首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Pyroxenite and peridotite xenoliths from Hexigten, Inner Mongolia: Insights into the Paleo-Asian Ocean subduction-related melt/fluid-peridotite interaction
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Pyroxenite and peridotite xenoliths from Hexigten, Inner Mongolia: Insights into the Paleo-Asian Ocean subduction-related melt/fluid-peridotite interaction

机译:内蒙古Hexigten的辉石岩和橄榄岩异岩-深入探讨古亚洲俯冲作用相关的熔体/流体-橄榄岩相互作用

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摘要

The in situ major, trace-element and Sr-isotopic compositions of the peridotite and pyroxenite xenoliths from the Hexigten region in the Xing-Meng orogenic belt (XMOB) were examined to evaluate the influences and contributions of the Paleo-Asian Oceanic slab subduction on the lithospheric mantle transformation. Pyroxenes in the Type 1 pyroxenite exhibit low and variable Mg# (67-85) and relatively high ~(87)Sr/~(86)Sr ratios (0.7036-0.7053), indicating that they were formed by assimilation and fractional crystallization processes during a basaltic underplating event. The peridotite and Type 2 pyroxenite xenoliths sampled the lithospheric mantle and recorded subduction-related metasomatism. The mineral chemistries of the Type 1 peridotite suggest that the lithospheric mantle beneath this area suffered 1-15% melt extraction. Clinopyroxene (Cpx) in some Type 1 peridotites are characterized by high (La/Yb)_N coupled with marked depletions in high field strength elements(HFSE) (Nb, Ta, Zr, Hf and Ti) and negative correlations between the low Ti/Eu (Nb/La) and ~(87)Sr/~(86)Sr ratios(0.7037-0.7055), suggesting metasomatism by subduction-related CO_2-rich fluids. Olivine (Ol) and orthopyroxene (Opx) in the Type 2 peridotite are characterized by a relatively low Mg# but high Ni contents. In addition to the normal incompatible element-depleted Opx, Opx with enrichments in Rb, Ba, Th, U, Nb, Ta and LREE were observed, as well. The Mg# of incompatible element-depleted Opx exhibits weak zonations (i.e., decreasing from the cores to the rims). Cpx and Opx of the Type 2 pyroxenite exhibit similarly high Mg# and Ni contents. Rb, Ba, Th, U, Nb, Ta and LREE contents and ~(87)Sr/~(86)Sr ratios of the Cpx increase from the cores to the rims. Moreover, Opx in the Type 2 peridotite and Cpx in the Type 2 pyroxenite exhibit increased Nb/Ta ratios and Ni contents relative to those in the Type 1 peridotites. These observations collectively suggest a rutile-bearing eclogite-derived silicic melt-peridotite reaction as the origin for the Type 2 peridotite and pyroxenite. Considering the geological setting, it is suggested that the melt/fluid-peridotite interactions were caused by the Paleo-Asian Ocean subduction, which could have contributed significantly to the transformation of the lithospheric mantle beneath the northern margin of the NCC, as well.
机译:研究了兴孟造山带(XMOB)Hexigten地区橄榄岩和辉绿岩异岩的主要,痕量元素和Sr同位素组成,以评估古亚洲大洋俯冲对俯冲的影响和贡献。岩石圈地幔转换。 1型辉石中的辉石表现出较低且可变的Mg#(67-85)和相对较高的〜(87)Sr /〜(86)Sr比(0.7036-0.7053),表明它们是由在过程中的同化和分步结晶过程形成的玄武岩下陷事件。橄榄岩和2型辉绿岩异岩从岩石圈地幔中取样并记录了俯冲作用的交代作用。 1型橄榄岩的矿物化学性质表明,该区域下方的岩石圈地幔经历了1-15%的熔体提取。某些1型橄榄岩中的斜辉石(Cpx)的特征是高(La / Yb)_N以及高场强元素(HFSE)(Nb,Ta,Zr,Hf和Ti)中的显着耗尽以及低Ti /之间的负相关性Eu(Nb / La)和〜(87)Sr /〜(86)Sr之比(0.7037-0.7055),表明与俯冲相关的富含CO_2的流体发生交代作用。 2型橄榄岩中的橄榄石(Ol)和邻苯二茂铁(Opx)的特点是Mg#相对较低,但Ni含量较高。除了正常的不相容元素贫化的Opx,还观察到Opx的Rb,Ba,Th,U,Nb,Ta和LREE富集。 Mg#的不相容元素贫化Opx表现出较弱的区域分布(即从核心到边缘逐渐减少)。 2型辉石的Cpx和Opx表现出相似的高Mg#和Ni含量。 Rpx,Ba,Th,U,Nb,Ta和LREE含量以及Cpx的〜(87)Sr /〜(86)Sr之比从芯部到边缘都增加。此外,与1型橄榄岩相比,2型橄榄岩中的Opx和2型辉石岩中的Cpx具有更高的Nb / Ta比和Ni含量。这些观察共同表明,金红石型榴辉岩衍生的硅质熔融橄榄岩反应是2型橄榄岩和辉石的起源。考虑到地质环境,认为熔体/流体-橄榄岩的相互作用是由古亚洲洋俯冲作用引起的,这也可能对NCC北缘以下的岩石圈地幔的转换起了重要作用。

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