首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Debating the petrogenesis of Proterozoic anorthosites -Reply to comments by Vander Auwera et al. on 'Pyroxene megacrysts in Proterozoic anorthosites:Implications for tectonic setting, magma source and magmatic processes at the Moho'
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Debating the petrogenesis of Proterozoic anorthosites -Reply to comments by Vander Auwera et al. on 'Pyroxene megacrysts in Proterozoic anorthosites:Implications for tectonic setting, magma source and magmatic processes at the Moho'

机译:讨论元古代钙长石的成岩作用-回复Vander Auwera等人的评论。关于“元古代钙长石中的辉石巨晶:对Moho构造背景,岩浆源和岩浆过程的影响”

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We welcome the opportunity for discussion on the petrogenesis of Proterozoic anorthosites stimulated by a recent comment by Vander Auwera et al. (2014). In their comment Vander Auwera et al. accept our new geochronologic and isotopic data on comagmatic, high-aluminum orthopyroxene megacrysts (HAOMs) and anorthosites (Bybee et al., 2014), but provide an alternate interpretation of the data, in line with their model of magma genesis through melting of a mafic lower crust. In short, they suggest that the similarity of the ages of the HAOMs and a potential lower crustal source for the Rogaland Anorthosite Province (RAP) is evidence that the HAOMs crystallized at 1.05 Ga at the base of a thickened crust from the parent magma of the gabbronoritic Feda suite. They suggest that this hypothesis is supported by overlapping Nd and Pb isotopic compositions of the HAOMs and Feda suite. Vander Auwera et al.'s argument centers on their suggestion that the HAOMs, observed in most Proterozoic anorthosites, are restitic source material entrained in the melts from their proposed gabbronoritic source. This model relies on a two-stage petrogenesis, wherein an underplating event forms lower crustal gabbronoritic cumulates, followed approximately 100 million years later by a lower crustal melting event that entrains HAOMs and then crystallizes vast amounts of plagioclase to form Proterozoic anorthosites. We strongly disagree with this interpretation of our geochronologic and geochemical data for the reasons that are outlined in this reply.
机译:我们欢迎有机会讨论由范德·奥韦拉(Vander Auwera)等人的最新评论所激发的元古代钙硅钙石的成岩作用。 (2014)。在他们的评论范德·奥韦拉等。接受我们有关高岩浆,高铝邻苯二茂基大晶体(HAOM)和钙斜岩的新的年代学和同位素数据(Bybee et al。,2014),但根据其岩浆成因模型通过融化岩浆提供了另一种解释方法镁铁质下地壳。简而言之,他们认为HAOMs的年龄和Rogaland钙铁块省(RAP)的潜在下地壳来源的相似性,证明了HAOMs在1.05 Ga处从母体岩浆的加厚地壳底部结晶。 gabbronoritic Feda套房。他们认为,这一假设得到了HAOMs和Feda套件中Nd和Pb同位素组成的重叠的支持。范德·奥韦拉(Vander Auwera)等人的论点集中在他们的建议上,即在大多数元古代钙长石中观察到的HAOMs是从拟建辉长岩来源带入熔体的夹杂物。该模型依赖于两个阶段的成岩作用,其中一个基底事件形成了下地壳辉辉岩的堆积物,随后大约一亿年之后发生了一个下地壳融化事件,该事件夹带了HAOMs,然后使大量斜长石结晶成元古生代钙硅钙石。由于本回复中概述的原因,我们强烈不同意我们对地球年代学和地球化学数据的解释。

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