E. Pandeli, A. P. Santo, M. Candido, C. Petrone, R. Giusti
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The mantle-normalized trace element patterns exhibit relatively high content of the most incompatible elements with negative spikes of Ba, Ta, Nb, Sr, P, and Ti. The measured 87 Sr/ 86 Sr and 143 Nd/ 144 Nd isotopic ratios are 0.708129 and 0.512209 respectively. In spite of the lack of radiometric data, the MCSD can be related to the acidic to intermediate magmatism that occurred in the interland of the Northern Apennines Chain during late Miocene-Quaternary times. In particular, the MSCD belong to the intermediate rocks of the Tuscan Magmatic Province and display petrological and geochemical characteristics closely resembling those of a mafic enclave collected in the 6.8 Ma Orano Porphyry (Elba Island) and of some 9-4 Ma High Potassium Calc-Alkaline (HKCA) Capraia Island rocks. Thus, in the context of the Elba Island, the studied dykes represent the magmatic bodies showing the most peculiar HKCA features. 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引用次数: 3
摘要
本文详细研究了北第勒尼安海厄尔巴岛南部蒙特卡波斯特拉海(Monte Capo Stella Promontory)蛇绿岩单元枕状熔岩中岩浆岩脉充填裂缝。厄尔巴岛以其第三纪复杂的推覆构造叠加、晚中新世酸性岩浆体侵入和铁矿化而闻名。显岩型次火山岩(Monte Capo Stella岩脉,MCSD)呈斑岩结构,含异晶和异晶。主要斑晶为斜长石、石英、钾长石和黑云母。MSCD具有钙碱性亲和力,具有高钾酸性成分。中度分馏和负Eu异常是球粒陨石正态化稀土模式的特征。地幔归一化微量元素模式中,Ba、Ta、Nb、Sr、P、Ti等元素含量较高,具有负峰。实测的87 Sr/ 86 Sr和143 Nd/ 144 Nd同位素比值分别为0.708129和0.512209。尽管缺乏放射性资料,但MCSD可能与晚中新世-第四纪发生在北亚平宁链内陆的酸性至中岩浆活动有关。特别是,MSCD属于托斯卡纳岩浆省的中间岩,其岩石学和地球化学特征与6.8 Ma Orano斑岩(Elba Island)和9-4 Ma高钾钙碱性(HKCA) Capraia岛岩石的基性包裹体非常相似。因此,在厄尔巴岛的背景下,所研究的岩脉代表了具有最独特HKCA特征的岩浆体。MCSD的侵入年龄可定在厄尔巴岛西部Orano斑岩(6.8 Ma)与厄尔巴岛东部Monte Castello岩堤(5.8 Ma)侵入的时间区间,可能在厄尔巴岛中部断层(CEF)活动之前。本研究还细化了厄尔巴岛蛇绿岩单元的变形史,定义了三个最终的脆性变形阶段。
THE CALC-ALKALINE MONTE CAPO STELLA DYKES IN THE OPHIOLITIC UNIT OF THE ELBA ISLAND (ITALY): GEOLOGICAL SETTING AND COMPOSITIONAL CHARACTERIZATION
In this paper we studied in detail magmatic dykes filling fractures in the pillow lavas of the Ophiolitic Unit cropping out in the Monte Capo Stella Promontory (southern part of the Elba Island in the Northern Tyrrhenian Sea). The Elba Island is well known for its Tertiary complex tectonic stack of nappes, Late Miocene intrusion of acidic magmatic bodies and Fe-mineralizations. The phaneritic sub-volcanic rock (Monte Capo Stella dykes, MCSD) shows a porphyritic texture with variable pheno- and xenocrysts content. The main phenocrysts consist of plagioclase, quartz, K-feldspar and biotite. The MSCD, displaying calc-alkaline affinity, have a High-Potassium dacitic composition. Moderate fractionation and negative Eu anomaly characterize the chondrite normalised REE patterns. The mantle-normalized trace element patterns exhibit relatively high content of the most incompatible elements with negative spikes of Ba, Ta, Nb, Sr, P, and Ti. The measured 87 Sr/ 86 Sr and 143 Nd/ 144 Nd isotopic ratios are 0.708129 and 0.512209 respectively. In spite of the lack of radiometric data, the MCSD can be related to the acidic to intermediate magmatism that occurred in the interland of the Northern Apennines Chain during late Miocene-Quaternary times. In particular, the MSCD belong to the intermediate rocks of the Tuscan Magmatic Province and display petrological and geochemical characteristics closely resembling those of a mafic enclave collected in the 6.8 Ma Orano Porphyry (Elba Island) and of some 9-4 Ma High Potassium Calc-Alkaline (HKCA) Capraia Island rocks. Thus, in the context of the Elba Island, the studied dykes represent the magmatic bodies showing the most peculiar HKCA features. The intrusion age of the MCSD can be put in the time interval between the intrusion of the Orano Porphyry in Western Elba (6.8 Ma) and that of the Monte Castello dyke (5.8 Ma) in Eastern Elba, and possibly before the Central Elba Fault (CEF) activity. This study also refines the deformation history of the Ophiolitic Unit in the Elba Island defining three final brittle deformation stages.
期刊介绍:
Since 1976, Ofioliti provides an international forum for original contributions and reviews in the field of the geodynamics, petrology, geochemistry, biostratigraphy, stratigraphy, tectonics and paleogeography applied to ophiolitic terrains and modern oceanic lithosphere, including their sedimentary cover. Studies of topics such as geodynamics of the mantle, the evolution of orogens including ophiolites and paleoceanography are also welcome