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Experimental constraints on metal transport in fumarolic gases

机译:富马隆气体金属运输的实验约束

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摘要

Metals are efficiently transported in a gas phase and the gas composition strongly affects transport rates of these metals in the gas phase. Here we present a new approach to systematically investigate metal transport and deposition from volcanic gases of different compositions: We test the effect of sulfur and chlorine on the volatilization of 30 metal oxides and the phases deposited along a temperature gradient of 1250-300 degrees C in evacuated silica glass tubes in water-free systems. In total, we observe 30 different deposited phases, including oxides, sulfides and chlorides. The experimental results are compared with closed system and open system thermochemical equilibrium calculations. The dosed system calculations provide insights into the metal speciation in the gas phase, and the open system calculations provide thermodynamic predictions of the temperature ranges over which metals deposited from the gas phase. Both approaches only partially reproduce the experimental observations of the deposited phases in the silica glass tubes. However, when we compare our experimental results with records from fumaroles on three different volcanoes (Kudriavy volcano, Russia, La Fossa crater on Vulcan, Italy, and Momotombo. Nicaragua), we find that our experiments agree very well with natural observations. We suggest that similar experimental investigations are powerful tools in the study of metal transport in ore forming systems involving gas phases, and results may be applied to various processes in terrestrial and planetary environments. (C) 2020 Elsevier B.V. All rights reserved.
机译:金属在气相中有效地运输,气体组合物强烈影响气相中这些金属的运输速率。在这里,我们提出了一种新的方法来系统地研究不同组合物的火山气体的金属运输和沉积:我们测试硫和氯对30金属氧化物挥发的效果和沿1250-300摄氏度的温度梯度沉积的相。在无水系统中抽空的二氧化硅玻璃管。总共观察到30种不同的沉积阶段,包括氧化物,硫化物和氯化物。将实验结果与封闭系统和开放系统热化学平衡计算进行比较。给药系统计算提供了对气相中的金属形态的见解,并且开放系统计算提供了从气相沉积的金属的温度范围的热力学预测。两种方法仅部分地再现沉积相在二氧化硅玻璃管中的实验观察。然而,当我们将我们的实验结果与三种不同的火山上的富马拉(Kudriavy火山,俄罗斯,意大利,意大利和Momotombo上的俄罗斯,La Fossa火山口进行比较时。尼加拉瓜),我们发现我们的实验非常符合自然观察。我们认为类似的实验研究是在涉及气相的矿石形成系统中的金属运输研究中的强大工具,并且可以应用于地面和行星环境中的各种过程。 (c)2020 Elsevier B.v.保留所有权利。

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