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Molecular and isotopic composition of gas occurrences in the Thrace basin (Turkey): origin of the gases and characteristics of possible source rocks

机译:色雷斯盆地(土耳其)中天然气的分子和同位素组成:天然气的起源和可能的烃源岩特征

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Molecular and isotopic compositions of nine gas samples from seven fields in the Thrace basin (northwest Turkey) are determined in order to define the characteristics of the respective possible source rocks. According to previous organic geochemical studies, the Hamitabat, Ceylan and Mezardere formations are considered as potential source rocks. A first evaluation of the delta(13)C values of methane, ethane, propane and the deltaD isotope value of methane indicated in general a thermogenic origin. However, a further evaluation, which considers the isotopic composition of delta(13)C from methane, ethane and propane vs. 1, where n is the respective number of carbon atoms in each gas molecule, showed mixing of gases of different origin in most of the analysed gas samples. Consequently, three gas groups are distinguished: group A-a thermogenic gas from a single source rock, group B-a mixture of thermogenic and microbial gases, group C-a mixture of thermogenic gases at least from two different source rocks.A modelling approach, which predicts the isotopic composition of a thermogenic gas from a marine or terrestrial organic matter as a function of isotopic composition and maturity of the respective source rock enabled definition of source rock properties. A mature (1.3-1.6 vitrinite reflectance) source rock with a mixed (terrestrial+marine) type of organic matter and an early mature (0.7-0.8 vitrinite reflectance) source rock with marine organic matter were identified as precursors of thermogenic gases in the basin. Furthermore, microbial gas also contributed to the formation of some gas fields. In all natural gas samples investigated, the mature source rock of mixed type organic matter contributed the major part of thermally generated gas. In this way, it has to be considered as the main gas producing source in the Thrace basin.However, a final gas-source rock correlation was not performed, since all the three possible source rocks have gained the predicted maturity ranges in the kitchen areas of the gas fields, and the spatial distribution of organo-facies of the potential source rocks is unknown.This study in Thrace basin has shown that determination of source rock properties by isotopic modelling contributes to gas-source rock correlation, which is problematic in basins with more than one possible source rock. (C) 2004 Elsevier B.V. All rights reserved.
机译:确定了色雷斯盆地(土耳其西北部)的七个气田的九种气体样品的分子和同位素组成,以便确定各自可能的烃源岩的特征。根据先前的有机地球化学研究,认为Hamitabat,Ceylan和Mezardere地层是潜在的烃源岩。甲烷,乙烷,丙烷的δ(13)C值和甲烷的δD同位素值的首次评估通常表明是热成因的。但是,进一步的评估考虑了甲烷,乙烷和丙烷的δ(13)C同位素组成与1 / n的关系,其中n是每个气体分子中碳原子的相应数目,该评估表明混合了不同来源的气体在大多数分析气体样品中。因此,区分了三个气体组:来自单一烃源岩的Aa组热气,至少来自两个不同烃源岩的Ba组热源和微生物气的混合物,Ca组至少两种热源气的热源气体的混合物。来自海洋或陆生有机质的产热气体作为同位素组成和各个烃源岩成熟度的函数,可以确定烃源岩的性质。盆地中热源气体的前兆被确定为具有混合(陆地+海洋)类型有机质的成熟(1.3-1.6镜质体反射率)源岩和具有海洋有机质的早期成熟(0.7-0.8镜质体反射率)源岩。 。此外,微生物气体也有助于某些气田的形成。在所有调查的天然气样品中,混合型有机质的成熟烃源岩是热生成气体的主要组成部分。这样,它必须被认为是色雷斯盆地的主要产气源,但是,由于这三种可能的烃源岩均已达到厨房区域的预测成熟度范围,因此未进行最终的气源岩对比。色雷斯盆地的这项研究表明,通过同位素模型确定烃源岩的性质有助于气源岩的相关性,这在盆地中是个问题。有不止一种可能的烃源岩(C)2004 Elsevier B.V.保留所有权利。

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