首页> 外文期刊>International Geology Review >High-Nb hawaiite-mugearite and high-Mg calc-alkaline lavas from northeastern Iran: Oligo-Miocene melts from modified mantle wedge
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High-Nb hawaiite-mugearite and high-Mg calc-alkaline lavas from northeastern Iran: Oligo-Miocene melts from modified mantle wedge

机译:来自伊朗东北部的高NB夏威术 - 乳石和高镁钙碱熔岩:从改性的地幔楔子中融化了Oligo-Miocene融化

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摘要

Tertiary volcanic rocks in northwestern Firoozeh, Iran (the Meshkan triangular structural unit), constitute vast outcrops (up to 250 km(2)) of high-Mg basaltic andesites to dacites that are associated with high-Nb hawaiites and mugearites. Whole-rock Ar-40/Ar-39 ages show a restricted range of 24.1 +/- 0.4-22.9 +/- 0.5 Ma for the volcanic rocks. The initial ratios of Sr-87/Sr-86 and Nd-143/Nd-144 vary from 0.703800 to 0.704256 and 0.512681 to 0.512877, respectively, in the high-Mg basaltic andesites-dacites. High-Th contents (up to 11 ppm) and Sr/Y values (27-100) and the isotopic composition of the subalkaline high-Mg basaltic andesites-dacites indicate derivation from a mantle modified by slab and sediment partial melts. Evidence such as reverse zoning and resorbed textures and high Ni and Cr contents in the evolved samples indicate that magma mixing with mafic melts and concurrent fractional crystallization lead to the compositional evolution of this series. The high-Nb hawaiites and mugearites, by contrast, have a sodic alkaline affinity and are silica undersaturated; they are also enriched in Nb (up to 47 ppm) and a wide range of incompatible trace elements, including LILE, LREE, and HFSE. Geochemistry and Sr-Nd isotopic compositions of the high-Nb hawaiites and mugearites suggest derivation from a mantle source affected by lower degrees of slab melts. Post-orogenic slab break-off is suggested to have prompted the asthenospheric upwelling that triggered partial melting in mantle metasomatized by slab-derived melts.
机译:伊朗(Meshkan三角形结构单元),伊朗西北部(Meshkan三角形结构单元),占高镁玄武岩和穆阿尔斯与高NB威尼斯和Mugearites相关的巨大露头(高达250公里(2))的巨大露头(高达250公里(2))。全岩AR-40 / AR-39年龄显示火山岩的限制范围为24.1 +/- 0.4-22.9 +/- 0.5 mA。 SR-87 / SR-86和ND-143 / ND-144的初始比率分别在高镁玄武岩和岩剂中分别在0.703800至0.704256和0.512681至0.512877中变化。高分子含量(最多11ppm)和Sr / Y值(27-100)和亚甲醇高镁玄武岩硅酸盐的同位素组合物 - 脂肪酸盐表明由板坯和沉积物部分熔体改性的地幔衍生。在进化样品中具有反向分区和中吸收和中吸收的纹理和高Ni和Cr含量的证据表明,岩浆与乳头熔体混合和并发分数结晶导致该系列的组成演化。相比之下,高Nb夏威岩和乳石具有钠碱性亲和力,并且是二氧化硅的缺乏;它们还富含NB(高达47ppm)和各种不相容的微量元素,包括撒利,LREE和HFSE。高Nb夏威岩和乳石的地球化学和SR-ND同位素组合物提出从受较低的板坯熔体影响的地幔源推导。建议造创后organic平板突破促使哮喘升高的血液升高在通过板状熔体弥思的披风中触发部分熔化。

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