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Secular changes in tonalite-trondhjemite-granodiorite composition as markers of the progressive cooling of Earth

机译:斜方晶石-斜方辉石-闪闪发光的组成的长期变化是地球逐渐冷却的标志

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摘要

Archean tonalite-trondhjemite-granodiorite associations (TTG) are classically thought to generate through partial melting of hydrous metabasalts. However, the chemical composition of the least differentiated TTG parental magmas evolved from 4.0 to 2.5 Ga. During this interval, the Mg# as well as the Ni and Cr contents increased, which is interpreted as reflecting increased interactions between felsic melts generated by metabasalt melting and mantle peridotite. Similarly, (CaO + Na2O) and Sr also increased over time, thus reflecting an increase in the abundance of plagioclase in the melt residue. The presence or absence of residual plagioclase is interpreted in terms of melting depth. The demonstrated interaction between TTG parental magmas and the mantle rules out their genesis by fusion of previously underplated metabasalt and favors the melting of subducted slab material. At 4.0 Ga, Earth's geothermal gradient was sufficiently high to allow slab melting at shallow depths where plagioclase was stable. Consequently, due to the small thickness of the overlying mantle wedge, felsic magmas interacted little with the mantle. At 2.5 Ga, however, owing to lower geothermal gradients, the melting depth was greater and plagioclase became no longer stable in the thick mantle wedge overlying the subducted slab. As a result, felsic magmas reacted strongly with the mantle peridotite. The changes of TTG composition during Archean time can be thus interpreted as reflecting the progressive cooling of Earth.
机译:传统上认为,太古代斜纹岩-长白榴石-闪长闪长岩协会(TTG) 是通过含水偏玄武岩的部分熔融 产生的。但是, 最低分化的TTG父母岩浆的化学成分从4.0 演化到2.5 Ga。在此期间,Mg#和Ni 熔融产生的长英质熔体与地幔橄榄岩之间相互作用的 。同样,(CaO + Na 2 O)和 Sr也随时间增加,从而反映出熔体残渣中斜长石酶丰度的增加。残余斜长石的存在 或不存在的解释为熔化深度的 。 TTG 母岩浆与地幔之间的相互作用已证明是通过融合先前未充分沉积的偏玄武岩的 排除了它们的成因,并有利于俯冲板状材料的熔化。在4.0 Ga下,地球的地热梯度 足够高,可以使板坯在斜长石稳定的浅深度 融化。因此,由于上地幔楔的 厚度较小,因此长英质岩浆与地幔相互作用很小。但是,在2.5 Ga下,由于较低的 地热梯度,融化深度更大,斜长石 在上覆 的厚地幔楔中不再稳定。俯冲板。结果,长英质岩浆与地幔橄榄岩强烈地反应了 。因此,在太古代时期,TTG组成的变化 可以解释为反映了地球的 渐进冷却。

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  • 来源
    《Geology》 |2002年第4期|319-322|共4页
  • 作者单位

    Laboratoire Magmas et Volcans, Observatoire de Physique du Globe de Clermont-Ferrand, Université Blaise Pascal, Centre National de la Recherche Scientifique 5, rue Kessler 63038, Clermont-Ferrand cedex, France;

    Laboratoire Magmas et Volcans, Observatoire de Physique du Globe de Clermont-Ferrand, Université Blaise Pascal, Centre National de la Recherche Scientifique 5, rue Kessler 63038, Clermont-Ferrand cedex, France;

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