首页> 外文期刊>Journal of Mineralogical and Petrological Sciences >Boron isotope compositions of antigorite-grade serpentinites in the Itoigawa-Omi area of the Hida-Gaien Belt, Japan
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Boron isotope compositions of antigorite-grade serpentinites in the Itoigawa-Omi area of the Hida-Gaien Belt, Japan

机译:硼同位素在日本海达 - 盖恩腰带的Itoigawa-OMI区域中的抗型级蛇形素组成

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摘要

The antigorite-grade serpentinite and Late Paleozoic high-pressure schists are main components of a serpentin-ite-matrix melange in the Itoigawa-Omi area, Hida-Gaien Belt, Japan. Based on the petrologic characteristics of the high-pressure schists, the melange is divided into two units, namely an 'eclogitic unit' and a 'non-eclogitic unit'. Our preliminary in-situ boron isotope analyses of five serpentinites using a laser-ablation multiple-collector inductively-coupled-plasma mass spectrometry (LA-MC-ICPMS) found a systematic difference of boron isotopic trends among the two units in the same melange. The 'eclogitic unit' serpentinites from Yunotani and Kotagi-gawa are characterized by lower δ~(11)B value (mostly lower than +10‰), whereas the non-eclogitic unit serpentinite from Omi-gawa is higher than +10‰. Although the δ~(11)B value of <0‰ was not measured from the eclogitic unit serpentinites, the relatively low δ~(11)B values of <+10‰ might have recorded the signature of fluids released from deep subducted dehydrating slab. In contrast, the non-eclogitic unit serpentinite might have been affected by fluids released from shallower portion. Our new data confirmed the potential sensitivity of the boron isotope signature of serpentinites reflecting variation of high-pressure metamorphism.
机译:抗原沸石六萜酸盐和晚期古生代高压分子是日本海达 - 盖恩腰带的Itoigawa-Omi地区的Serpentin-ite-Matrix Melange的主要成分。基于高压弹簧的岩石特性,混合物分为两个单位,即“eClogitic单位”和“非野生区号”。我们使用激光烧蚀多集电极耦合等离子体质谱(La-MC-ICPMS)的初步原位硼分析了五种蛇形素分析了五种蛇形素。(La-MC-ICPMS)发现了同一混合物中两个单元中的硼同位素趋势的系统差异。来自Yunotani和Kotagi-Gawa的“eClogitic单位”蛇形素的特征在于δ〜(11)b值(大多低于+ 10°),而来自omi-gawa的非野生植物单元蛇形素高于+10。尽管δ〜(11)B值未从eClogitic单元蛇形素测量,但相对低的Δ〜(11)B值的<+10可能已经记录了从深层脱水板释放的流体的签名。相比之下,非野生动物单位蛇形素可能受到从较浅部分释放的流体的影响。我们的新数据确认了蛇形素的潜在敏感性,反映了高压变质变异的变化。

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