Heavy metals in oils and formation of bitumen-hydrothermal associations in the rocks of the Dnieper-Donetsk paleorift

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Abstract

Formulation of the problem of the article. The problem of common finding of hydrocarbons and heavy metals in the geological space is very interesting from the point of view of theoretical and practical meaning. It was discussed in many works of domestic and foreign scientists from different positions, stipulated by the absence of ambiguity in the explanation of this fact. It is important that heavy metals are present not only in oils, but also in bitumen of bituminous-hydrothermal mineral associations of ore fields in the region. The main aim of the article is to research the genetic, spatial and temporal correlation of heavy metals and hydrocarbons. Research Methods. The processes adducting to the accumulation of heavy metals in oils and the formation of bituminous-hydrothermal associations in rocks have been researched. In particular, the definition of heavy metals in oils from various deposits of the Dnieper-Donetsk basin was performed using the X-ray fluorescence method and the definition of the isotopic composition of carbon of solid bitumen - by mass spectrometric methods. Results. The processes adducting to the accumulation of heavy metals in oils and the formation of bituminous-hydrothermal associations in rocks have been researched. These processes are associated with ascending heat and mass transfer, which adduct to the unloading of fluid streams, which contained a variety of chemical elements, including compounds of carbon dioxide, methane, mercury vapor, and complexes of heavy metal. Spatially, that process coincides with the anticlannel structures which accompany the zones of deep faults. It has been found that the concentrations of heavy metals in oils are associated with the peculiarities of deposits formation within different geological structures. Physical-chemical conditions for the formation of hydrocarbon-hydrothermal fluid systems, which involve both biogenic and abiogenic (synthesized) hydrocarbons, were determined. The established geochemical regularity of increasing concentrations of heavy metals with the depth of oil occurrence is associated with high contents of sulfur compounds in the form of hydrothermal sulfide minerals, which are actively hydrolyzed at high temperatures and lead to leaching of metals and their entry into fluid`s systems where stable sulfur complexes are formed. Scientific novelty and practical importance. The formation of hydrocarbon-heavy metal systems within the Dnieper-Donetsk basin occurs with the participation of synthesized and organic hydrocarbons, as well as mantle exhalates and hydrothermal vent. The result is cooling of these systems. Hydrocarbon fractions (oil) are enriched with heavy metals, and hydrothermal vents are enriched with bitumen-forming naphthides. The practical importance of this research is increase in the efficiency of forecasting and prospecting of hydrocarbon deposits at the expense of theoretical modeling of the bituminous-hydrothermal mineral associations formation in ore fields.
石油中的重金属和第聂伯-顿涅茨克古裂谷岩石中沥青-热液组合的形成
文章问题的提法。碳氢化合物和重金属在地质空间中共同发现的问题,无论从理论意义还是实际意义上都是非常有趣的。在许多国内外科学家的著作中,从不同的立场讨论了这一问题,规定了对这一事实的解释没有歧义。重要的是,重金属不仅存在于石油中,而且存在于该地区矿田沥青-热液矿物组合的沥青中。本文的主要目的是研究重金属和碳氢化合物的成因、时空相关性。研究方法。研究了原油中重金属的富集过程和岩石中沥青-热液组合的形成过程。特别是,用x射线荧光法确定了第聂伯-顿涅茨克盆地不同矿床的石油中重金属的含量,用质谱法确定了固体沥青的碳同位素组成。研究了原油中重金属的富集过程和岩石中沥青-热液组合的形成过程。这些过程与上升的传热和传质有关,这些过程加在流体流的卸载上,其中包含各种化学元素,包括二氧化碳化合物、甲烷、汞蒸气和重金属络合物。在空间上,这一过程与伴随深断层带的反槽构造相吻合。研究发现,石油中重金属的浓度与不同地质构造中矿床形成的特点有关。确定了含生物源和非生物源(合成)烃的油气热液体系形成的物理化学条件。已确定的重金属浓度随石油赋存深度增加的地球化学规律与以热液硫化物矿物形式存在的高硫化物含量有关,这些硫化物在高温下被积极水解,导致金属浸出并进入流体系统,形成稳定的硫配合物。科学的新颖性和实用的重要性。第聂伯-顿涅茨克盆地烃类-重金属体系的形成有合成烃和有机烃的参与,也有地幔喷发和热液喷口的参与。结果是这些系统的冷却。烃类组分(油)富集重金属,热液喷口富集成沥青的环烷。本研究的实际意义在于提高了油气矿床预测和找矿的效率,但牺牲了对矿田沥青-热液矿物组合地层的理论建模。
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