贝加尔湖西北部和东南部渗漏气体分子和同位素组成的变化

IF 0.8 Q3 ENGINEERING, PETROLEUM Georesursy Pub Date : 2022-05-16 DOI:10.18599/grs.2022.2.19
O. Vidishcheva, G. Akhmanov, E. V. Kislitsyna, A. Mazzini, Anna Yu. Mal’tseva, E. Poludetkina, E. Bakay, I. E. Man’ko, D. Korost, O. Khlystov
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引用次数: 0

摘要

本文介绍了贝加尔湖裂谷盆地底部沉积物的气体地球化学研究和油气潜力评价结果。在Class@Baikal在2014-2019年的项目中,对贝加尔湖底部沉积物中的气体进行了分析。结果表明,在湖泊西北部和东南部收集的渗出气体的化学成分和同位素组成存在明显差异。从西北部释放的渗流中甲烷相对富集,C2+化合物浓度较低。渗流气体中CH4的碳同位素组成相对较轻(从-72,7到-50,1‰VPDB),C2H6中δ13C的变化率较高(从-65到-22‰VPDB。从湖泊东南部释放的气体中C2+化合物增加,甲烷的碳同位素组成相对较轻(从-57,2‰VPDB到-41,0‰VPDB)。乙烷的碳同位素组成在-32至-25‰VPDB之间。贝加尔湖裂谷盆地的不对称结构及其内部气体运移的各种过程可能导致了这种变化。扩散过程导致湖泊西北部渗漏气体的碳同位素组成较轻,甲烷富集了气体分子组成。这种由地球化学过程引起的分子和同位素分馏有助于了解天然气从烃源岩向地球表面的迁移。在根据天然气地球化学研究数据评估油气源岩和盆地潜力时,应考虑类似的分馏地球化学指标。
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Variations in molecular and isotopes composition of seepage gases in the north-western and south-eastern parts of Lake Baikal
The paper presents results of gas-geochemical studies of bottom sediments and petroleum potential assessment of Baikal Rift Basin. During the expeditions of the Class@Baikal project in 2014–2019, gases from the Lake Baikal bottom sediments were analyzed. The results showed a clear difference in chemical and isotopic composition of the seeping gases collected in the northwestern and southeastern parts of the lake. The seepage released from northwest part were relatively enriched by methane and had a low concentration of C2+ compounds. The seepage gases had relatively lighter carbon isotopes composition of CH4 (from -72,7 to -50,1 ‰ VPDB) and the high variability of δ13C in C2H6 (from -65 to -22 ‰ VPDB). The gases released from southeastern part of the lake had an increase in C2+ compounds and had relatively lighter carbon isotopes composition of methane (from –57,2 to –41,0 ‰ VPDB). The carbon isotopes composition of ethane varies from -32 to -25 ‰ VPDB. Asymmetric structure of the Baikal rift basin and various processes of gas migration within it might cause the variations. Diffusive process led to the lighter carbon isotopes composition of the seepage gases from the northwestern part of lake and the gas molecular composition enrichment by methane. Such molecular and isotopic fractionations caused by geochemical processes helps to understand the migration of gas from source rocks to the earth’s surface. Similar geochemical indicators of fractionation should be taken into consideration when assessing oil and gas source rocks and basin potential from gas geochemical studies data.
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
期刊最新文献
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