首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Geochemical characteristics of the shallow soil above the Muli gas hydrate reservoir in the permafrost region of the Qilian Mountains, China
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Geochemical characteristics of the shallow soil above the Muli gas hydrate reservoir in the permafrost region of the Qilian Mountains, China

机译:祁连山多年冻土区穆里天然气水合物储层上方浅层土壤的地球化学特征

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摘要

In this study, the Muli gas hydrate reservoir in the Qilian Mountains was chosen as a test area for the geochemical exploration of gas hydrates in mid-latitude regions. Soil headspace gases, acid-extracted hydrocarbons and stable carbon isotopes of methane, and soil magnetic susceptibility as well as microbes were tested. The results show that the distribution of geochemical anomalies can be well correlated with the underlying gas hydrate reservoir. Acid-extracted hydrocarbons, soil headspace gases, and the stable carbon isotopes of methane can be considered as major indicators for geochemical exploration of gas hydrates, whereas magnetic susceptibility and microbes served as complementary indicators. The stable carbon isotopes of methane and the hydrocarbon composition of the surface geochemical anomalies indicated a thermogenic origin, which shows that the gas source of the potential gas hydrate reservoir in this area may be contributed by deep oil and coal-formed gases. An accumulation model for the gas hydrate reservoirs was also developed and an integrated exploration project for gas hydrate, oil and coal bed methane is also proposed for the Muli area.
机译:本研究选择祁连山木里天然气水合物储层作为中纬度地区天然气水合物地球化学勘探的试验区。测试了土壤顶空气体,酸提取的碳氢化合物和甲烷的稳定碳同位素,以及土壤的磁化率和微生物。结果表明,地球化学异常的分布与潜在的天然气水合物储层具有良好的相关性。酸提取的碳氢化合物,土壤顶空气体和甲烷的稳定碳同位素可被视为天然气水合物地球化学勘探的主要指标,而磁化率和微生物则可作为补充指标。甲烷的稳定碳同位素和地表地球化学异常的碳氢化合物组成是一个热成因,表明该地区潜在天然气水合物储层的气源可能是深层石油和煤成气所致。还开发了天然气水合物储层的成藏模型,并提出了在木里地区天然气水合物,石油和煤层气的综合勘探项目。

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