Structural features and formation processes of a complex hydrogeochemical section in the Baikal rift zone

S. K. Pavlov
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Abstract

The purpose of the work is to study the effect of organic matter on the formation of ion-salt and gas composition of nitrogen-methane and methane thermal water occurring in the sedimentary rocks of deep horizons of artesian basins. The object of research is the Tunka intermountain artesian basin of the Baikal rift zone and the Tungor gas and oil field of the Okhotsk-Sakhalin basin, in the deep horizons of which soda (inversion) low- and high-mineralized groundwater is common. The study combines the results of the traditional study of the composition of natural solutions and the quantitative research of physical and chemical interactions in the “water – rock” system conducted using the Selector software package according to the degree of the hydrogeochemical process, which was set by the value of the rock/water ratio. Chemically pure water and rocks of medium chemical composition were used in interaction. With the use of physicochemical modeling the formation of thermal water composition in sedimentary rocks depending on the interaction degree between water and rock and the amount of organic matter was unravelled. As a result, it was determined that the organic matter present in the rock has the dominant influence on the intensity of the hydrogeochemical process determining the amount of mineralization, the ratio of components, and the amount of methane, nitrogen, and carbon dioxide produced. The correspondent compositions of the model and natural solutions showed the possibility to form low- and high-mineralized sodium bicarbonate groundwater of different gas-saturation degree in the conditions of deep horizons of sedimentary basins due to the internal reserves of the “water – rock” system not involving any components from external sources.
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贝加尔湖裂谷带复杂水文地球化学剖面构造特征及形成过程
研究了自流盆地深层沉积岩中有机质对离子盐形成、氮-甲烷气体组成和甲烷热水的影响。研究对象为贝加尔湖裂谷带的Tunka山间自流盆地和鄂霍次克-萨哈林盆地的Tungor气、油田,该盆地深层普遍存在碳酸(反转)低矿化度和高矿化度地下水。本研究将传统的自然溶液组成研究成果与“水-岩”系统中物理化学相互作用的定量研究成果结合起来,根据水地球化学过程的程度,由岩/水比的数值设定。相互作用采用化学纯净水和中等化学成分的岩石。利用物理化学模型揭示了沉积岩中热水成分的形成取决于水岩相互作用程度和有机质含量。因此,确定岩石中存在的有机质对水文地球化学过程的强度具有主导影响,该过程决定了矿化量、成分比例以及甲烷、氮和二氧化碳的产量。模型与自然溶液的对应组成表明,在沉积盆地深层条件下,由于“水-岩”体系的内部储量不含任何外源成分,有可能形成不同气饱和度的低矿化度和高矿化度碳酸氢钠地下水。
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