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On the relationship between oxidation state and temperature of volcanic gas emissions

机译:关于氧化态与火山气体排放温度的关系

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The oxidation state of volcanic gas emissions influences the composition of the exosphere and planetary habitability. It is widely considered to be associated with the oxidation state of the melt from which volatiles exsolve. Here, we present a global synthesis of volcanic gas measurements. We define the mean oxidation state of volcanic gas emissions on Earth today and show that, globally, gas oxidation state, relative to rock buffers, is a strong function of emission temperature, increasing by several orders of magnitude as temperature decreases. The trend is independent of melt composition and geodynamic setting. This observation may explain why the mean oxidation state of volcanic gas emissions on Earth has apparently increased since the Archean, without a corresponding shift in melt oxidation state. We argue that progressive cooling of the mantle and the cessation of komatiite generation should have been accompanied by a substantial increase of the oxidation state of volcanic gases around the onset of the Great Oxidation Event. This may have accelerated or facilitated the transition to an oxygen-rich atmosphere. Overall, our data, along with previous work, show that there are no single nor simple relationships between mantle-, magma- and volcanic gas-redox states. (C) 2019 Elsevier B.V. All rights reserved.
机译:火山气体排放的氧化状态影响了整个环圈和行星居民的组成。广泛认为与挥发物渗透的熔化态有关。在这里,我们介绍了火山气体测量的全局合成。我们定义了今天地球火山气体排放的平均氧化状态,并表明,全球气体氧化状态相对于岩石缓冲液是发射温度的强大功能,随着温度降低而增加几个数量级。该趋势与熔体组成和地球动力学设置无关。该观察可以解释为什么由于氩气不具有相应的熔融氧化状态,因此地球上的火山气体排放的平均氧化状态显然增加。我们认为披着披露的渐进式冷却和Komatiite生成的停止应该伴随着大氧化事件发作周围的火山气体氧化状态的大幅增加。这可能加速或促进过渡到富含氧气的气氛。总体而言,我们的数据以及以前的工作表明,地幔,岩浆和火山气氧化还原状态之间没有单一也没有简单的关系。 (c)2019 Elsevier B.v.保留所有权利。

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