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Geochemistry of newly discovered quaternary Shiribeshi Volcano, Northeast Japan Sea

机译:日本海东北部新发现的第四纪白别火山的地球化学

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Shiribeshi Seamount is located to the east of the Okushiri Ridge, in the northeast Japan Sea. Whole rock K-Ar age of olivine-augite andesite dredged from the Seamount was determined to be 0.9 ± 0.2 Ma (Tsuchiyaet al., 1989), indicating that Shiribeshi Seamount is a Quaternary volcano in the back-arc region off the junction of the Northeast Japan and Kurile arcs. Shiribeshi volcano is composed of basalt to rhyolite, which show a typical island arc calc-alkaline nature on the basis of petrographical characteristics of 95 samples dredged from four sites. Abundances of incompatible elements including K, Rb, Sr, Nb, P, Ti, Y and Zr in 16 representative rocks are discussed, together with those in the Quaternary volcanic rocks from the NE Japan and Kurile arcs in terms of compositional variation across the arcs. The estimated composition of the primary magma of Shiribeshi volcano is characterized by higher incompatible element contents and a higher Zr/Y ratio than primary magmas in the volcanic front side. Based on HFS element concentrations the degree of partial melting for three primary magmas of Oshima-Oshima, Shiribeshi and Rishiri volcanoes in the northeast Japan Sea may decrease gradually with increasing distance from the volcanic front. However, LIL element contents, especially K and Rb are lower in the primary magma of Rishiri volcano located far from the volcanic front than in the remaining two primary magmas, which would imply that LIL/HFS ratios (or degree of contribution of LIL elements originating from the subducted oceanic crust) become minimal at Rishiri volcano. One basalt and three andesites from Shiribeshi volcano have the restricted range of low87Sr/86Sr ratios of 0.70297–0.70300, which indicates that the magma source for Shiribeshi volcano may be slightly more enriched in Sr isotopic compositions than theN-type MORB sour
机译:Shiribeshi海山位于日本海东北部的Okushiri Ridge以东。从海山疏浚的橄榄石-奥长岩安山岩的全岩K-Ar年龄被确定为0.9±0.2马(Tsuchiyaet al., 1989),表明Shiribeshi海山是位于日本东北部和千岛弧交界处的弧后区域的第四纪火山。Shiribeshi火山由玄武岩到流纹岩组成,根据从四个地点疏浚的95个样品的岩相特征,显示出典型的岛弧钙碱性。讨论了16个代表性岩石中K、Rb、Sr、Nb、P、Ti、Y和Zr等不相容元素的丰度,以及日本东北部和千岛弧第四纪火山岩中元素的成分变化。Shiribeshi火山原生岩浆的估计成分具有与火山正面的原生岩浆相比更高的不相容元素含量和更高的Zr/Y比值。根据HFS元素浓度,日本海东北部大岛-大岛火山、白边火山和利尻火山的3个主要岩浆的部分熔化程度可能随着与火山锋距离的增加而逐渐降低。然而,在远离火山锋面的利尻火山的原生岩浆中,LIL元素含量,特别是K和Rb含量低于其余两个原生岩浆,这意味着利尻火山的LIL/HFS比率(或来自俯冲洋壳的LIL元素的贡献程度)变得最小。白别火山的1个玄武岩和3个安山岩的低87Sr/86Sr比值限制范围为0.70297–0.70300,这表明白别火山的岩浆来源的Sr同位素组成可能比N型MORB酸性矿更富集

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  • 来源
    《mineralogy and petrology》 |1991年第3期|213-234|共页
  • 作者单位

    Faculty of Science, Niigata University, Japan;

    Faculty of Science, Tohoku University;

    Mitsui Mineral Development Engineering Company Ltd.Okayama University;

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  • 正文语种 英语
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