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1.
对辽东卧龙泉黑云二长花岗岩进行锆石U-Pb定年、岩石地球化学和Sr-Nd-Pb同位素研究,以探讨岩石成因及动力学意义。LA-ICPMS锆石U-Pb定年结果显示卧龙泉岩体侵位时代为早侏罗世(194.0±1.0Ma,MSWD=1.3)。岩石地球化学特征显示,岩石具有高硅(71.49%~72.24%)、富碱(7.58%~7.83%)、贫镁(0.454%~0.497%)特点,属于高钾钙碱性系列,A/CNK值介于1.07~1.10之间,属于弱过铝质I型花岗岩,岩石富集大离子亲石元素(如K、Rb)和轻稀土元素(LREE),亏损高场强元素(如Nb、Ta、P、Ti)。同位素方面,岩石具有高的(87 Sr/86 Sr)i比值(0.71309~0.71410)和低的εNd(t)值(-15.6~-17.6);Pb同位素组成相对均一,(206Pb/204Pb)t为17.751~17.825,(207Pb/204Pb)t为15.542~15.557,(208 Pb/204 Pb)t为38.888~39.203;Sr-Nd-Pb同位素和岩石地球化学表明,卧龙泉岩体由俯冲作用引起的加厚地壳部分熔融形成。结合区域构造演化,认为卧龙泉岩体乃至华北东部侏罗纪花岗质岩浆作用可能形成于古太平洋板块向欧亚大陆俯冲、陆壳挤压和华北板块与西伯利亚板块南北挤压碰撞双重构造环境。  相似文献   

2.
中条山前寒武纪涑水杂岩主要由西姚和寨子英云闪长质-奥长花岗质-花岗闪长质(TTG)片麻岩、横岭关和北峪钙碱性花岗质岩石组成。SHRIMP锆石U-Pb年代学研究表明,西姚石英闪长质片麻岩~(207)Pb/~(206)Pb加权平均年龄为2536±8Ma,是新太古代的产物;西姚和寨子TTG片麻岩及横岭关和北峪钙碱性花岗质岩石岩浆锆石Hf同位素组成ε_(Hf)(t)全为正值,且在t-ε_(Hf)(t)图解上,落在2.6~3.1Ga地壳演化线范围内。北峪钙碱性花岗质岩石中三个继承锆石核的~(207)Pb/~(206)Pb加权平均年龄为2633±84Ma,其锆石ε_(Hf)(t)值为-2.0~ 5.6。前寒武纪涑水杂岩中花岗质岩石的SHRIMP锆石U-Pb年代学和锆石Hf同位素特征揭示它们最可能形成于新太古代到古元古代,岩浆主要来源于约2650Ma初生地壳的部分熔融,并有更古老的地壳物质的加入。  相似文献   

3.
银厂坪花岗斑岩岩体位于扬子陆块的西南缘,处于鲜水河-小江碱性岩带和金沙江-哀牢山富碱斑岩带之间。其主量元素具有高碱,高Na2O/K2O值,低TiO2特征,属于高钾钙碱性系列岩石。微量元素富集LILE,LREE和过渡金属元素(Cu、Ni、Co),具有明显的“Ta-Nb-Ti"负异常,Eu负异常不明显。锆石LA-ICP-MS U-Pb年龄表明该区岩石的结晶年龄为(37.39±0.33) Ma。εHf(t)值为-1.8~+1.8,两阶段模式年龄为996~1 226 Ma。该区岩石具有较低的εNd(t)值(-7.4~-3.6),较高的(87Sr/86Sr)i比值(0.706 077~0.706 231),以及具有造山带铅特征的207Pb/204Pb值(15.567~15.574)和208Pb/204Pb值(38.321~38.335)。对银厂坪岩体的元素地球化学以及Sr-Nd-Pb-Hf同位素组成特征分析研究认为,研究区的花岗斑岩形成于近似大陆弧环境,同位素地球化学属于EMI-EMII过渡型源区,岩体形成于壳幔混合层。银厂坪岩体的地球化学属性更靠近安宁河碱性岩带,是该带分异末端的酸性端员组分。  相似文献   

4.
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   

5.
贺文  叶会寿  曹晶 《岩石学报》2018,34(9):2703-2715
唐杖子金(钼)多金属矿床位于冀东地区,矿区内出露的主要岩性为花岗斑岩、石英二长岩和辉绿岩。本文对矿区主要的侵入岩进行锆石U-Pb定年和Hf同位素研究,探讨成岩-成矿相互关系,获取岩体源区信息。锆石U-Pb定年结果显示,花岗斑岩~(206)Pb/~(238)U加权平均年龄分别是161. 2±0. 7Ma、173. 0±5. 5Ma,结合锆石特征、锆石U-Pb定年结果,推测该矿区存在两期花岗质岩浆侵位;辉绿岩~(206)Pb/~(238)U加权平均年龄为166. 0±0. 9Ma;石英二长岩~(206)Pb/~(238)U加权平均年龄为176. 7±3. 3Ma。唐杖子矿区辉钼矿Re-Os年龄为170Ma,从时间尺度上来看辉钼矿化与早期花岗斑岩(173Ma)关系密切。花岗斑岩εHf(t)=-24. 4~-14. 1,tCDM=2104~2744Ma,表明岩石来源于古老地壳;辉绿岩εHf(t)=7. 8~10. 9,tDM=391~523Ma,表明岩石源区为古生代的亏损地幔。唐杖子花岗斑岩和辉绿岩都形成于中侏罗世,成岩时代相近,但源区明显不同,表明冀东地区在中侏罗世既存在下地壳的部分熔融的过程(形成了唐杖子花岗斑岩),又存在亏损地幔物质上涌侵入地壳的过程(形成了唐杖子辉绿岩),暗示了华北克拉通东缘在中侏罗世经历了一次岩石圈减薄的过程。  相似文献   

6.
湖南衡阳关帝庙花岗岩岩基形成时代及物质来源探讨   总被引:4,自引:0,他引:4  
在详细的野外地质调查基础上,本文通过对湖南省衡阳市关帝庙花岗岩岩基的岩石地球化学、LAICP-MS锆石U-Pb定年和全岩Sr-Nd-Pb同位素地球化学等综合研究,参照前人研究成果,探讨关帝庙花岗岩岩基的岩石地球化学性质、形成时代、物质来源以及形成机制。LA-ICP-MS锆石U-Pb加权平均年龄为223.4±1.9Ma。岩石以富硅、富碱、高钾钙碱性、准铝质,轻稀土元素和大离子亲石元素(Rb、Th、U、K)富集,重稀土元素、高场强元素(Nb、Ta、Ti)和Ba、Sr等元素亏损为特征。全岩Sr-Nd-Pb同位素显示较高的Sr初始比值((87Sr/86 Sr)i=0.712005~0.713631),低的Nd初始比值(εNd(t)=-9.95~-9.59),老的二阶段模式年龄(TDM2=1.78~1.81Ga)以及相对均一的Pb同位素组成,(206Pb/204 Pb)i、(207 Pb/204 Pb)i和(208 Pb/204 Pb)i值分别介于18.161~18.316、15.686~15.743、38.622~38.772之间。印支晚期,华南地区处于造山阶段的后碰撞构造环境挤压峰期之后的伸展环境,应力减弱或挤压松弛体制之下,幔源基性岩浆底侵,诱发古元古界地壳部分熔融形成花岗质岩浆,沿着断裂构造运移侵位,形成了关帝庙花岗岩岩基。  相似文献   

7.
胶东地区广泛发育一系列晚侏罗世岩浆作用产生的埃达克质岩,其成因机制及构造背景研究为揭示胶东地区中生代构造演化提供了重要证据.选取出露于胶东苏鲁地区的范家庄花岗岩进行锆石U-Pb年龄、全岩主微量元素和Sr-Nd-Pb同位素组成分析,探讨了岩石成因及成岩构造背景.锆石U-Pb年龄结果表明范家庄花岗岩侵位于晚侏罗世(161±2 Ma).岩石主微量数据具有富硅(SiO2=68.94%~71.00%)、高铝(Al2O3>15.17%)、低镁(MgO=0.32%~0.41%);高Sr、低Y、Yb含量以及高(La/Yb)N(>38.59)比值的特点,同位素测试结果显示相对高的(87Sr/86Sr)i比值(0.709 28~0.711 41)、相对较低的εNd(t)值(-20.5~-14.1)和高放射性Pb同位素组成(206Pb/204Pb)t=16.853~17.207,(207Pb/204Pb)t=15.436~15.495,(208Pb/204Pb)t=37.340~37.629.综合分析认为,范家庄岩体属于低镁埃达克质岩,产于增厚下地壳部分熔融,源区以扬子板块下地壳组分为主,混合有华北板块下地壳成分.晚侏罗世伊泽奈奇板块俯冲形成的弧后拉张环境诱发重力不稳定或者岩石圈伸展造成加厚的造山带垮塌,软流圈上涌的导致加厚地壳部分熔融可能是形成胶东范家庄低镁埃达克岩的地球动力学背景.   相似文献   

8.
本文对新县花岗岩岩基进行了系统的锆石U-Pb定年,全岩元素地球化学、Sr-Nd-Pb-Hf同位素测试,研究探讨其成岩年龄、岩石成因、物质来源以及地球化学动力学背景。锆石U-Pb年龄为125.5±1.5Ma,属于早白垩世产物。全岩元素地球化学成分表现为高硅、富碱,贫镁、铁和钙,富集轻稀土元素、大离子亲石元素(Rb、K、Th、U)和Pb,亏损重稀土元素、高场强元素(Nb、Ta、Ti)和Sr、Ba。全岩同位素具有中等略偏高的Sr 初始比值(87Sr/86Sr)i=0.706949~0.707086;低的放射性Pb同位素组成[ (206Pb/204Pb)i=16.611~17.152,(207Pb/204Pb)i=15.304~15.432,(208Pb/204Pb)i=37.316~37.702]; 低的Nd初始比值(εNd(t)=-13.65~-13.51)和老的Nd模式年龄(TDM2=2.12~2.13Ga)。锆石原位Hf同位素具有较低的初始比值(εHf(t)=-22.92~-19.40)和老的Hf二阶段模式年龄(TDM2=2.39~2.61 Ga)。综合以上元素地球化学特征、锆石U-Pb定年结果及Sr-Nd-Pb-Hf同位素组成,新县花岗岩岩基应属于分异的高钾钙碱性I型花岗岩,是化学成分类似于扬子板块北缘新元古代TTG型岩浆岩的扬子下地壳在非加厚下地壳(深度小于35km)环境下部分熔融的产物。  相似文献   

9.
除陆相沉积盆地外,青藏高原北部白垩纪建造记录稀少,岩浆活动的研究极少,幔源岩浆活动十分罕见,在青藏高原北部全吉地块首次发现了白垩纪煌斑岩脉群,深入研究可深化认识高原北部中生代晚期地质过程.对分布在全吉地块东部沙柳泉地区的煌斑岩进行了大比例尺填图,主微量元素、Sr-Nd-Pb同位测定、锆石SHRIMP和LA-ICP-MS U-Pb年代学研究.煌斑岩中获得锆石U-Pb年龄分别为135.2±1.8 Ma和132.9±1.3 Ma.岩石具高钾(K2O=4.53%~5.25%)、镁(MgO=7.23%~12.27%)和低钛(0.85%~1.29%)的特点,为钾质钙碱性煌斑岩,Rb、Ba、Th、U和Pb等大离子亲石元素(LILE)富集,Nb、Ta和Ti等高场元素(HFSE)亏损,(87Sr/86Sr)i介于0.718 0~0.718 6.εNd(t)=-14.2~-14.4,208Pb/204Pb变化于38.414~39.334,207Pb/204Pb在15.632~15.681,206Pb/204Pb介于18.568~19.203,显示岩浆源于与洋陆俯冲作用影响有关的EMⅡ型地幔源,形成于南北拉张背景下沿深大断裂引起的岩石圈地幔局部部分熔融.岩石具有较高Au(平均值为6.8×10-9)和F(平均值2 450×10-6)浓度,对全吉地块东部金矿成矿作用十分有利.   相似文献   

10.
新疆巴尔鲁克地区石屋岩体主要由石英闪长玢岩、石英闪长岩组成。本文通过锆石U-Pb年代学、岩石地球化学和Sr-Nd-Pb-Hf同位素等研究,探讨其构造背景、岩石成因和成矿意义。LA-ICP-MS锆石U-Pb定年表明:石屋石英闪长玢岩的成岩年龄为322.1±1.5Ma,石英闪长岩的形成年龄为322.4±1.5Ma,二者形成时代为晚石炭世。石屋石英闪长玢岩和石英闪长岩地球化学特征相似,Mg~#为32.4~57.2,轻重稀土分馏较明显且富集轻稀土((La/Yb)N=2.36~6.04),Eu异常不明显,相对富集LILEs等,亏损Nb、Ta、P、Ti等高场强元素。Sr-Nd-Pb-Hf同位素显示:样品具有低的ISr值(0.7036~0.7045),正εNd(t)值(+4.61~+7.03),年轻的tDM1年龄(0.59~0.78Ga),初始铅同位素比值为(~(206)Pb/~(204)Pb)i=18.173~18.450,(~(207)Pb/~(204)Pb)i=15.542~15.562,(~(208)Pb/~(204)Pb)i=37.830~38.036,锆石εHf(t)值为+4.5~+15.3,t_(DM2)=0.36~0.62Ga。综合石屋岩体的地质、地球化学和年代学特征,认为石英闪长玢岩和石英闪长岩源区相同,它们均形成于晚石炭世早期俯冲背景下的岛弧环境,可能是在亏损玄武质岩浆(俯冲板片脱水交代地幔楔产生的上涌岩浆)底侵作用下,新生地壳发生部分熔融,并有部分玄武质岩浆加入,发生混合、侵位的产物。石屋岩体的形成环境及其岩浆演化过程可能有利于区内斑岩型铜矿化,其含矿性值得做进一步评价。  相似文献   

11.
刘梓  张玉芝  崔翔  甘成势  王岳军 《地球科学》2020,45(4):1243-1265
粤西阳江市八二花岗质岩体中广泛发育似斑状细粒闪长质暗色微粒包体,这些暗色微粒包体形态多样,与寄主岩具相似的矿物组合,对研究花岗岩成因和壳-幔相互作用具有十分重要的意义.为了探讨它们的岩石成因及构造属性,对寄主岩和暗色微粒包体开展了系统的岩相学、年代学和地球化学研究.LA-ICP-MS锆石U-Pb定年结果表明,寄主岩年龄为160.0±1.0 Ma,暗色微粒包体年龄为159.3±1.1 Ma,均为晚侏罗世的产物.全岩地球化学特征显示,寄主岩属于富钾的准铝质I型花岗岩,寄主岩和暗色微粒包体均富集轻稀土元素和大离子亲石元素,亏损重稀土元素和Nb、Ta、Ti等高场强元素.此外,两者具相似的Sr-Nd同位素组成,寄主岩的εNd(t)值为-5.73~-5.67,(87Sr/86Sr)i值为0.707 63~0.707 67;而暗色微粒包体的εNd(t)值为-5.81~-4.35,(87Sr/86Sr)i值为0.707 04~0.707 74.锆石饱和温度计和角闪石全铝压力计表明八二花岗质岩体结晶于730~754℃和19.8~20.6 km.综合寄主岩及其暗色微粒包体的岩石学、地球化学、同位素特征,晚侏罗世八二花岗质岩体可能形成于陆内伸展背景,由于软流圈物质上涌底侵,导致中下地壳变基性岩为主的源岩部分熔融,并且源区有少量幔源物质的加入,局部可能存在岩浆混合作用;暗色微粒包体是由镁铁质岩浆与长英质岩浆混合形成的.   相似文献   

12.
塔里木西南缘铁克里克地区广泛发育早古生代中酸性侵入岩,本文对其中布雅岩体及其暗色包体进行系统的岩石学、年代学及岩石地球化学研究,确定了岩石成因及其构造属性。LA-MC-ICP-MS锆石U-Pb年代学研究表明,寄主石英二长闪长岩结晶年龄为432.6±2.5 Ma(MSWD=1.5),暗色包体结晶年龄为432.4±6.4 Ma(MSWD=0.031),二者形成时代相同,均为志留纪早期岩浆活动的产物。地球化学特征表明,布雅暗色包体应来源于地幔的部分熔融,而寄主岩石岩浆具有壳源岩浆的性质并经历了幔源岩浆不均匀的混合。野外及岩相学特征均显示暗色包体为铁镁质岩浆注入长英质岩浆快速冷凝形成的,是幔源岩浆底侵下地壳形成的岩浆混合作用的产物。它们是塔里木南缘早古生代碰撞造山作用晚期的岩浆记录。  相似文献   

13.
Rocks of the Late Cretaceous Tamdere Quartz Monzonite, constituting a part of the Eastern Pontide plutonism, include mafic microgranular enclaves (MMEs) ranging from spheroidal to ellipsoidal in shape, and from a few centimeters to decimeters in size. The MMEs are composed of diorite, monzodiorite and quartz diorite, whereas the felsic host rocks comprise mainly quartz monzonite, granodiorite and rarely monzogranite on the basis of both mineralogical and chemical compositions. The common texture of felsic host rocks is equigranular. MMEs are characterized by a microgranular texture and also reveal some special types of microscopic textures, e.g. antirapakivi, poikilitic K-feldspar, small lath-shaped plagioclase in large plagioclase, blade-shaped biotite, acicular apatite, spike zones in plagioclase and spongy-cellular plagioclase textures.

The distribution of major, trace and RE elements apparently reflect exchange between the MMEs and the felsic host rocks mainly due to thermal, mechanical and chemical interactions between coeval felsic host magma and mafic magma. The most evident major element transfer from felsic host magma to mafic magma blob is that of alkalis such as Na and K. LILEs such as Rb, Sr, Ba and some HFSEs such as Nb, Y, Zr and Th have been migrated from felsic host magma to MMEs. Apart from these major and trace elements, the other element transfer from felsic host magma to mafic one concerns REE contents. Such a transfer of REEs has evidently increased the LREE contents of MMEs. Enrichments in alkalis, LILEs, HFSEs and REEs could have been achieved by diffusional processes during the solidification of magma sources. The felsic and mafic magma sources behave as Newtonian and visco-plastic materials. In such an interaction, small MMEs behave as a closed system due to immediate rapid cooling, whereas the bigger MMEs suffer greater diffusion from the Newtonian felsic host magma due to slow cooling.  相似文献   


14.
祁连造山带分为南祁连、中祁连和北祁连构造带.赛支寺岩体位于中祁连与南祁连构造带的结合部位.首次发现了赛支寺花岗闪长岩及其暗色包体,然而对于暗色包体的成因机理以及与寄主岩石之间的成因联系仍存在很多争议.并对其进行了系统的锆石U-Pb年代学、Lu-Hf同位素、岩石地球化学以及Sr-Nd同位素地球化学研究,探讨赛支寺岩体及其暗色包体的成因及动力学背景.LA-ICP-MS锆石U-Pb年代学表明,赛支寺花岗闪长岩形成于446.1±1.3 Ma,包体形成于446.0±1.0 Ma,两者在误差范围内一致,排除了包体为捕虏体成因.暗色包体具较低的SiO2含量、较高的Na2O/K2O比值,低Sr/Y、La/Yb比值,与寄主岩稀土配分曲线基本一致,但LREE相对较低;86Sr/87Sr=0.706 4~0.706 7,εNd(t)=-7.38~-7.97;发育针状磷灰石,形成于岩浆混合作用.寄主岩SiO2=66.45%~68.12%,Na2O/K2O=0.80~0.97,A/CNK=0.91~1.03,显示准铝质-弱过铝质岩浆特点;富集大离子亲石元素Rb、Th、U、K,亏损Nb、Ta等元素,高Sr/Y、La/Yb比值,轻稀土富集,弱负Eu异常;86Sr/87Sr=0.709 3~0.709 5,εNd(t)=-1.75~-1.03,与祁连造山带I型花岗岩相似;锆石εHf(t)=1.7~6.8,TDM2=995~1 750 Ma.综上所述认为,寄主花岗闪长岩形成于壳幔岩浆混合.结合区域地质背景,赛支寺花岗闪长岩形成于俯冲背景下,幔源岩浆上涌,侵入到下地壳中,造成下地壳物质熔融,由这种既有幔源物质又有古老地壳物质的花岗岩岩浆形成.   相似文献   

15.
华南早中生代构造-岩浆演化还存在不同的争议.以广东西北部连山地区晚三叠世含暗色微粒包体(MMEs)的太保岩体为研究对象,进行了岩石学、锆石U-Pb年代学、地球化学和Sr-Nd-Hf同位素组成研究.4个花岗岩样品的锆石206Pb/238U加权平均年龄分别为219.8±1.8 Ma、220.5±1.0 Ma、221.5±1.7 Ma和220.2±1.1 Ma,为印支晚期岩浆作用的产物.地球化学分析显示,寄主花岗岩为高钾钙碱性花岗岩,低硅、高碱,铝饱和指数A/CNK值为0.79~1.16.包体SiO2含量为55.13%~62.56%,铁、镁含量明显高于寄主花岗岩,MgO和FeOT含量分别为2.31%~4.60%和5.53%~6.63%.包体与寄主花岗岩均富集轻稀土,并表现出显著的Ba、Sr、Ti负异常.寄主花岗岩和包体均具有较高的εNd(t)值(-3.42~-2.60和-0.90~-0.52)和较小的二阶段Nd模式年龄(TDM2分别为1.30~1.35 Ga、1.10~1.13 Ga).寄主花岗岩具有较宽泛的εHf(t)值(-2.6~+4.3,平均值为+0.7)和两阶段Hf模式年龄(0.95~1.39 Ga)变化范围,指示太保岩体形成于中元古代下地壳变基性岩物质的熔融,并与亏损地幔物质发生岩浆混合作用.基于以上数据,笔者认为太保岩体是印支晚期伸展条件下亏损地幔和下地壳物质混合的产物.结合近年来报道的邻近区域的基性岩浆活动,认为华南古特提斯构造域向古太平洋构造域的转换可能开始于晚三叠世(233 Ma).   相似文献   

16.
The linkage between intracontinental extension and the Early Cretaceous Cu-Mo-W polymetallic metallogenesis in the Middle-Lower Yangtze River Belt (MLYRB) has long been a subject of controversy due to the lack of convincing petrogenetic evidence to identify the nature of magmatic sources and their geological histories during extensional mantle upwelling. Here we present new zircon UPb ages, isotopic and geochemical data for granodiorites, quartz diorites and mafic microgranular enclaves (MMEs) in the Tongshankou area. Comparing the MMEs with their host porphyries, the different ratios of incompatible elements and the similar formation ages, coupled with quenched margins and the xenocrysts in the MMEs, indicate that the MMEs was most likely formed by mixing between mafic magma and their host felsic magma. The MMEs share similar geochemical and isotopic characteristics with the Cretaceous mafic rocks from MLYRB, indicating that MMEs were mostly derived from an enriched lithospheric mantle source without adakitic characteristics. Mixing of a crustal melt derived by melting of an amphibolite bearing juvenile lower crust with a mantle melt derived from melting of enriched lithospheric mantle can account for the generation of the Tongshankou prophyries. The melting of juvenile mafic lower crust and enriched lithospheric mantle is suggested to be caused by upwelling of asthenospheric mantle and the reactivity of trans-lithospheric faults in the intracontinental extensional environment. Our results therefore highlight that juvenile mafic lower crust beneath the Yangtze plate is one of the likely source for ore-forming magmatic rocks in the Early Cretaceous.  相似文献   

17.
陈兵  熊富浩  马昌前  陈越  黄虎 《地球科学》2021,46(6):2057-2072
壳-幔岩浆相互作用如何影响长英质火成岩的岩石学多样性是当前岩石学研究的焦点问题之一.以岩石类型丰富的东昆仑白日其利长英质岩体和暗色微粒包体为研究对象,开展系统的锆石U-Pb年代学、矿物学、全岩元素地球化学和Sr-Nd-Hf同位素研究,探讨和解析这一重要科学问题.LA-ICPMS锆石U-Pb年代学研究表明,暗色微粒包体(247.8±2.0 Ma)与二长花岗岩(247.5±1.4 Ma)、花岗闪长岩(248.8±2.1 Ma)和石英闪长岩(248.8±1.5 Ma)均侵位结晶于早三叠世.岩相学和矿物学研究表明,白日其利长英质岩石与包体的成因机制与壳-幔岩浆的机械或化学混合作用密切相关.元素地球化学和Sr-Nd-Hf同位素组成研究揭示,幔源镁铁质岩浆端元起源于受俯冲板片流体交代的富集地幔熔融,而壳源长英质岩浆端元则起源于东昆仑古老的变质杂砂岩基底.岩石成因分析揭示,幔源镁铁质岩浆侵入长英质晶粥岩浆房,促使长英质晶粥发生活化,随后壳-幔岩浆端元以不同比例和不同方式发生机械和化学混合等相互作用,从而形成镁铁质岩墙、包体、石英闪长岩和花岗闪长岩等多种岩石类型.晶粥状态下壳-幔岩浆相互作用是控制东昆仑长英质火成岩多样性和大陆地壳生长演化的重要方式.   相似文献   

18.
Mafic complexes in the central Sierra Nevada batholith record valuable geochemical information regarding the role mafic magmas play in arc magmatism and the generation of continental crust. In the intrusive suite of Yosemite Valley, major and trace element compositions of the hornblende-bearing gabbroic rocks from the Rockslides mafic complex and of the mafic dikes in the North America Wall are compositionally similar to high-alumina basalt. Of these rocks, two samples have higher Ni and Cr abundances as well as higher εNd values than previously recognized for the intrusive suite. Plagioclase crystals in rocks from the North America Wall and the Rockslides have prominent calcic cores and sharply defined sodic rims, a texture commonly associated with mixing of mafic and felsic magmas. In situ analyses of 87Sr/86Sr in plagioclase show no significant isotopic difference from the cores to the rims of these grains. We propose that the high 87Sr/86Sr (~0.7067) and low εNd (~?3.4) of bulk rocks, the homogeneity of 87Sr/86Sr in plagioclase, and the high δ18O values of bulk rocks (6.6–7.3 ‰) and zircon (Lackey et al. in J Petrol 49:1397–1426, 2008) demonstrate that continental crust was assimilated into the sublithospheric mantle-derived basaltic precursors of the mafic rocks in Yosemite Valley. Contamination (20–40 %) likely occurred in the lower crust as the magma differentiated to high-alumina basalt prior to plagioclase (and zircon) crystallization. As a consequence, the isotopic signatures recorded by whole rocks, plagioclase, and zircon do not represent the composition of the underlying lithospheric mantle. We conclude that the mafic and associated felsic members of the intrusive suite of Yosemite Valley represent 60–80 % new additions to the crust and include significant quantities of recycled ancient crust.  相似文献   

19.
斜长石作为主要造岩矿物,是研究岩石成因、示踪岩浆演化和岩浆混合过程的有效工具.对冈底斯带曲水岩基始新世花岗闪长岩、二长花岗岩、闪长岩脉和暗色包体中的斜长石进行了阴极发光图像结构特征、电子探针主量元素和LA-ICP-MS微量元素成分的分析,揭示了斜长石复杂环带的成因和相关的岩浆过程.该区斜长石的阴极发光图像呈现出多种颜色且与其An值相对应,随着An值降低依次为绿色、蓝色和暗灰色或暗红色等,并发育补丁状环带、筛状环带、韵律环带等.花岗闪长岩、二长花岗岩中斜长石的An值具有相似的变化范围(20~55),而闪长岩脉和暗色包体中An值的变化范围较大(25~85),表明曲水岩基经历了复杂的开放过程.微量元素结果表明:花岗闪长岩与闪长岩脉和暗色微粒包体具有相同的Sr含量范围(600×10^-6~1 100×10^-6);而二长花岗岩的Sr含量(1 000×10^-6~2 400×10^-6)整体高于前者.以上研究表明,花岗闪长岩中阴极发光呈现绿色的核部或幔部是偏中性岩浆注入寄主岩岩浆混合的结果;具有高Sr含量的二长花岗岩认为是高Sr含量的岩浆结晶形成的;闪长岩脉和暗色微粒包体中的筛状结构斜长石为寄主岩捕掳晶.  相似文献   

20.
Magma mingling has been identified within the continental margin of southeastern China.This study focuses on the relationship between mafic and felsic igneous rocks in composite dikes and plutons in this area,and uses this relationship to examine the tectonic and geodynamic implications of the mingling of mafic and felsic magmas.Mafic magmatic enclaves(MMEs) show complex relationships with the hosting Xiaocuo granite in Fujian area,including lenticular to rounded porphyritic microgranular enclaves containing abundant felsic/mafic phenocrysts,elongate mafic enclaves,and back-veining of the felsic host granite into mafic enclaves.LA-ICP-MS zircon U-Pb analyses show crystallization of the granite and dioritic mafic magmatic enclave during ca.132 and 116 Ma.The host granite and MMEs both show zircon growth during repeated thermal events at-210 Ma and 160-180 Ma.Samples from the magma mingling zone generally contain felsic-derived zircons with well-developed growth zoning and aspect ratios of 2-3,and maficderived zircons with no obvious oscillatory zoning and with higher aspect ratios of 5-10.However,these two groups of zircons show no obvious trace element or age differences.The Hf-isotope compositions show that the host granite and MMEs have similar ε_(Hf)(t) values from negative to positive which suggest a mixed source from partial melting of the Meso-Neoproterozoic with involvement of enriched mantlederived magmas or juvenile components.The lithologies,mineral associations,and geochemical characteristics of the mafic and felsic rocks in this study area indicate that both were intruded together,suggesting Early Cretaceous mantle—crustal interactions along the southeastern China continental margin.The Early Cretaceous magma mingling is correlated to subduction of Paleo-Pacific plate.  相似文献   

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