首页> 外文期刊>Transactions of the Royal Society of Edinburgh. Earth Sciences >Similarities between mantle-derived A-type granites and voluminous rhyolites in continental flood basalt provinces
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Similarities between mantle-derived A-type granites and voluminous rhyolites in continental flood basalt provinces

机译:大陆洪水玄武岩省地幔衍生的A型花岗岩与大量流纹岩的相似性

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Many continental flood basalt provinces contain rhyolites with ‘A-type’ compositions and many studies have concluded that these higher silica rocks are crustal melts from metapelitic or tonalitic country rock. However, although many of the low-Ti continental flood basalt sequences exhibit a marked a silica gap from w55–65 wt.% SiO2, many incompatible element ratios, and the calculated eruption temperatures (950–1100(C) are strikingly similar between the rhyolites and associated basalts. Using experimental evidence, derivation of the low-Ti rhyolites from a basaltic parent is shown to be a viable alternative to local crustal melting. Comparison of liquid compositions from experimental melting of both crustal and mantle-derived (basaltic) source materials allows the two to be distinguished on the basis of Al2O3 and FeO content. The basalt experiments are reversible, such that the same melts can be produced by melting or crystallisation. The effect of increased water content in the source is also detectable in the liquid composition. The majority of rhyolites from continental flood basalt provinces fall along the experimental trend for basalt melting/ crystallisation at relatively low water content. The onset of the silica gap in the rhyolites is accompanied by an abrupt decrease in TiO2 and FeO*, marking the start of Fe–Ti oxide crystallisation. Differentiation from 55–65 wt.% SiO2 requires w30% fractional crystallisation in which magnetite is an important phase, sometimes accompanied by limited crustal contamination. The rapid increase in silica occurs over a small temperature interval and for relatively small changes in the amount of fractional crystallisation, thus intermediate compositions are less likely to be sampled. It is argued that the presence of a silica gap is not diagnostic of a crustal melting origin for either A-type granites or rhyolites in continental flood basalt provinces. The volume of these rhyolites erupted over the Phanerozoic is significant and models for crustal growth should take this substantial contribution from the mantle into account.
机译:许多大陆性的玄武岩省份都含有成分为“ A型”的流纹岩,许多研究得出的结论是,这些高级硅质岩是由成岩或成岩的乡村岩石形成的地壳熔体。然而,尽管许多低钛大陆洪水玄武岩层序都具有明显的w55–65 wt。%SiO2的二氧化硅间隙,但是许多不相容的元素比率以及计算得出的喷发温度(950–1100(C)之间都非常相似)流变岩和相关玄武岩:利用实验证据,从玄武岩母体中提取低钛流纹岩是替代局部地壳融化的可行方法。材料使得可以根据Al2O3和FeO的含量对二者进行区分。玄武岩实验是可逆的,这样可以通过熔融或结晶产生相同的熔体。在液体中也可以检测到源中水含量增加的影响来自大陆洪水玄武岩省的大多数流纹岩都遵循相对低水位条件下玄武岩融化/结晶的实验趋势。帐篷。流纹岩中二氧化硅间隙的开始伴随着TiO2和FeO *的急剧减少,标志着Fe-Ti氧化物开始结晶。从55-65 wt。%SiO2进行区分需要w30%的分级结晶,其中磁铁矿是重要相,有时伴随着有限的地壳污染。二氧化硅的快速增加发生在较小的温度间隔内,并且分级结晶量的变化相对较小,因此,不太可能取样中间成分。有人认为,在大陆洪水玄武岩省中,二氧化硅缝隙的存在不能诊断出A型花岗岩或流纹岩的地壳融化起源。这些在火山生代上喷发的流纹岩的数量是巨大的,地壳生长的模型应该考虑到地幔的这种实质性贡献。

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