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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >The potential of bound biomarker profiles released via catalytic hydropyrolysis to reconstruct basin charging history for oils
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The potential of bound biomarker profiles released via catalytic hydropyrolysis to reconstruct basin charging history for oils

机译:通过催化加氢热解释放出的结合生物标志物特征的潜力,以重建油的盆地装油历史

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Catalytic hydropyrolysis performed in a fixed bed reactor using high hydrogen gas pressures (> 10 MPa) has the unique ability to release high yields of biomarker hydrocarbons from macromolecular organic fractions in petroleum source rocks and crude oils whilst minimising alteration to their isomeric distributions. One potential application of such bound biomarker profiles, which is the subject under investigation here, is to act as molecular tracers to aid the reconstruction of secondary migration pathways of oils in basins as well as reservoir filling histories. Our hypothesis is that bound biomarker compounds released from the adsorbed asphaltenes from core petroleum samples along a known migration pathway reveal the maturity and source characteristics of the first oil that came into contact with the carrier substrate. The primary investigation was performed on the Blake Field (Outer Moray Firth, UK North Sea, blocks 13/24 and 13/29), where the solvent-extractable biomarker hydrocarbon distributions exhibit no significant variations throughout the reservoir, offering little information as to reservoir filling events. Bound biomarker characterisation obtained by the hydropyrolysis of the adsorbed asphaltene fractions not only displayed lower overall maturities than the hydrocarbon biomarkers, but significantly exposed a discrete positive trend of maturity emanating from a location in the northwest part of the field which, if the original hypothesis is correct, possibly indicates the location where oil first entered the reservoir. Supplementary information obtained from laboratory experiments where two oils of subtly different composition (in terms of bound biomarker profiles) were consecutively passed through core substrates under anhydrous and hydrous conditions, and eluted with solvents of increasing polarity, revealed that the most strongly adsorbed asphaltenes exhibited bound biomarker distributions indicative of approximately 70 wt% of asphaltenes from the original oil retained on the core substrate, which is compatible with the hypothesis. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在固定床反应器中使用高氢气压力(> 10 MPa)进行的催化加氢热解具有独特的能力,可从石油烃源岩和原油中的大分子有机馏分中释放高产率的生物标志物烃,同时最大程度地减少其异构体分布的变化。这种结合的生物标志物谱的潜在应用是分子示踪剂,以帮助重建盆地中石油的次生迁移途径以及储层填充历史,这是本文研究的主题。我们的假设是,沿着已知的迁移途径从核心石油样品中吸附的沥青质释放的结合生物标志物化合物,揭示了与载体基质接触的第一种油的成熟度和来源特征。初步调查是在布雷克油田(英国北海外海峡湾,第13/24和13/29号区块)进行的,该地区可溶剂萃取的生物标志物碳氢化合物分布在整个储层中均无显着变化,几乎没有提供有关储层的信息。填充事件。通过氢解吸附的沥青质馏分获得的结合生物标志物特征不仅显示出比烃类生物标志物低的总体成熟度,而且显着暴露了该油田西北部某个位置散发出的离散的积极趋势,如果最初的假设是正确,可能表明石油首次进入油藏的位置。从实验室实验获得的补充信息,其中两种完全不同的成分的油(根据结合的生物标志物特征)在无水和含水条件下连续通过核心底物,并用极性增加的溶剂洗脱,结果表明,吸附最强的沥青质表现出结合力生物标志物的分布表明来自保留在核心基质上的原始油中约70 wt%的沥青质,这与假设相符。 (C)2004 Elsevier Ltd.保留所有权利。

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