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1.
桂北圆石山花岗岩中发育大量镁铁质包体.LA-ICP-MS锆石U-Pb定年结果显示, 花岗岩形成于早侏罗世(179±2 Ma).花岗岩的地球化学特征表现为硅含量均一, 富碱更富钾、相对富铁而贫镁, 具有高的104×Ga/A1比值和Zr+Nb+Ce+Y含量, 属于A型花岗岩.圆石山花岗岩具有比较均一的Sr、Nd同位素组成(ISr=0.701 7~0.710 8, εNd(t)=-7.77~-4.55).镁铁质包体则显示了稍低的ISr值(0.705 0~0.707 1)和稍高的εNd(t)值(-4.87~-2.63).花岗岩的锆石原位Hf同位素组成为: (176Hf/177Hf)i=0.282 62~0.282 70, εHf(t)=-1.68~1.17, 相应的Hf同位素两阶段模式年龄TDM2变化于1.25~1.43 Ga之间.圆石山花岗岩可能是在伸展环境下由低成熟度的下地壳物质部分熔融所形成.自早侏罗世(~200 Ma)以来, 伸展作用是华南内陆构造背景的主体, 多期次的玄武质岩浆底侵作用可能是燕山期伸展作用的直接诱因.华南内陆早侏罗世时期可能仍处于板内“后碰撞”环境.   相似文献   

2.
本文对出露于佳木斯地块北部金银库组变沉积岩和侵入其中的火成岩脉体中的锆石进行了系统的LA-ICP-MS/SIMS U-Pb定年和Hf同位素研究,旨在限定金银库组的沉积时限,并揭示其物源及沉积环境。3个样品中锆石呈自形-半自形,显示典型的岩浆生长环带或条痕状吸收,暗示其岩浆成因。研究结果显示:采自金银库组绢云母片岩中的碎屑锆石72个分析点给出1 955~457 Ma的年龄区间,主要峰期年龄为814、757、568、491和463 Ma,其εHft)值为-13.9~-0.1,Hf同位素一阶段模式年龄TDM1和二阶段模式年龄TDM2分别为1 827~1 307 Ma和2 411~1 715 Ma。采自侵入金银库组的花岗细晶岩和辉绿岩分别给出了263和267 Ma的结晶年龄,前者的εHft)值为0.9~2.0,Hf同位素二阶段模式年龄TDM2为1 110~1 047 Ma;后者的εHft)值为-7.7~6.4,Hf同位素一阶段模式年龄TDM1为1 206~662 Ma。结合佳木斯地块及邻区约430 Ma火成岩的存在和金银库组中该期碎屑锆石的缺乏以及碎屑锆石年龄众数及其Hf同位素组成,我们认为金银库组的形成时代应为晚奥陶世至早志留世(463~430 Ma),形成于被动大陆边缘背景,沉积物源主要来自佳木斯地块及其邻区的古元古代和早古生代早期火成岩。  相似文献   

3.
华南晚中生代花岗岩及其形成的构造背景是目前研究的热点之一,通过对粤南地区A型花岗岩与镁铁质包体的年代学和地球化学组成的研究,探讨其岩石成因及构造意义.LA-ICP-MS锆石U-Pb测年结果显示,广东海宴花岗岩与镁铁质暗色微粒包体形成于早白垩世(分别为144.0±1.7 Ma和141.1±2.5 Ma).花岗岩具有典型的A型花岗岩特征:富硅、碱、铁而贫镁、钙,具有高的10 000×Ga/A1比值和Zr+Nb+Ce+Y含量等.包体具有钾玄质岩的特征:富碱更富钾、低钛、高铝及强烈富集大离子亲石元素和轻稀土元素等.花岗岩的ISr=0.706 6~0.712 2,εNd(t)=-7.01~-2.03,镁铁质包体则显示了稍低的ISr(0.708 5~0.711 1)和稍高的εNd(t)(-6.99~-2.23).元素及Sr-Nd同位素结果显示,花岗岩可能是中元古代地壳岩石部分熔融的产物,而钾玄质包体的初始岩浆可能源自俯冲沉积物交代的富集地幔.海宴A型花岗岩及其钾玄质包体的发现,暗示着区域早白垩世处于伸展的构造背景,不同于东南沿海地区的挤压构造应力环境.   相似文献   

4.
朱江  邱啸飞  周豹  张海军  吴越  邓新 《地球科学》2021,46(4):1311-1327
西大别地区定远组双峰式火山建造主要由流纹岩、流纹质凝灰岩和玄武岩组成,受区域变质作用影响较小,保留了良好的新元古代火山岩构造,成为理解扬子地块北缘大别山地区前寒武纪地质演化的极佳研究对象.为深化理解其成因和动力学背景,对该火山岩系开展了详细的岩相学、岩石地球化学和Sr-Nd-Hf同位素研究.流纹岩具较高的SiO2(70.06%~75.46%)、总碱(7.13%~7.89%)和Al2O3(12.96%~14.84%)含量,属于过铝质(A/CNK=1.05~1.27)、钙碱性系列,具S型花岗岩的亲缘性.岩石富集轻稀土((La/Yb)N=5.30~19.81),负Eu异常不明显.流纹岩锶同位素初始比值ISr为0.703 5~0.707 7,钕同位素εNd(t)值为-10.6~-6.5,两阶段Nd模式年龄TDM2=1.69~2.00 Ga.其锆石εHf(t)值介于-19.2~-7.2,两阶段Hf模式年龄TDM2=1.77~2.59 Ga.玄武岩发育典型的气孔和杏仁构造,SiO2含量为48.26%~51.71%,Mg#值为0.32~0.59,轻稀土元素弱富集((La/Yb)N=3.21~10.23).锶同位素初始比值ISr为0.706 1~0.708 1,钕同位素εNd(t)值为-6.6~+3.4,单阶段Nd模式年龄TDM=1.44~2.02 Ga.岩石地球化学和Sr-Nd-Hf同位素特征显示,定远组流纹岩起源扬子古老陆壳物质的部分熔融;玄武岩原始岩浆可能起源于富集地幔物质的部分熔融.该玄武质岩浆演化过程以分离结晶为主,可能存在少量陆壳物质混染.在陆缘拉张背景下岩石圈地幔部分熔融产生热的基性母岩浆,其底侵或上侵使得地壳岩石部分熔融,产生酸性岩浆,基性岩浆和酸性岩浆交替喷出形成了定远组双峰式火山岩系.扬子地块北缘大别地区新元古代中期(740 Ma左右)岩石圈地幔表现为富集特征,并处于岩石圈持续伸展的动力学背景.   相似文献   

5.
鲁西中、新生代镁铁质岩浆作用与地幔化学演化   总被引:13,自引:0,他引:13  
镁铁质火成岩作为分布最为广泛的典型幔源岩石, 已成为探索地幔化学性状及示踪岩石圈深部过程的主要研究对象.通过对典型样品元素-同位素组成的系统测定, 并结合前人已有资料, 综合研究了鲁西中生代和新生代镁铁质岩石的地质与地球化学特征.研究结果表明, 中生代镁铁质火成岩总体具有富轻稀土和大离子亲石元素、贫高场强元素、ISr值变化范围大(0.70396~0.71247)、εNd (t) 值显著偏低(-9.20~-21.21) 的地球化学特征, 但该区南部和北部的中生代镁铁质岩石在元素-同位素组成上仍存在一定差别, 主要表现在南部较之北部镁铁质岩石具有更高的稀土总量(ΣREE为325.52×10-6~555.75×10-6)和轻、重稀土比值(LREE/HREE=17.75~25.97), 以及更高的LILE/HFSE比值(如La/Nb=6.37~13.85, Th/Nb=0.52~1.53).南部镁铁质岩石较之北部镁铁质岩石也更富放射成因锶, ISr值分别为0.70844~0.71247和0.70396~0.70598.元素-同位素综合示踪指示鲁西中生代地幔总体具有因岩石圈大规模拆沉作用形成的EMⅠ型富集地幔特征, 但其南部叠加了因深俯冲而进入地幔的扬子陆壳的影响, 因而表现出EMⅠ和EMⅡ组分混合的富集地幔特征.新生代玄武岩具有类似于大洋玄武岩的地球化学特征, 其源区应为亏损的软流圈地幔, 但在部分熔融形成岩浆之前遭受了近期的交代作用.自中生代至新生代, 华北克拉通地幔具有由富集向亏损演变的趋势, 这一化学性状的演变最可能是中生代以来岩石圈大规模拆沉作用, 导致软流圈地幔上涌并对原有岩石圈地幔再改造所致.   相似文献   

6.
目前关于白垩纪酸性岩石的相关研究报道极少.近年来在曲卓木地区发现了较为广泛的酸性(英安岩)-基性(辉绿岩-玄武岩)火山岩浆活动,双峰式火山岩浆活动特征明显.对其进行了年代学、地球化学及Hf-Sr-Nd同位素研究.结果表明,英安岩成岩年龄为142.0±2.5 Ma,具有高的LREE及Nb、Zr、Hf、Y等高场强元素含量以及Ga/Al比值,显示A型花岗岩特征.锆石的εHf(t)值为-13.1~-2.4,平均值为-7.1.岩石具有高的初始Sr同位素值((87Sr/86Sr)i值为0.722 024~0.722 698)以及低的初始Nd同位素值(εNd(t)为-12.2~-11.8).综合研究表明,曲卓木地区酸性火山岩是伸展背景下大陆地壳深熔作用的产物,其与区域上桑秀组酸性火山岩、Laguila酸性侵入岩、桑日则地区流纹岩具有相似的地球化学特征与相当的成岩年龄,可能同属于Comei-Bunbury大火成岩省的一部分,均是Kerguelen地幔柱早期岩浆活动产物,而Kerguelen地幔柱活动可能提前至140 Ma左右.   相似文献   

7.
杨阳  孙国超  赵子福 《地球科学》2021,46(6):1993-2015
对华北东南缘荆山花岗岩进行了锆石U-Pb定年、微量元素和Hf同位素分析,全岩主微量元素和Sr-Nd同位素分析.LA-ICP-MS锆石U-Pb定年结果表明,荆山花岗岩形成于晚侏罗世(160.9±0.8~161.6±1.5 Ma).残留锆石的U-Pb年龄主要为三叠纪和新元古代,分别与大别-苏鲁造山带超高压变火成岩的变质年龄和原岩年龄一致.这些花岗岩为钙碱性-高钾钙碱性,具有弧型的微量元素分布特征和富集的Sr-Nd-Hf同位素组成,即高的全岩(87Sr/86Sr)i比值(0.708 0~0.709 1),低的εNd(t)值(-15.6~-13.5)和锆石εHf(t)值(-23.1~-9.5),对应的两阶段Nd-Hf模式年龄主要为古元古代.这些锆石U-Pb同位素年代学和地球化学特征与大别-苏鲁造山带超高压变火成岩一致,表明它们之间存在成因联系.特别地,残留锆石新元古代和三叠纪U-Pb年龄是俯冲华南陆壳的标志性特征.因此,荆山花岗岩是俯冲华南陆壳部分熔融的产物,华南陆壳是三叠纪大陆碰撞过程中进入华北地壳之中的.这些花岗岩具有低的Rb含量、高的Sr和Ba含量,低的Rb/Sr比值以及低的全岩锆饱和温度和锆石Ti温度(~700℃),表明它们源于俯冲华南陆壳低温加水部分熔融,可能与侏罗纪古太平洋板块俯冲于中国东部之下有关.   相似文献   

8.
西秦岭党川地区花岗岩的成因及其构造意义   总被引:9,自引:0,他引:9  
对西秦岭造山带党川地区的党川花岗岩和石门花岗岩进行了LA-ICP-MS锆石U-Pb定年、元素地球化学和Sr-Nd-Pb同位素组成的研究.结果表明, 党川花岗岩和石门花岗岩的岩浆结晶年龄分别为438±3Ma和220±2Ma.在岩石地球化学特征上, 党川花岗岩类似于C-型埃达克质岩石, 岩浆产生于增厚地壳物质的部分熔融, 而石门花岗岩类似于普通的地壳深熔型花岗岩.党川花岗岩的ISr=0.70660~0.70929, εNd (t) =-2.24~-4.48;石门花岗岩的ISr=0.70581~0.70804, εNd (t) =-3.73~-4.72.Sr-Nd同位素组成进一步指示它们的岩浆派生于地壳物质.然而, 在Pb同位素组成上, 党川花岗岩和石门花岗岩存在着明显的差异.党川花岗岩以相对富放射成因Pb同位素组成为特征, 初始Pb同位素比值为: 206Pb/204Pb=18.288~18.484, 207Pb/204Pb=15.677~15.693, 208Pb/204Pb=38.182~38.283;而石门花岗岩以相对低的放射成因Pb同位素组成为特征, 初始Pb同位素比值为: 206Pb/204Pb=17.989~18.189, 207Pb/204Pb=15.560~15.567, 208Pb/204Pb=37.982~38.000.这表明党川花岗岩和石门花岗岩的岩浆来自于不同地壳物质的部分熔融.区域分析表明, 西秦岭党川地区中古生代和早中生代的岩浆事件、岩石成因机制及岩浆源区均可与东秦岭地区北秦岭构造单元相对比, 由此说明西秦岭党川地区是东秦岭地区北秦岭构造单元的西延, 并且东秦岭地区早中生代南秦岭块体向北秦岭块体的大陆俯冲作用向西一直延至到西秦岭地区.   相似文献   

9.
李竞妍  郭锋  李超文  李红霞  赵亮 《岩石学报》2014,30(7):1995-2008
中国东北地区位于中亚造山带巨型增生陆缘的东段,分布着巨量的具有新生特征的显生宙花岗岩和火山岩。本文对东北地区晚古生代-中生代I和A型花岗岩年代学和Nd同位素组成开展了综合分析和研究。东北地区的I型花岗岩有两种Nd同位素变化趋势:一是以额尔古纳和兴安地块为代表,其εNd(t)随着年龄变新而增大,与造山带垮塌、软流圈上涌的幔源熔体或蒙古-鄂霍茨克洋的俯冲交代地幔楔熔体加入引起的地壳增生作用相关。二是以松嫩地块西南区和张广才岭为代表,εNd(t)随着年龄变新而下降,反映花岗岩的熔融源区有从早期的新生岛弧中、下地壳向晚期含更多再循环物质的中、上地壳迁移的趋势。A型花岗岩侵位时代主要有三期,总体上具有正的εNd(t)值,绝大部分tDM21.0Ga,反映了东北地区强烈的地壳增生作用。晚古生代A型花岗岩主要沿着贺根山-黑河断裂分布,可能与兴安和松嫩地块碰撞后伸展作用相关;早中生代A型花岗岩主体分布于张广才岭,与松嫩、佳木斯和兴凯地块的碰撞后伸展作用相关;早白垩世A型花岗岩遍布整个东北地区,可能与古太平洋板块俯冲、后撤导致的区域性伸展作用相关。晚古生代-中生代花岗岩的Nd二阶段模式年龄(tDM2)与侵位年龄(t)的对比展示了东北各构造单元地壳增生作用的差异。与华北北缘中生代花岗岩的特征相似,额尔古纳和佳木斯地块的花岗岩表现出tDM2t+1000Ma的特征,表明这两个地块具有古老的结晶基底。兴安地块、松嫩地块西南区和张广才岭花岗岩的tDM2和侵位年龄差值集中在300~1000Ma,反映不同属性(年轻vs.古老)的地壳物质对熔融源区的贡献。东北地区tDM2和侵位年龄差值小于300Ma的花岗岩岩体极少,仅有乌兰浩特的查干岩体一例,可能由新近增生的新生地壳熔融形成。由Nd同位素特征显示,晚古生代-中生代东北地区显著的地壳增生作用主要发生在缝合带和岩石圈规模的断裂带,幔源岩浆沿断裂带上升到地壳不同深度并形成高εNd(t)和低tDM2的中酸性火成岩。除几个特殊岩体表现出过于亏损或富集Nd同位素的特征,早白垩世东北地区酸性火成岩的Nd同位素组成相近,εNd(t)值集中在0~+3之间,可能暗示此时期东北地区的中、下地壳成分组成趋于一致并与同时期的古太平洋俯冲作用有关。我们的结果显示东北地区晚古生代-中生代花岗岩的起源与古亚洲洋、蒙古鄂霍茨克洋和古太平洋的构造演化相关。这三个古大洋的扩张和俯冲作用提供了大量新生地壳物质,而新生和再循环地壳物质的重熔形成了东北地区大规模的显生宙花岗岩及其对应成分的喷出岩。  相似文献   

10.
华南沿海中生代以来经历了强烈的构造和岩浆活动,地形地貌发生了巨大的反转,这一地貌演变过程在华南沿海晚中生代盆地和南海北缘新生代盆地沉积地层中得到了完整的记录。本文以华南沿海的闽西永安盆地白垩纪沉积岩为主要研究对象,通过岩石学、地球化学和Nd同位素分析,示踪盆地物源演化,结合台湾新生代地层沉积地球化学资料,推测出华南沿海晚中生代以来的地貌演化过程。野外调查及镜下鉴定发现,中侏罗世-早白垩世早期样品成熟度相对晚白垩世样品较高。地球化学判别图显示,样品均落入中酸性长英质物源区域。中侏罗世-晚白垩世地层的143Nd/144Nd值介于0.511772~0.512253之间,εNd值为-16.9~-7.5。其中中侏罗统漳平组εNd值最小,介于-16.9~-16.2之间,平均值为-16.6。下白垩统坂头组εNd值增大为-14.8~-12.4,平均值为-13.3;而上白垩统沙县组和崇安组则具有较高的εNd值,达到-9.3~-7.5,平均值为-8.7。从漳平组到崇安组,La...  相似文献   

11.
中国东南部花岗岩类Nd—Sr同位素研究   总被引:65,自引:8,他引:57  
根据本文测定的58个数据以已发表的127个数据讨论了中国东南部不同时代花岗岩类的Nd-Sr同位素特征,工通过与基底变质岩Sm-Nd同位素组成的对比,研究了这些花岗岩类的物质来源与成因。仅分布于浙西南的古元古代花岗岩娄是由成分上类似干被其侵入的八都群片麻岩经部分熔融形成的。沿江绍断裂带分布的新元古代花岗岩类是由地幔来源岩浆或初生地壳形成的;浙西-皖南-赣北地区的新元古代花岗岩类可能是由中元古代地层中的低成熟度组分形成的。古生代和大部分中生代花岗岩类主要是由所在区域内出露的中元古代变质沉积岩的相当物衍生的。沿浙闽沿海地区分布的大多数晚中生代花岗岩娄含有较多的地幔组分.两种来诹岩浆混台可能是其一种重要的成岩方式。  相似文献   

12.
Northwestern Fujian contains abundant well-studied Precambrian basement, and was a composite terrane in Cathaysia during the Neoproterozoic; however, its magmatic activity, petrogenesis, and tectonic evolution remain controversial. This article focuses on the geochronology and geochemistry of the Neoproterozoic Group in order to resolve the above problems. We provide new SHRIMP U-Pb zircon dating for the Mamianshan Group: 851.9 ± 9.2 to 825.5 ± 9.8 Ma for the Longbeixi Formation, 796.5 ± 9.3 Ma for the Dongyan Formation, and 756.2 ± 7.2 Ma for the Daling Formation. These ages document the existence of Neoproterozoic magmatism in the northwestern Cathaysia Block. Dongyan Nd-Sr isotopic data show that mafic amphibolite schists, mafic greenschists, and quartzofeldspathic schists were derived from a more depleted mantle (initial εNd ? +5.5 and 87Sr/86Sr ratio 0.703409643), a mixture of depleted mantle and crustal components (initial εNd ? ?1 and 87Sr/86Sr ratio 0.702045282–0.704147714), and late Palaeoproterozoic continental crustal materials (initial εNd < ?1 and 87Sr/86Sr ratio 0.71083603), respectively. These new data, together with previous studies, suggest a bi-subduction-collision orogenic model for the Neoproterozoic evolution of the Yangtze and Cathaysia blocks. Our plate tectonic scenario involves earlier NW-dipping subduction during 1.0 Ga–860 Ma along the southeastern margin of the Yangtze Block and later NW-dipping subduction near the northwestern margin of the Cathaysia Block starting at ca. 850 Ma. The 796.5 ± 9.3 Ma age of the volcanic Dongyan Formation suggests that the final assembly of the Yangtze and Cathaysia blocks probably occurred after ca. 800 Ma. The 756.2 ± 7.2 Ma age of the Daling Formation indicates that post-orogenic extensional magmatism took place after 800 Ma along the northwestern margin of Cathaysia.  相似文献   

13.
We report elemental and Nd-Sr isotopic data for two coeval postcollisional magmatic suites (∼300 Ma), the Miaogou and Karamay suites, from West Junggar foldbelt (NW China), aiming to determine their source regions and implications for continental growth. The Miaogou rocks, monzonitic to granitic in composition, show low Mg# (<0.30) and depletion of HFSE, and are highly depleted in isotopic compositions, with ISr ranging from 0.7035 to 0.7045, εNd(300 Ma) from + 8.4 to + 6.6 and young Nd model ages (0.37-0.70 Ga) that coincide with the ages of the ophiolites in the area. These features suggest that the Miaogou rocks were derived essentially by partial melting of a juvenile basaltic lower crust formed in the early to middle Palaeozoic. The Karamay suite contains a variety of rock types from gabbroic diorite to granite. These rocks show enrichment of LREE and LILE and depletion of HFSE, and have chemical composition (e.g., Mg# = 0.63-0.41) rather different from the Miaogou suite, though isotopically they are indistinguishable. This suggests that the parental magma of the Karamay suite originated from melting of a young lithospheric mantle that had previously been metasomatized during the Palaeozoic subduction. The West Junggar magmatic rocks represent production of juvenile continental crust in the Phanerozoic, triggered by upwelling of asthenophere in an extensional regime. The basement beneath the area is dominated by “trapped” Palaeozoic arc series and oceanic crust.  相似文献   

14.
The covariant behavior of Lu-Hf and Sm-Nd isotopes during most magmatic processes has long been recognized, but the details of this behavior in the depleted mantle reservoir have not been adequately examined. We report new whole-rock Hf and Nd isotope data for 1) juvenile, mantle-derived rocks, mid-Archean to Mesozoic in age, and 2) early Archean gneisses from West Greenland. Hf and Nd isotopic compositions of the juvenile rocks are well correlated, with the best fit corresponding to the equation εHf = 1.40 εNd + 2.1, and is similar to the collective Hf-Nd correlation for terrestrial samples of εHf = 1.36 εNd + 3.0. The early Archean Greenland gneisses, in contrast, have an extreme range in εNd values (4.4 to +4.2; Bennett et al., 1993) that is not mirrored by the Hf isotopic system. The εHf values for these rocks are consistently positive and have much less variation (0 to +3.4) than their εNd counterparts.The information from the Hf isotopic compositions of the West Greenland gneisses portrays an early Archean mantle that is relatively isotopically homogeneous at 3.8 to 3.6 Ga and moderately depleted in incompatible elements. There is no evidence that any of these gneisses have been derived from an enriched reservoir. The Hf isotopic data are in stark contrast to the Nd isotopic record and strongly imply that the picture of extreme initial isotopic heterogeneity indicated by Nd isotopes is not a real feature of the West Greenland gneisses but is rather an artifact produced by disturbances in the Sm-Nd isotope system of these rocks.Although Hf and Nd isotopic data do not uniquely constrain either the nature of the earliest crust or the timing of crustal growth, the most probable candidate for the enriched reservoir complementary to the depleted mantle in the pre-4.0 Ga Earth is a mafic, oceanic-type crust. In order to explain the predominantly positive εHf and εNd values for the early Archean rocks, this crust must have had a short residence time at the surface of the Earth before returning to the mantle where it was isolated from mixing with the depleted mantle for several hundred million years. The following period from 3.5 to 2.7 Ga may mark a transition during which this early formed mafic crust was mixed progressively back into the depleted mantle reservoir. While a present-day volume of continental crust at 4.0 Ga cannot be excluded on isotopic grounds, we find such a scenario unlikely based on the lack of direct isotopic and physical evidence for its existence. An important aspect of crustal growth and evolution, therefore, may be the transformation of the enriched reservoir from being predominantly mafic in the early Earth to becoming progressively more sialic through time.  相似文献   

15.
Silicate Nd-Sr isotopes of the fine-grained fractions of the 10 major deserts and sandy lands in North China and the loess in Chinese Loess Plateau were systematically investigated. Wide ranges in Nd-Sr isotopic compositions have been observed. The results of the <75 μm silicate fractions show that the Nd-Sr isotopic compositions of each desert are quite homogeneous and unique. According to the geographic distribution of the deserts and their Nd-Sr isotopes of both the <75 and <5 μm silicate fractions, three isotopic regions of Chinese deserts can be identified: (A) the deserts on the northern boundary of China, with the highest εNd(0) > −7.0; (B) the deserts on the northern margin of Tibetan Plateau, with εNd(0) ranging from −11.9 to −7.4; and (C) the deserts on the Ordos Plateau, with the lowest εNd(0) < −11.5. The distribution of the threes isotopic regions is controlled by the tectonic setting in North China, which implies that the materials of the deserts are derived from the locally eroded rocks from the surrounding mountains and the Nd-Sr isotopic signatures of these deserts could be quit stable over the past million years on the sub-tectonic time scales if there is any desert at those times. The Nd-Sr isotopic compositions of the loess are mostly close to those of the deserts in isotopic region B, suggesting that the main source regions of the last glacial loess in the Chinese Loess Plateau are Badain Jaran Desert, Tengger Desert, and Qaidam Desert. Also, the comparison between the Nd-Sr isotopes of the <5 μm silicate fractions of the deserts and the ancient dust falls in the North Pacific and Greenland show that the Asian end members of these dust falls are derived most from the deserts in the isotopic region B and less from those in the isotopic region C.  相似文献   

16.
The paper reports geological, chemical, and geochronological data on the Early Paleozoic granitoid and gabbro-granite associations, which compose the Kozhukhovskii and Dudetskii batholiths in the northern part of the Kuznetsk Alatau. The Kozhukhovskii batholith located in the Alatau volcanoplutonic belt is made up of tholeiitic, calc-alkaline, and subalkaline rocks that were formed in two stages. The first stage corresponded to the formation of granitoids of the Tylinskii quartz diorite-tonalite-plagiogranite complex (~530 Ma, Tylinskii Massif, tholeiitic type) in an island arc setting. The second stage (~500 Ma) produced the Martaiga quartz diorite-tonalite-plagiogranite complex (Kozhukhovskii Massif, calc-alkaline type) and the Krasnokamenskii monzodiorite-syenite-granosyenite complex (Krasnokamenskii Massif, subalkaline type) in an accretionary-collisional setting. The Dudetskii batholith is situated in the Altai-Kuznetsk volcanoplutonic belt and contains widespread subalkaline intrusive rocks (Malodudetskii monzogabbro-monzodiorite-syenite and Karnayul’skii granosyenite-leucogranite complexes) and less abundant alkaline rocks (Verkhnepetropavlovskii carbonatite-bearing alkaline-gabbroid complex), which were formed within the age range of 500–485 Ma. Our Nd isotopic studies suggest mainly a subduction source of the rocks of the Kozhukhovskii batholith (εNd from + 4.8 to + 4.2). Subalkaline rocks of the Dudetskii batholith exhibit wide isotopic variations. The Nd isotopic composition of monzodiorites and monzogabbro of the Malodudetskii Complex (εNd = + 6.6), in association with the elevated alkalinity and high Nb and Ta contents of these rocks, testifies to the predominant contribution of an enriched mantle source at the participation of a depleted mantle source. The lower εNd (from + 3.2 to + 1.9) in its syenites possibly indicates their generation through melting of metabasic rocks derived from enriched mantle protolith. The rocks of the Karnayul’skii Complex have lower Nb and Ta contents at similar εNd (+3.6), which suggests some crustal contribution to their formation.  相似文献   

17.
The Napo-Qinzhou Tectonic Belt (NQTB) lies at the junction of the Yangtze, Cathaysia and Indochina (North Vietnam) Blocks, which is composed of five major lithotectonic subunits: the Qinzhou-Fangcheng Suture Zone (QFSZ), the Shiwandashan Basin (SB), the Pingxiang-Nanning Suture Zone (PNSZ), the Damingshan Block (DB) and the Babu-Lingma Suture Zone (BLSZ). On the basis of geochemical compositions, the Permian mafic igneous rocks can be divided into three distinct groups: (1) mafic igneous rocks (Group 1) from the Longjing region in the PNSZ and Hurun region in the BLSZ, which are characterized by intermediate Ti, P and Zr with low Ni and Cr contents; (2) mafic igneous rocks (Group 2) from the Naxiao and Chongzuo region in the DB, characterized by low-intermediate Ti, P and Zr with high Ni and Cr concentrations; and (3) mafic igneous rocks (Group 3) from the Siming region in the Jingxi carbonate platform of the northwestern margin of the NQTB, with intermediate-high Ti, P and Zr and low Ni and Cr contents. The Group 1 rocks yield a weighted mean 206Pb/238U age of 250.5±2.8 Ma and are geochemically similar to basalts occurring in back-arc basin settings. The Group 2 rocks exhibit geochemical features to those basalts in island arcs, whereas the Group 3 rocks show geochemical similarity to that of ocean island basalts. All three groups are characterized by relatively low εNd(t) values (–2.61 to +1.10) and high initial 87Sr/86Sr isotopic ratios (0.705309–0.707434), indicating that they were derived from a subduction-modified lithospheric mantle and experienced assimilation, fractional crystallization, and crustal contamination or mixing during magmatic evolution. Accordingly, we propose the existence of an arc-back arc basin system that developed along the NQTB at the border of SW Guangxi Province (SW China) and northern Vietnam, and it was formed by continued northwestward subduction of the Cathaysian (or Yunkai) Block under the Yangtze Block, and northeastward subduction of the Indochina Block beneath the Yangtze Block during Permian time.  相似文献   

18.
Nd and Sr isotopic compositions are reported for the granitic suites which comprise the late Palaeozoic to earliest Mesozoic New England Batholith of eastern Australia. Some of the granitic suites are typically I-type in their mineralogy, chemistry and isotopic compositions, implying a derivation from igneous (infracrustal) source rocks, whereas other suites have characteristics consistent with a derivation from a protolith which was predominantly sedimentary and relatively felsic (S-types). The I-type granitoids of the Nundle Suite have ?Nd values (+3.3 to +6.1) that are amongst the most primitive yet documented for a relatively felsic (SiO2 ~ 65%) plutonic suite and these values imply a derivation from either a depleted upper mantle source or, more probably, a complex source region involving both volcanic-arc rocks and detrital material. Their compositions are distinctly more primitive than those of the New England Super-Suite which constitutes the Permian ‘core’ of the batholith. This extensive Super-Suite (comprising granitoids traditionally designated as I-type) has an overall range in initial Nd and Sr isotopic compositions of ?1.7 to +4.6 and 0.70458 to 0.70624 respectively, although the majority of plutons have initial Nd isotopic compositions which fall into a very narrow range (+1.0 ±1.5 ?units). This limited range is remarkable considering the extreme lithological diversity and range in chemical composition of the analysed samples (SiO2 47%–74%) and implies a source region of considerable volume having reasonably uniform isotopic compositions but variation in chemistry. A similarly uniform source isotopically is also indicated for the S-type granitoids of the Carboniferous Hillgrove Suite and Carboniferous-Permian Bundarra Suite with initial ?Nd values of +0.8 to +2.3 and initial 87Sr86Sr compositions of 0.70474 to 0.70577 showing only limited ranges.Five pelites, three ‘felsic’ and four ‘mafic’ greywackes, representing typical country rocks from different stratigraphic levels have initial ?Nd values (?1.7 to +6.6) and initial 87Sr86Sr compositions (0.70378 to 0.70585) which essentially mirror the compositional variation in the granitoids. A chemical, mineralogical and isotopic bimodality in these sediments indicates two very distinctive sources, one felsic (rhyodacitic) the other relatively mafic (andesitic), which were separated spatially and temporally in many but not all areas of early- to mid-Palaeozoic New England. A model is presented in which the S-type granitoids are derived from a predominantly felsic source, i.e. pelites and ‘felsic’ greywackes, whereas some of the granitoids belonging to the New England Super-Suite may have been derived from source rocks consisting of both felsic and mafic sedimentary components.The distinction between many S-type and I-type granitoids in New England is unclear for two principal reasons; (a) because the granitoids and their respective source rocks are relatively young geologically so that their isotopic systems have not evolved to any considerable extent, and (b) because of the intrinsic igneous chemical compositions of any sedimentary component that may be involved in their genesis.  相似文献   

19.
Nd, Sr and O isotopic study on the spilite-keratophyre sequence in Xiqiu shows that its ∈_(Nd) values are inthe range of 4.02-5.26, and its ∈_(Sr) values, +1.4-2.6. According to the points of these data in the ∈_(Nd)-T,∈_(Sr)-T and ∈_(Nd)-∈_(Sr) diagrams, the spilite-keratophyre is interpreted as being slightly contaminated by crustalmaterials. Its δ~(18)O values are 3.9-5.0‰. The depletion of ~(18)O in the rocks resulted from the influence ofseawater hydrothermal alteration during or soon after the rock formation. Based on the isotopic characteristicsand available geochemical data, it is believed that the spilite-keratophyre was formed in the well-developedisland-arc environment during the Late Proterozoic subduction of the palaeo-Pacific plate beneath thesoutheastern margin of the Yangtze massif.  相似文献   

20.
Detailed Rb-Sr and Sm-Nd isotopic analyses have been completed on the lherzolitic shergottites ALH77005 and LEW88516. ALH77005 yields a Rb-Sr age of 185 ± 11 Ma and a Sm-Nd age of 173 ± 6 Ma, whereas the Rb-Sr and Sm-Nd ages of LEW88516 are 183 ± 10 and 166 ± 16 Ma, respectively. The initial Sr isotopic composition of ALH77005 is 0.71026 ± 4, and the initial εNd value is +11.1 ± 0.2. These values are distinct from those of LEW88516, which has an initial Sr isotopic composition of 0.71052 ± 4 and an initial εNd value of +8.2 ± 0.6. Several of the mineral and whole rock leachates lie off the Rb-Sr and Sm-Nd isochrons, indicating that the isotopic systematics of the meteorites have been disturbed. The Sm-Nd isotopic compositions of the leachates appear to be mixtures of primary igneous phosphates and an alteration component with a low 143Nd/144Nd ratio that was probably added to the meteorites on Mars. Tie lines between leachate-residue pairs from LEW88516 mineral fractions and whole rocks have nearly identical slopes that correspond to Rb-Sr ages of 90 ± 1 Ma. This age may record a major shock event that fractionated Rb/Sr from lattice sites located on mineral grain boundaries. On the other hand, the leachates could contain secondary alteration products, and the parallel slopes of the tie lines could be coincidental.Nearly identical mineral modes, compositions, and ages suggest that these meteorites are very closely related. Nevertheless, their initial Sr and Nd isotopic compositions differ outside analytical uncertainty, requiring derivation from unique sources. Assimilation-fractional-crystallization models indicate that these two lherzolitic meteorites can only be related to a common parental magma, if the assimilant has a Sr/Nd ratio near 1 and a radiogenic Sr isotopic composition. Further constraints placed on the evolved component by the geochemical and isotopic systematics of the shergottite meteorite suite suggest that it (a) formed at ∼4.5 Ga, (b) has a high La/Yb ratio, (c) is an oxidant, and (d) is basaltic in composition or is strongly enriched in incompatible elements. The composition and isotopic systematics of the evolved component are unlike any evolved lunar or terrestrial igneous rocks. Its unusual geochemical and isotopic characteristics could reflect hydrous alteration of an evolved Martian crustal component or hydrous metasomatism within the Martian mantle.  相似文献   

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