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首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Unraveling Hydrocarbon Microseepages in Onshore Basins Using Spectral-Spatial Processing of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) Data
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Unraveling Hydrocarbon Microseepages in Onshore Basins Using Spectral-Spatial Processing of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) Data

机译:使用先进的星载热发射和反射辐射计(ASTER)数据的光谱空间处理方法来解开陆上盆地的烃类微渗漏

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摘要

This study focuses on the spectral characterization of superficial effects caused by natural gaseous hydrocarbon (HC) escapes (microseepages) on onshore basins and means to detect the phenomena using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) imagery. The Northern Tucano basin (NTB) (Brazil) displays archetypal onshore microseepages, and it is used here as a case study area. Regional HC geochemical data yielded from NTB soil samples helped to outline the strategies for imagery processing and assessment of results. We firstly devised a generic detection model for onshore basins in which microseepages indicated by HC geochemistry should spatially match a number of surface expressions with key remote sensing signatures, such as bleached soil and rocks (i. e., reduction in Fe3+ to Fe2+), concentration of specific clays (kaolinite), and carbonates (siderite) and geobotanical markers. These evidences guided the use of remote sensing data and information extraction techniques to find more sites favorable to host HC microseepages in the NTB. ASTER data processed through spectral mixing analysis and supervised and unsupervised neural network systems highlighted sites where features predicted in the detection model concurred seamlessly with geochemical anomalies. The approach also revealed other sites with similar characteristics, but for which no geochemical data exist. These sites are taken as new potential targets for the presence of microseepages and possibly HC reservoirs. The research demonstrated the potential of remote sensing data and spectral-spatial methodologies for economical, onshore detection of HCs for exploration purposes. Potential ramifications of the study include indirect detection of gaseous HC reservoirs in terrestrial planets (fostering the search for signs of life) and depiction of non-negligible, replenishable continental sources of HC emissions on Earth that may contribute to global warming.
机译:这项研究的重点是由天然碳氢化合物(HC)逸出(微渗漏)在陆上盆地上引起的表面效应的光谱表征,以及利用先进的星载热发射和反射辐射计(ASTER)图像检测现象的手段。北图卡诺盆地(NTB)(巴西)表现出典型的陆上微渗漏,在这里用作案例研究区域。从NTB土壤样品中获得的区域HC地球化学数据有助于概述图像处理和结果评估的策略。我们首先设计了一个陆上盆地的通用检测模型,其中由HC地球化学指示的微渗漏应在空间上匹配具有关键遥感特征的许多表面表达,例如漂白的土壤和岩石(即,Fe3 +还原为Fe2 +),特定浓度黏土(高岭石),碳酸盐(菱铁矿)和土生植物标记。这些证据指导了遥感数据和信息提取技术的使用,以寻找更多有利于在NTB内容纳HC微渗漏的地点。通过光谱混合分析以及有监督和无监督神经网络系统处理的ASTER数据突出显示了检测模型中预测的特征与地球化学异常无缝衔接的位置。该方法还揭示了其他具有相似特征但没有地球化学数据的站点。这些地点被视为存在微渗漏和可能的HC储集层的新潜在目标。这项研究证明了遥感数据和光谱空间方法在经济,陆上检测HC的勘探潜力方面的潜力。这项研究的潜在结果包括间接探测陆地行星中的气态HC气藏(以促进寻找生命迹象),以及描述地球上不可忽略的,可补充的HC排放源,这些排放源可能导致全球变暖。

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