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Late Cretaceous arc igneous activity: the Erikar Monzogranite example

机译:晚白垩世弧火活动:Erikar Monzogranite示例

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The geochemical and Sr-Nd-Pb isotope properties, as well as the Laser Ablation Inductively Coupled Plasma and Mass Spectrometry (LA-ICP-MS) U-Pb zircon age, of Erikar Monzogranite in the eastern Pontides, are primarily investigated in this study with the aim of determining its magma source and geodynamic evolution. The U-Pb zircon age obtained from Erikar Monzogranite is 78 +/- 1.5Ma, thereby reFLecting the age of monzogranite. The I-type Erikar Monzogranite comprises quartz, plagioclase (An(35-45)), orthoclase, muscovite, and biotite. The geochemical analyses of the Erikar Monzogranite indicate being medium K calc-alkaline, peraluminous, and resembling magmatic arc granite. The Erikar Monzogranite is enriched in large ion lithophile elements and light rare earth elements relative to high field strength elements. Chondrite-normalized rare earth element patterns have concave upward shapes (La-N/Yb-N 2.47-8.58) with pronounced negative Eu anomalies (Eu-N/Eu*=0.29-0.65). Initial epsilon Nd-(i) values vary between 1.85 and 2.18 and initial Sr-87/Sr-86 values between 0.7048 and 0.7067. Fractionation of plagioclase, hornblende, and apatite played an important role in the evolution of Erikar Monzogranite. The crystallization temperatures of the melts ranged from 770 degrees C to 919 degrees C based on zircon and apatite saturation temperatures. The geochemical and isotopic data suggest being generated by the partial melting of mafic lower crustal sources.
机译:地球化学和SR-ND-PB同位素特性以及东部地区Erikar Monzogranite的激光烧蚀电感耦合等离子体和质谱(La-ICP-MS)U-PB锆石,主要是在本研究中研究目的是确定其岩浆源和地球动力学进化。从Erikar Monzogranite获得的U-PB锆石年龄为78 +/- 1.5mA,从而反映了蒙扎石的年龄。 I型Erikar Monzogranite包含石英,Plagioclase(An(35-45)),正阳酶,Moscovite和Biotite。 Erikar Monzogranite的地球化学分析表明是培养基钙碱,灭菌和类似岩弧花岗岩。 ERIKAR Monzogranite在大型离子鳞片元件和相对于高场强元件中富含轻质稀土元素。 Chondrite归一化的稀土元素图案具有凹陷向上的形状(La-N / YB-N 2.47-8.58),具有明显的负欧盟异常(EU-N / EU * = 0.29-0.65)。初始EPSILON ND-(I)值在1.85和2.18之间变化,初始SR-87 / SR-86值0.7048和0.7067。 Plagioclase,Hornblende和磷灰石的分馏在Erikar Monzogranite的演变中起着重要作用。基于锆石和磷灰石饱和温度,熔体的结晶温度范围为770℃至919摄氏度。地球化学和同位素数据表明是通过镁铁型下层地壳源的部分熔化产生的。

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