东西伯利亚海气田和金属浓度增加的天然气地球化学研究

IF 2.4 Q2 GEOSCIENCES, MULTIDISCIPLINARY
R. Shakirov, A. V. Sorochinskaja, N. Syrbu, U. Tsunogai, Tran Thi Hoang Yen
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引用次数: 2

摘要

本文介绍了东西伯利亚海海底沉积物沿比林斯角至门捷列夫海岭经向剖面的复杂气体地球化学研究结果。甲烷(高达2.4% vol.)和氢气(高达600 ppm .)的异常浓度受新构造断裂控制,是天然气水合物形成地区的典型特征。碳同位素组成表明热成因成分占主导地位。在研究沉积物的化学成分时,这些数据有助于确定新构造断裂的渗透带,这些渗透带有利于锰、铜、银等元素的富集。这些带的特征是沉积物中的气体异常(甲烷、氢气等)。在构造活动构造内的天然气异常带中,存在富含有机质的细粒沉积物,特殊的地质条件有利于异常金属含量的富集。该模式下形成的气地球化学场可作为油气聚集预测、渗透断裂带填图、油气异常环境影响评价等方面的指标。这种方法在地震活动较少的盆地,如东西伯利亚陆架海和太平洋边缘海,如南中国海(边东)尤其有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas-geochemical studies of gas fields and increased metal concentrations in the East Siberian Sea
Paper presents the results of complex gas-geochemical studies of bottom sediments of the East Siberian Sea along the meridional profile from Cape Billings to the Mendeleev Ridge. Abnormal concentrations of methane (up to 2.4% vol.) and hydrogen (up to 600 ppm) are controlled by neotectonic faults and are typical for the areas of gas hydrate formation. The carbon isotope composition indicates the predominance of the thermogenic component. When studying the chemical composition of sediments, the data helped to identify the permeability zones of neotectonic faults that have favorable conditions for the concentration of a number of elements: Mn, Cu, Ag. Such zones are characterized by the gas anomalies in sediments (methane, hydrogen, etc.). The accumulation of anomalous metal contents is facilitated by specific geological conditions that occur in zones of gas anomalies within tectonically active structures, where fine-grained sediments enriched with organic matter are present. The gas-geochemical fields formed in this pattern can be applied as indicators in forecasting of hydrocarbon accumulations, for mapping permeable fault zones, and for the environmental impact assessing of hydrocarbon anomalies. This approach could be especially effective in the basins with low seismic activity such as seas of East Siberian shelf and some of the marginal seas of Pacific Ocean, for instance, South China Sea (Bien Dong).
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来源期刊
VIETNAM JOURNAL OF EARTH SCIENCES
VIETNAM JOURNAL OF EARTH SCIENCES GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
20.00%
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