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Role of percolating melts in Antarctic subcontinental lithospheric mantle: New insights from Handler Ridge mantle xenoliths (northern Victoria Land, Antarctica)

机译:渗透熔体在南极次大陆岩石圈地幔中的作用:来自Handler Ridge地幔捕虏体的新见解(南极洲维多利亚州北部)

摘要

The petrology of anhydrous peridotite xenoliths hosted in the Cenozoic alkaline volcanic rocks from Handler Ridge (northern Victoria Land, Antarctica) provides new constraints on the characterization of the subcontinental lithospheric mantle beneath the West Antarctic Rift. For most samples, the temperature of equilibration was calculated on the basis of Fe/Mg partitioning among olivine, orthopyroxene, and spinel, at a pressure of 15 kbar. These results revealed a temperature of ~1030 °C and fO2 ranging from –0.26 to +0.39 with respect to fayalite-magnetite-quartz buffer (ΔFMQ). Compared with other anhydrous and hydrated mantle xenolith suites occurring in northern and southern Victoria Land, these xenoliths represent the highest-temperature and most-oxidized conditions. On the basis of major-element modeling, we suggest that this portion of the mantle represents a residuum after 7%–18% partial melting. Geochemical and isotopic compositional evidence is indicative of signifi cant metasomatism caused by an alkaline melt almost entirely overprintingudthe residual peridotite composition within a period of 102–103 yr.
机译:位于南极裂谷下的陆次岩石圈地幔的特征提供了新的约束条件。该岩体的岩石学来自于Handler Ridge(北极维多利亚州土地,北极)的新生代碱性火山岩中。对于大多数样品,平衡温度是根据Fe / Mg在15 kbar的压力下在橄榄石,邻苯二茂铁和尖晶石之间的分配来计算的。这些结果表明,铁橄榄石-磁铁矿-石英缓冲液(ΔFMQ)的温度约为1030°C,fO2为–0.26至+0.39。与维多利亚州北部和南部地区发生的其他无水和水合地幔异岩组合相比,这些异岩代表了最高温度和最高氧化条件。根据主要元素模型,我们建议,在7%–18%的部分熔融后,这部分地幔代表了残留物。地球化学和同位素组成的证据表明,由碱性熔体引起的明显交代作用在102-103年期间几乎全部被套印残留橄榄岩成分。

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