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首页> 外文期刊>New Zealand journal of geology & geophysics >Beyond crystal mushes: evidence for uptake of high-T pyroxene antecrysts from mid- to upper crustal andesites into tephras from the Central Plateau, New Zealand
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Beyond crystal mushes: evidence for uptake of high-T pyroxene antecrysts from mid- to upper crustal andesites into tephras from the Central Plateau, New Zealand

机译:除了水晶糊状物之外:从中部到上层地壳中的高T比糖烯酮的证据来自新西兰中央高原的Tephras

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摘要

Pyroxene crystals from recent Central Plateau tephras are used to deduce their formation conditions through two-pyroxene thermobarometry. Crystals return pseudo-pressures and pseudo-temperatures that are artefacts of uptake of antecrysts formed at a range of crustal levels by isobaric cooling of previously intruded magmas. MELTS modelling of tephra glass compositions shows that pseudo-PT conditions are reproduced at oxygen fugacities above the nickel-nickel oxide buffer (NNO+1, NNO+2), mid- to upper crustal pressures (100-400 MPa), and temperatures between c. 900 degrees C and 1100 degrees C. Modelled crystals from the deep crust (800 MPa) are restricted to clinopyroxenes. However, these display chemical equilibrium with shallow orthopyroxenes at higher pseudo-PT conditions than observed in Central Plateau pyroxenes. The data indicate uptake of high-temperature pyroxenes at mid- to shallow crustal levels into ascending andesitic melts and thus preclude the presence of long-lived crustal mush zones (1000 degrees C) as a source for the crystal cargo of the Central Plateau tephras studied here. Further, the apparent absence of deep crustal pyroxene antecrysts does not preclude models of arc andesite genesis without a 'deep crustal hot zone' beneath the Central Plateau. Generation and ascent of primary andesites from a heterogeneous mantle wedge is therefore a possible scenario at the southern Hikurangi margin.
机译:来自近期中央平台Tepharras的辉石晶体用于通过两季辛热量测定法推导它们的形成条件。晶体返回伪压力和伪温度,这些伪温度是通过先前侵入的岩浆的异粗冷却在一系列地壳水平上形成的抗弯曲的伪型。 Tephra玻璃组合物的熔化模拟表明,伪PT条件在镍 - 镍氧化镍缓冲液(NNO + 1,NNO + 2)上方的氧气球场上再现,中部地壳压力(100-400MPa),以及之间的温度C。 900℃和& 1100℃。来自深外壳(800MPa)的建模晶体仅限于Closopoocoxenes。然而,这些在较高的假PSTopoyopopopy中显示出化学平衡,比在中央平台藻类中观察到。该数据表明在中浅地壳水平的高温藻酶上升到上升的安塞蒂米熔体,从而阻止了长寿命的地壳糊涂区(&lt 19℃)作为中央高原晶体货物的源泉Tephras在这里学习。此外,在中央高原下方没有“深层地壳热区”,不在中央高原下面的“深层地壳热区”不排除弧形和晶体的模型。因此,来自异构地幔楔的主要和中央的生成和上升是南部Hikurangi边缘的可能场景。

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