Experimental Study of the Process of Interaction of Hydrogen with Igneous Melts in the Conditions of the Earth’s Crust

IF 1.2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Russian Geology and Geophysics Pub Date : 2023-06-15 DOI:10.2113/rgg20234562
E. Persikov, P. G. Bukhtiyarov, L. Aranovich, O. Shaposhnikova, A. Nekrasov
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引用次数: 1

Abstract

—We report new experimental data on the interaction of igneous melts with hydrogen at temperatures of 1100–1250 °C and hydrogen pressures of 1–100 MPa in strongly reducing conditions: fO2=10−12−10−14. The experiments were conducted using an original high-gas-pressure unit equipped with a unique device that provides long-term experiments at high temperatures and pressures of hydrogen. The experiments used natural samples of igneous rocks: the magnesian basalt of the Northern Breakthrough of the Tolbachik Volcano (Kamchatka) and the andesite of the Avacha Volcano (Kamchatka). On the basis of the experiments, the following features of the process of interaction of hydrogen with igneous melts have been established: (1) Despite the high reduction potential of the H2–igneous melt system, the reactions of hydrogen oxidation and complete reduction of oxides of metals of variable valence in the melt do not go to the end. The cessation of redox reactions in basaltic and andesitic melts is due to the formation of H2O in the melt, which buffers the reduction potential of hydrogen; (2) The initially homogeneous igneous melt becomes heterogeneous: The formed H2O dissolves in the melt and in the fluid phase (at first pure hydrogen), and melts of variable, more acidic composition and small metallic isolations of the liquation structure are formed; (3) The complex process of metal–silicate liquation in magmatic melts when they interact with hydrogen can be carried out at real magma temperatures in nature (≤1200 °C), significantly lower than the corresponding melting points of iron and its alloys with nickel and cobalt; (4) The structure and dimensions of the experimentally established metal isolations are consistent with natural data on the finds of small quantities of native metals, primarily iron and its alloys with nickel and cobalt, in igneous rocks of different compositions and genesis.
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地壳条件下氢与火成岩相互作用过程的实验研究
--我们报告了在1100–1250°C的温度和1–100 MPa的氢气压力下,在强还原条件下火成岩熔体与氢气相互作用的新实验数据:fO2=10−12−10−14。实验是使用一个原始的高气压装置进行的,该装置配备了一个独特的装置,可以在氢气的高温和高压下进行长期实验。实验使用了火成岩的天然样本:托尔巴奇克火山(堪察加半岛)北部突破的镁质玄武岩和阿瓦查火山(堪查加半岛)的安山岩。在实验的基础上,氢与火成熔体相互作用过程具有以下特征:(1)尽管H2-火成熔体体系具有很高的还原潜力,但氢氧化反应和熔体中可变价金属氧化物的完全还原反应并没有结束。玄武岩和安山岩熔体中氧化还原反应的停止是由于熔体中形成H2O,从而缓冲了氢的还原电位;(2) 最初均匀的火成岩熔体变得不均匀:形成的H2O溶解在熔体和流体相中(最初是纯氢),形成了成分可变、酸性更强的熔体和液化结构的小金属隔离物;(3) 岩浆熔体中金属-硅酸盐与氢相互作用时的复杂液化过程可以在自然界中的真实岩浆温度(≤1200°C)下进行,显著低于铁及其与镍和钴的合金的相应熔点;(4) 实验建立的金属隔离物的结构和尺寸与在不同成分和成因的火成岩中发现少量天然金属的自然数据一致,主要是铁及其与镍和钴的合金。
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来源期刊
Russian Geology and Geophysics
Russian Geology and Geophysics 地学-地球科学综合
CiteScore
2.00
自引率
18.20%
发文量
95
审稿时长
4-8 weeks
期刊介绍: The journal publishes original reports of theoretical and methodological nature in the fields of geology, geophysics, and geochemistry, which contain data on composition and structure of the Earth''s crust and mantle, describes processes of formation and general regularities of commercial mineral occurrences, investigations on development and application of geological-geophysical methods for their revealing. As to works of regional nature, accelerated publication are available for original papers on a variety of problems of comparative geology taking into account specific character of Siberia, adjacent Asian countries and water areas. The journal will also publish reviews, critical articles, chronicle of the most important scientific events, and advertisements.
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