An evaluation of organic matter dispersed in the Menilite Formation in Silesian Nappe (Polish Outer Carpathians): an optical microscopic approach

IF 0.4 Q4 ENVIRONMENTAL SCIENCES Geology, Geophysics and Environment Pub Date : 2022-10-28 DOI:10.7494/geol.2022.48.3.243
M. Waliczek, G. Machowski, M. Solecki, M. Stefaniuk
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引用次数: 1

Abstract

In this study, optical microscopic analyses were applied to evaluate the thermal maturity, characteristics of solid bitumen, and other organic matter finely dispersed in Oligocene shales of the Menilite Formation in the Iwonicz-Zdrój–Rudawka Rymanowska Fold (IRF) and Bóbrka–Rogi Fold (BRF) of the Central Carpathian Synclinorium of the Silesian Nappe, Outer Carpathians, Poland. The investigation was carried out at two-unit depths of the shallow and deeper D-1 sections (430 m – IRF and 4,300 m – BRF) and outcrop samples (BRF). The mean random huminite reflectance values indicate immature conditions with respect to hydrocarbon generation in samples from the D-1 shallow section (VRo≈0.40%) and in the outcrop samples (VRo=0.36%). The degree of thermal maturity of the organic matter from a depth of about 4,300 m – BRF based on random vitrinite (VRo≈0.80%) and solid bitumen (BRo≈0.65%) reflectance measurements is associated with the “oil window” for petroleum generation. The organic components dispersed in the examined Menilite Formation samples are typical for hydrocarbon-prone organic matter, suggesting the dominant kerogen type II. The potential precursor maceral for solid bitumen occurring in the examined samples from the deeper D-1 sections is largely the alginite maceral.
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西里西亚推覆体(波兰外喀尔巴阡山脉)Menilite组中分散的有机质评价:光学显微方法
本文采用光学显微分析方法,对波兰外喀尔巴阡山脉西里西亚推覆体中喀尔巴阡向斜Iwonicz-Zdrój-Rudawka Rymanowska褶皱(IRF)和Bóbrka-Rogi褶皱(BRF)中Menilite组渐新世页岩的热成熟度、固体沥青和其他精细分散的有机质特征进行了评价。调查在D-1浅层和深部两个单位深度(430 m - IRF和4300 m - BRF)和露头样品(BRF)进行。D-1浅层样品(VRo≈0.40%)和露头样品(VRo=0.36%)的随机腐殖岩平均反射率值表明其生烃条件尚不成熟。基于随机镜质组(VRo≈0.80%)和固体沥青(BRo≈0.65%)反射率测量的深度约为4300 m - BRF的有机质热成熟度与产油的“油窗”有关。Menilite组样品中分散的有机成分具有典型的易烃有机质特征,表明干酪根主要为II型。在更深的D-1剖面所检测的样品中,固体沥青的潜在前驱显微组分主要是海藻酸盐显微组分。
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