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41.
冀北小张家口超基性岩体的锆石U-Pb年龄和Hf同位素组成   总被引:6,自引:5,他引:6  
采用离子探针(SHRIMPⅡ)测得小张家口基性-超基性岩体中的锆石主要有220±5Ma和491±7Ma两组年龄,以及一个很老的继承锆石年龄2453Ma。年龄为220±5Ma的一组锆石(A组)具有典型的岩浆型振荡环带,这组年龄应代表该岩体的侵位年龄。A组锆石的~(176)H/~(177)Hf比值从0.282557到0.282690,ε_(Hf)(220Ma)=-2.9~ 1.66。年龄为491±7Ma的一组锆石(B组)具有变质成因的蝴蝶结构(Butterfly structure)和熔蚀边,属于继承锆石。B组锆石的~(176)Hf/~(177)Hf比值从0.282239到0.282483,ε_(Hf)(491Ma)=-8.6~0.06。~(207)Pb/~(206)Pb年龄为2453Ma的锆石应该是岩浆侵位时从华北克拉通古元古代基底中捕获的锆石。A组锆石的Hf同位素数据表明,220Ma左右由于华北北缘岩石圈伸展,导致软流圈地幔上涌,亏损的软流圈地幔流/熔体与富集的岩石圈地幔相互作用并混合,这种混合地幔源区发生部分熔融而形成小张家口基性-超基性岩体。B组锆石可能是小张家口岩体在岩浆侵位过程中捕获的来源于富集地幔或大陆下地壳的锆石。  相似文献   
42.
The Balkuyumcu region, located in the southwestern part of Ankara in the Izmir-Ankara suture zone (central Anatolia, Turkey), consists of basic andesitic, andesitic, dacitic and rhyolitic rocks extruded during the Early Miocene (20–22 Ma) as a result of post-collisional volcanism. Balkuyumcu volcanic rocks can be divided into two groups on the basis of their mineralogy and composition: The basic andesitic (BA) and andesitic, dacitic and rhyolitic (ADR) groups. The ADR and BA group of rocks have adakite-like and calc-alkaline characteristics, respectively. The ADR group has higher SiO2 content, Sr/Y and La/Yb ratios and low MgO, Mg#, Y and Yb contents than the BA group. Both groups have nearly the same Sr, Nd isotopic compositions and display similar normalized multi-element patterns with enrichments in LILE and LREE, depletions in Nb, Ti, Zr, P and a lack of Eu anomalies. Major, trace element and Sr, Nd isotopic data indicate that both groups of rocks were derived from the same source but affected by different magmatic processes during ascent. The adakite-like rocks may have been produced by partial melting of thickened lower continental crust. Fractional crystallization also played a major role in their formation. However, the BA group rocks were derived from partial melting of lower continental crust that was probably delaminated. These rocks appear to have had limited interaction with mantle peridodite during ascent to the surface.  相似文献   
43.
ABSTRACT

Eocene intermediate to felsic plutons of different sizes and compositions are widespread in the Eastern Pontides Orogenic Belt in northern Turkey. Of these, the Ta?l?k Tepe pluton in the Havza (Samsun) area is fine-to-medium-grained, with granular, porphyritic, and micrographic textures, and include mafic microgranular enclaves (MMEs). LA-ICP-MS U-Pb zircon dating yielded emplacement ages of 42.9 (± 1.4) and 40.5 (± 1.3) Ma for the host granodioritic pluton and the dioritic MMEs, respectively. Petrochemically, the host pluton has I-type, high-K calc-alkaline, and metaluminous-to-slightly peraluminous features (A/CNK = 0.95–1.06). The host pluton also shows geochemical features of adakite-like rocks with high SiO2 (67–68 wt%) and Al2O3 (15.5–16.0 wt%) content and Ba/La (17–23), Sr/Y (40.7–61.6), and LaN/YbN (14.4–23.7) ratios and low Y (8.2–9.9 ppm) and YbN (3.1–4.4) contents. Whole-rock major and trace element variations suggest that fractional crystallisation played a significant role in the pluton evolution. The N-MORB normalised trace element patterns of the pluton are similar to those of MMEs with enrichment in large-ion lithophile elements, Th and Ce, and negative Nb and Ti anomalies. Chondrite-normalised rare earth element plots show moderate-to-highly enriched concave patterns (LaN/LuN = 14.2–21.6) with insignificant negative Eu anomalies (EuN/Eu* = 0.86–1.14), all of which imply hornblende fractionation during magmatic evolution. The pluton samples have 87Sr/86Sr ratios of 0.704767 to 0.704927, 143Nd/144Nd ratios of 0.512767–0.512774, εNd values of (+2.52) – (+2.65), and δ18O values of 7.9–9.7‰. The isotopic compositions of the host pluton and MMEs are similar to I-type granitoids derived from mantle sources. The MMEs show incomplete magma mixing/mingling, representing small bodies of mafic parental magma. Combined with regional studies, these new data suggest that the parental magma of the studied adakite-like pluton was generated from the lithospheric mantle and then modified by fractional crystallisation and assimilation in a post-collisional setting.  相似文献   
44.
Neogene volcanism in the Eastern Rif (Morocco) comprises a series of calc-alkaline, potassic calc-alkaline, shoshonitic and alkaline volcanic rocks. According to new stratigraphical, along with new and previous chronological and geochemical data, the orogenic volcanism was successively (1) calc-alkaline (basaltic andesites and andesites: 13.1 to 12.5 Ma, rhyolites: 9.8 Ma), (2) K-calc-alkaline (basaltic andesitic to rhyolitic lavas and granodiorites: 9.0 to 6.6 Ma), and (3) shoshonitic (absarokites, shoshonites, latites, trachytes: 7.0 to 5.4 Ma). The later Pliocene volcanism was basaltic and alkaline (5.6 to 1.5 Ma). The calc-alkaline and K-calc-alkaline series exhibit lower K2O (0.7–5.3 wt.%), Nb (8–19 ppm) contents and higher 87Sr/86Sr (0.70773–0.71016) than the shoshonitic series (K2O: 2.4–7.2 wt.%, Nb: 21–38 ppm, 87Sr/86Sr: 0.70404–0.70778). Pliocene alkaline basalts have a sodic tendency (Na2O/K2O: 1.7–3.5), high Nb content (up to 52 ppm), and low 87Sr/86Sr ratio (0.70360–0.70413). The variations through time of K2O, Nb and Sr isotopic ratio reflect different mantle sources: (i) calc-alkaline, potassic calc-alkaline and shoshonitic series are derived from a mantle source modified by older subduction, (ii) alkaline basalts are derived mainly from an enriched mantle source. Through time, incompatible elements such as Nb increased while 87Sr/86Sr decreased, suggesting a decreasing influence of metasomatized mantle (inherited subduction). Such evolution is related to the post-collision regimes operating in this area, and could be linked to the succession of extensional, compressional and strike-slip fault tectonics.  相似文献   
45.
燕山期甘坊复式岩体是宜丰锂铌钽稀有金属矿田重要的赋矿岩体,细晶岩作为甘坊岩体晚阶段岩浆演化的产物,与区内细晶岩型稀有金属成矿作用关系密切,但前人对该类岩石及其成矿作用特征研究较薄弱。本文以甘坊岩体南侧同安矿区内的花岗细晶岩为研究对象,对其展开系统的岩相学、锡石U-Pb年代学和全岩地球化学分析。锡石U-Pb定年结果表明,同安花岗细晶岩形成时代为138.3 Ma。全岩地球化学分析结果显示,该类岩石具高磷铝、富碱钙、贫镁铁钛的特征,且A/CNK值(1.71~1.88)较高,σ值(1.40~1.72)较低,属于典型的强过铝质、高钾钙碱性岩石。全岩微量及稀土元素成分显示,同安花岗细晶岩具有稀土元素强烈亏损,相对富集Rb、U、Nb、Ta、Pb、P、Hf和明显亏损Ba、Th、Sr、Ti等元素的特征。综上所述,同安花岗细晶岩属高分异的S型花岗岩,来源于地壳浅部变沉积岩物质的部分熔融。在演化过程中,经历过早期高度结晶分异过程和晚期的岩浆-热液相互作用,其中早期的高度结晶分异过程对Li成矿起到了初始富集的作用,而演化晚期的岩浆-热液相互作用才是Li元素高度富集并成矿的关键。  相似文献   
46.
均洞花岗岩体出露于钦杭结合带西南部,对揭示桂东北构造演化具有重要意义,其岩石组合为石英黑云母闪长岩、黑云母二长花岗岩和黑云母二长岩.文章运用LA-ICP-MS锆石U-Pb测年方法,获得均洞岩体的结晶年龄为423~430 Ma,为加里东期造山作用的产物.均洞岩体的SiO2含量较低(55.47~62.95 wt%);其中一...  相似文献   
47.
中川岩体位于中秦岭华力西褶皱系礼县—柞水冒地槽褶皱带西段中部,为同心环状产出的复式岩体。围绕岩体产有中川铀矿田和李坝、马泉、崖湾等金矿床。其中铀矿化类型有钠交代型、硅质脉型、粘土型、硅质脉—粘土叠加型,不同类型的铀矿化其富集条件也各异。矿化成因有两种,岩浆期后热液成因和下降水淋积成因。  相似文献   
48.
粤北竹山下岩体锆石U-Pb同位素定年及其地球化学特征   总被引:1,自引:0,他引:1  
竹山下岩体锆石SHRI MP U-Pb年龄为161.0±3.0 Ma,属燕山早期岩浆活动产物。该岩体的主要元素显示富硅(Si O2=76.05%~79.16%)、富碱(K2O+Na2O=7.77%~8.40%)、强过铝质(A/CNK=1.08~1.26)和低CaO/Na2O值(0.04~0.06)等特征。微量元素富集大离子元素而亏损Ba,Sr,Ce和Ti;LREE轻微亏损(LREE/HREE=0.82~1.09),Eu亏损明显(δEu=0.06~0.11),且具有较明显的四分组效应(TE1,3=1.07~1.24)。上述特征表明,竹山下岩体属于典型的壳源型花岗岩,是在地壳伸展-减薄的构造背景下,由泥质变质岩经过低程度部分熔融的方式而形成。  相似文献   
49.
香草坪花岗岩体年代学和地球化学特征   总被引:2,自引:0,他引:2  
李妩巍  王敢  陈卫锋  赵葵东 《铀矿地质》2010,26(4):215-221,227
香草坪岩体主要岩性为中粗粒斑状黑云母花岗岩,SHRIMP锆石U-Pb法年龄为211±2Ma,属于印支期岩浆作用产物。岩石地球化学特征研究表明,其ACNK,微量元素模式图曲线形态总体向右倾,以及轻稀土富集、Eu明显亏损的稀土配分模式曲线特征,与华南S型花岗岩的地球化学特征相似。该岩体高(87Sr/86Sr)i和低εNd(t)的特点,表明其可能是前寒武系中等成熟度的基底岩石经部分熔融形成的。该区基底岩石较高的铀含量,可为香草坪岩体提供充足的铀元素,形成铀元素的初始富集。  相似文献   
50.
内蒙古敖汉旗克力代岩体锆石U-Pb年代及地球化学   总被引:1,自引:0,他引:1  
通过LA-ICP-MS锆石U-Pb测年对内蒙古敖汉旗克力代岩体进行研究。结果表明,岩浆锆石的加权平均年龄为263±1 Ma,表明其结晶年龄为中二叠世。岩石地球化学分析表明,岩体具有高Si(SiO2=69.94%~72.56%),富ALK(Na2O+K2O=8.04%~9.23%),贫Fe(FeOT=1.50%~1.82%)、Mg(MgO=0.65%~0.86%)、Ti(TiO2=0.32%~0.35%)的特点;A/CNK值为0.87~0.93,为准铝质;A/NKC1.1,显示出I型花岗岩特征。固结指数(SI)为6.06~7.36,分异指数(DI)为88.82~91.82,说明岩体经历了较强的分异演化作用。稀土元素总量较低(ΣREE=91.76×10-6~143.16×10-6),轻稀土明显富集,重稀土相对亏损,LREE/HREE值平均为9.14,(La/Yb)N平均值为8.36,δEu平均值为0.58,为Eu亏损型。大离子亲石元素(LILE)Rb、K较富集,强烈亏损高场强元素(HFSE)Nb、Ti、Ta。因此,判定克力代岩体为高钾钙碱性I型花岗岩。结合测年结果和地球化学特征,判定该岩体为晚海西期华北板块和西伯利亚板块碰撞作用形成的同碰撞型花岗岩。  相似文献   
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