Seismic tomography of the mantle and primary hydrogen deposits in the Dnieper-Donetsk basin

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS Geofizicheskiy Zhurnal-Geophysical Journal Pub Date : 2022-08-24 DOI:10.24028/gj.v44i3.261967
T. Tsvetkova, I. Bugaenko, L.M. Zaets
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Abstract

According to the three-dimensional P-velocity model of the mantle under Eurasia obtained by the Taylor approximation method, the analysis of the velocity structure of the mantle (to depths of 2500 km south of 50° N and 1700 km north) in the territory of the Dnieper-Donetsk depression was carried out in order to determine the possible areas of primary hydrogen release. Primary hydrogen is formed in the core and lower mantle, can be transferred to the surface (according to I.L. Gufeld). According to seismotomography, nine superdeep mantle fluids are isolated on the territory of Ukraine, the routes of which are defined as subvertical columns of alternation of high-speed and low-speed anomalies. In addition to the presence of superdeep mantle fluids in the study area, the following characteristics were analyzed: the depth of the main geodynamic boundary, the influence of the high-velocity transition zone of the upper mantle (propagating northward into the low-velocity transition zone of the upper mantle of the East European platform), the depth of the Moho boundary, gravity mantle anomalies and heat flow. The totality of the studies performed allowed us to conclude that, according to seismic tomography data, the Izyumsky and the eastern part of the Lokhvitsky segment of the Dnieper-Donetsk depression are promising areas for detecting primary hydrogen in the territory of the Dnieper-Donetsk depression.
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第聂伯河-顿涅茨克盆地地幔和原生氢矿床的地震层析成像
根据泰勒近似法获得的欧亚大陆地幔三维P速度模型,对第聂伯河-顿涅茨克凹陷地区地幔(50°N以南2500公里和以北1700公里)的速度结构进行了分析,以确定可能的原生氢释放区域。初级氢在地核和下地幔中形成,可以转移到地表(根据I.L.Gufeld的说法)。根据地震层析成像,九种超深地幔流体在乌克兰领土上被隔离,其路径被定义为高速和低速异常交替的颠覆性柱。除了研究区存在超深地幔流体外,还分析了以下特征:主要地球动力学边界的深度、上地幔高速过渡带(向北传播到东欧平台上地幔低速过渡带)的影响、莫霍边界的深度,重力地幔异常和热流。所进行的全部研究使我们得出结论,根据地震层析成像数据,第聂伯河-顿涅茨克凹陷的伊久姆斯基和洛赫维茨基段东部是在第聂伯湖-顿涅茨克凹陷区域探测原生氢的有希望的地区。
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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