic mantle. The mantle sources of ancient IAB-like mafic igneous rocks are a kind of ultramafic metasomatites that were generated by reaction of the cratonic mantle wedge peridotite notonly with aqueous solutions derived from dehydration of the subducting Paleo-Pacific oceanic crust in the Jurassic but also with hydrous melts derived from partial melting of the subducting South China continental crust in the Triassic. On the other hand, the mantle sources of juvenile OIB-like mafic igneous rocks are also a kind of ultramafic metasomatites that were generated by reaction of the asthenospheric mantle underneath the North China lithosphere with hydrous felsic melts derived from partial melting of the subducting Paleo-Pacific oceanic crust. The subducting Paleo-Pacific slab became rollback at^144 Ma. Afterwards the SCLM base was heated by laterally filled asthenospheric mantle, leading to thinning of the hydrated and weakened cratonic mantle. There was extensive bimodal magmatism at 130 to 120 Ma, marking intensive destruction of the cratonic lithosphere. Not only the ultramafic metasomatites in the lower part of the cratonic mantle wedge underwent partial melting to produce mafic igneous rocks showing negative ε_(Nd)(t) values, depletion in Nb and Ta but enrichment in Pb, but also the lower continent crust overlying the cratonic mantle wedge was heated for extensive felsic magmatism. At the same time, the rollback slab surface was heated by the laterally filled astheno spheric mantle, resulting in partial melting of the previously dehydrated rocks beyond rutile stability on the slab surface. This produce still hydrous felsic melts, which metasomatized the overlying astheno spheric mantle peridotite to generate the ultramafic metasomatites that show positive ε_(Nd)(t) values, no depletion or even enrichment in Nb and Ta but depletion in Pb. Partial melting of such metasomatites started at^121 Ma, giving rise to the mafic igneous rocks with juvenile OIB-like geochemical signatures. In this context, the age of ~121 Ma may terminate replacement of the ancient SCLM by the juvenile SCLM in North China. Paleo-Pacific slab was not subducted to the mantle transition zone in the Mesozoic as revealed by moder seismic tomography, and it was subducted at a low angle since the Jurassic, like the subduction of Nazca Plate beneath American continent. This flat subduction would not only chemically metasomatize the cratonic mantle but also physically erode the cratonic mantle. Therefore, the interaction between Paleo-Pacific slab and the cratonic mantle is the first-order geodynamic mechanism for the thinning and destruction of cratonic lithosphere in North China.Yongfei ZHENG Zheng XU Zifu ZHAO Liqun DAI 2018Science China Earth Sciences2018,61,4:47
19Subduction history of the Paleo-Pacific slab beneath Eurasian continent: Mesozoic-Paleogene magmatic records in Northeast Asia显示文摘This paper presents a review on the rock associations, geochemistry, and spatial distribution of Mesozoic-Paleogene igneous rocks in Northeast Asia. The record of magmatism is used to evaluate the spatial-temporal extent and influence of multiple tectonic regimes during the Mesozoic, as well as the onset and history of Paleo-Pacific slab subduction beneath Eurasian continent. Mesozoic-Paleogene magmatism at the continental margin of Northeast Asia can be subdivided into nine stages that took place in the Early-Middle Triassic, Late Triassic, Early Jurassic, Middle Jurassic, Late Jurassic, early Early Cretaceous, late Early Cretaceous, Late Cretaceous, and Paleogene, respectively. The Triassic magmatism is mainly composed of adakitic rocks,bimodal rocks, alkaline igneous rocks, and A-type granites and rhyolites that formed in syn-collisional to post-collisional extensional settings related to the final closure of the Paleo-Asian Ocean. However, Triassic calc-alkaline igneous rocks in the Erguna-Xing'an massifs were associated with the southward subduction of the Mongol-Okhotsk oceanic slab. A passive continental margin setting existed in Northeast Asia during the Triassic. Early Jurassic calc-alkaline igneous rocks have a geochemical affinity to arc-like magmatism, whereas coeval intracontinental magmatism is composed of bimodal igneous rocks and A-type granites. Spatial variations in the potassium contents of Early Jurassic igneous rocks from the continental margin to intracontinental region, together with the presence of an Early Jurassic accretionary complex, reveal that the onset of the PaleoPacific slab subduction beneath Eurasian continent occurred in the Early Jurassic. Middle Jurassic to early Early Cretaceous magmatism did not take place at the continental margin of Northeast Asia. This observation, combined with the occurrence of low-altitude biological assemblages and the age population of detrital zircons in an Early Cretaceous accretionary complex,indicates that a strike-slip tectonic regime existed between the continental margin and Paleo-Pacific slab during the Middle Jurassic to early Early Cretaceous. The widespread occurrence of late Early Cretaceous calc-alkaline igneous rocks, I-type granites, and adakitic rocks suggests low-angle subduction of the Paleo-Pacific slab beneath Eurasian continent at this time. The eastward narrowing of the distribution of igneous rocks from the Late Cretaceous to Paleogene, and the change from an intracontinental to continental margin setting, suggest the eastward movement of Eurasian continent and rollback of the PaleoPacific slab at this time.Jie TANG Wenliang XU Feng WANG Wenchun GE 2018Science China Earth Sciences2018,61,5:48
20太行山南段符山高镁闪长岩的成因——拆沉陆壳物质熔融的熔体与地幔橄榄岩反应的结果显示文摘本文对太行山南段符山高镁闪长岩进行了年代学与地球化学研究,结合其中地幔橄榄岩包体的研究,对符山高镁闪长岩的成因和中生代岩石圈地幔的性质进行了探讨。研究表明,符山闪长岩体是由一套含橄榄石角闪闪长岩-角闪闪长岩-闪长岩构成。含橄榄岩包体的寄主岩——角闪闪长岩中的锆石可划分为两种:一是代表寄主岩浆结晶的锆石:内部结构均匀、呈条带状吸收、自形-半自形晶形,具有较高的Th/U比值(1.10~4.08),其^(206)Pb/^(238)U年龄介于123~128Ma之间,12个点的加权平均值为125±1Ma,这表明岩体的形成时代为早白垩世;二是捕获或继承锆石:具有核边结构、吸收程度不均匀、呈浑圆状和自形-半自形两种,它们的Th/U比值介于0.32~2.03之间,构成了3组^(207)Pb/^(206)Pb加权平均年龄:2503±11Ma、2181±26Ma和1778±36Ma。该类岩石的SiO_2和MgO含量分别介于56.69%~59.21%和3.60%~6.33%之间;且以高Mg~#(0.51~0.64)、富Na(Na_2O/K_2O大于1)、高Cr(93.1×10^(-6)~420×10^(-6))、Ni(35.1×10^(-6)~137×10^(-6))为特征。该类岩石强烈富集轻稀土元素和大离子亲石元素、明显亏损高场强元素,(^(87)Sr/^(86)Sr)_i、ε_(Nd)(t)值和(^(206)Pb/^(204)Pb)_i分别变化于0.70581~0.70641、-8.30~-16.56和17.052~17.512之间。综合上述特征,同时结合地慢橄榄岩包体的特征和古元古代捕获锆石的大量存在,认为符山高镁闪长岩的原始岩浆起源于拆沉陆壳物质的部分熔融,其后经历了与地幔橄榄岩的反应过程。许文良 杨德彬 裴福萍 于洋 2009岩石学报2009,25,8:39
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