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首页> 外文期刊>Contributions to Mineralogy and Petrology >Petrogenesis of the Kaikomagatake granitoid pluton in the Izu Collision Zone, central Japan: implications for transformation of juvenile oceanic arc into mature continental crust
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Petrogenesis of the Kaikomagatake granitoid pluton in the Izu Collision Zone, central Japan: implications for transformation of juvenile oceanic arc into mature continental crust

机译:日本中部伊豆碰撞区的Kaikomagatake花岗岩类岩体的成岩作用:对将青少年海洋弧转变成成熟大陆壳的影响

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摘要

The Miocene Kaikomagatake pluton is one of the Neogene granitoid plutons exposed in the Izu Collision Zone, which is where the juvenile Izu-Bonin oceanic arc is colliding against the mature Honshu arc. The pluton intrudes into the Cretaceous to Paleogene Shimanto accretionary complex of the Honshu arc along the Itoigawa-Shizuoka Tectonic Line, which is the collisional boundary between the two arcs. The pluton consists of hornblende–biotite granodiorite and biotite monzogranite, and has SiO2 contents of 68–75 wt%. It has high-K series compositions, and its incompatible element abundances are comparable to the average upper continental crust. Major and trace element compositions of the pluton show well-defined chemical trends. The trends can be interpreted with a crystal fractionation model involving the removal of plagioclase, biotite, hornblende, quartz, apatite, and zircon from a potential parent magma with a composition of ~68 wt% SiO2. The Sr isotopic compositions, together with the partial melting modeling results, suggest that the parent magma is derived by ~53% melting of a hybrid lower crustal source comprising ~30% Shimanto metasedimentary rocks of the Honshu arc and ~70% K-enriched basaltic rocks of the Izu-Bonin rear-arc region. Together with previous studies on the Izu Collision Zone granitoid plutons, the results of this study suggest that the chemical diversity within the parental magmas of the granitoid plutons reflects the chemical variation of basaltic sources (i.e., across-arc chemical variation in the Izu-Bonin arc), as well as a variable contribution of the metasedimentary component in the lower crustal source regions. In addition, the petrogenetic models of the Izu Collision Zone granitoid plutons collectively suggest that the contribution of the metasedimentary component is required to produce granitoid magma with compositions comparable to the average upper continental crust. The Izu Collision Zone plutons provide an exceptional example of the transformation of a juvenile oceanic arc into mature continental crust.
机译:中新世Kaikomagatake岩体是在伊豆碰撞区暴露的新近纪花岗岩类岩体之一,该区域是幼小的伊豆-波宁海洋弧与成熟的本州弧碰撞的地方。 p状体沿着Itoigawa-Shizuoka构造线(即两个弧之间的碰撞边界)侵入本州弧的白垩纪至Shimanto Shimanto增生复合体。岩体由角闪石-黑云母花岗闪长岩和黑云母辉长岩组成,SiO 2 含量为68-75 wt%。它具有高K系列成分,其不相容元素丰度可与平均上陆壳相媲美。质子的主要和微量元素组成显示出明确的化学趋势。可以用晶体分级模型解释这种趋势,该模型涉及从潜在母体岩浆中除去斜长石,黑云母,角闪石,石英,磷灰石和锆石,其组成约为SiO 2 。 Sr同位素组成以及部分熔融模拟结果表明,母岩浆是由约53%的本州弧的Shimanto变质沉积岩和约70%的富钾玄武岩混合下地壳源融化而成的。伊豆-波宁弧后区域的岩石。结合先前对伊豆碰撞区花岗岩类云母的研究,该研究结果表明,花岗岩类云母母岩浆内的化学多样性反映了玄武岩源的化学变化(即,伊豆邦宁的跨弧化学变化)弧形),以及下地壳源区变质沉积成分的可变贡献。此外,伊豆碰撞带花岗岩类岩体的岩石成因模型共同表明,沉积沉积成分的贡献是产生花岗岩类岩浆所必需的,其组成可与平均上陆壳相媲美。伊豆碰撞区小行星是将幼年洋弧转变成成熟大陆壳的一个杰出例子。

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