Assimilation and fractional crystallization of Sanukitic high–Mg andesite–derived magmas, Kyushu Island, southwest Japan: An example of the Cretaceous Shaku–dake diorite body

IF 0.9 4区 地球科学 Q4 MINERALOGY Journal of Mineralogical and Petrological Sciences Pub Date : 2020-06-26 DOI:10.2465/jmps.191209
K. Eshima, M. Owada, A. Kamei
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引用次数: 4

Abstract

The Cretaceous granitoid batholith is characterized by sporadically occurring small mafic bodies. Some of these mafic bodies show high–Mg diorite (HMD) compositions derived from a high–Mg andesite (HMA) magma. One of the mafic bodies, the Shaku–dake body, can be divide into two groups: Two–pyroxene diorite (TPD), diorite (Do), porphyritic fine–grained tonalite (PFT), and clinopyroxene granodiorite (CG) belong to the Group– 1, but hornblende–biotite granodiorite (HBG) and fine–grained biotite granite (FBG) can be found in the Group– 2. The Group–1 is influenced by the assimilation and fractional crystallization process during the ascent and emplacement of magma, whereas the Group–2 changes its whole–rock compositions via fractional crystallization. Discrimination diagrams of HMA indicate that the TPD shows geochemical signatures similar to those of the Sanukitic HMA, where the TPD is defined as Sanukitoid. On the other hand, the Do is plotted as the composition range of island arc calc–alkaline basalts and tholeiite. The Cretaceous magma activities in northern Kyushu were led by the highly thermal structure of the wedge mantle at that time, it was the primary heat source of the voluminous igneous activities during the Cretaceous in Southwest Japan and the Korean Peninsula.
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日本西南九州岛Sanukitic高镁安山岩衍生岩浆的同化和分离结晶:以白垩纪Shaku–dake闪长岩体为例
白垩纪花岗岩岩基以零星出现的小型镁铁质岩体为特征。其中一些镁铁质岩体显示出源自高镁安山岩(HMA)岩浆的高镁闪长岩(HMD)成分。其中一个镁铁质岩体Shaku–dake岩体可分为两组:二辉石闪长岩(TPD)、闪长岩、斑状细粒英云闪长岩和斜辉石花岗闪长岩属于第1组,但角闪-黑云母花岗闪长长岩(HBG)和细粒黑云母花岗岩(FBG)位于第2组。第1组在岩浆上升和侵位过程中受到同化和分级结晶过程的影响,而第2组则通过分级结晶改变其全岩成分。HMA的判别图表明,TPD显示出与Sanukitic HMA相似的地球化学特征,其中TPD被定义为Sanukitoid。另一方面,Do被绘制为岛弧钙碱性玄武岩和拉斑玄武岩的组成范围。九州北部的白垩纪岩浆活动是由当时楔状地幔的高热结构主导的,是日本西南部和朝鲜半岛白垩纪大量火成活动的主要热源。
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
5
审稿时长
>12 weeks
期刊介绍: The Journal of Mineralogical and Petrological Sciences (JMPS) publishes original articles, reviews and letters in the fields of mineralogy, petrology, economic geology, geochemistry, planetary materials science, and related scientific fields. As an international journal, we aim to provide worldwide diffusion for the results of research in Japan, as well as to serve as a medium with high impact factor for the global scientific communication Given the remarkable rate at which publications have been expanding to include several fields, including planetary and earth sciences, materials science, and instrumental analysis technology, the journal aims to encourage and develop a variety of such new interdisciplinary scientific fields, to encourage the wide scope of such new fields to bloom in the future, and to contribute to the rapidly growing international scientific community. To cope with this emerging scientific environment, in April 2000 the journal''s two parent societies, MSJ* (The Mineralogical Society of Japan) and JAMPEG* (The Japanese Association of Mineralogists, Petrologists and Economic Geologists), combined their respective journals (the Mineralogical Journal and the Journal of Mineralogy, Petrology and Economic Geology). The result of this merger was the Journal of Mineralogical and Petrological Sciences, which has a greatly expanded and enriched scope compared to its predecessors.
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