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Integrated analysis of petroleum biomarkers and polycyclic aromatic compounds in lake sediment cores from an oil sands region

机译:油砂区域湖泥浆芯中的石油生物标志物和多环芳族化合物的综合分析

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We examined polycyclic aromatic compounds (PACs) and petroleum biomarkers (steranes, hopanes, and terpanes) in radiometrically-dated lake sediment cores from the Athabasca oil sands region (AOSR) and the Peace-Athabasca Delta (PAD) region in Alberta (Canada) to determine whether contributions from petroleum hydrocarbons have changed over time. Two floodplain lakes in the PAD (PAD 30, PAD 31) recorded increased flux of alkylated PACs and increased petrogenic (petroleum-derived) hydrocarbons after similar to 1980, coincident with a decline of sediment organic carbon content and a rise of bulk sedimentation rate, likely due to increased Athabasca River flow. A large expansion of upstream oilsands mining, upgrading, and refining may also have contributed to the observed shift to more petrogenic hydrocarbons to sediments since the 1980s. Alkylated PAC flux increased in the floodplain lake analyzed within the AOSR (Saline Lake) since the 1970s-1980s, coincident with a sharp rise in sediment organic carbon content and increased contributions of petrogenic hydrocarbons. These changes identify increased supply of petrogenic PACs occurred as Athabasca River floodwaters waned, and may implicate aerial contributions of petrogenic hydrocarbons from oilsands activity. PACs and petroleum biomarkers (steranes, hopanes, and terpanes) in sediment cores from Saline Lake, PAD 30 and PAD 31 revealed a predominance of petrogenic hydrocarbons in these lakes. In contrast, we recorded minimal petrogenic hydrocarbons in the reference lakes outside the surface minable area of the AOSR and PAD (Mariana Lake and BM11), though we noted slight increases in petrogenic contributions to modern (2010-2016) sediments. We show how a combined analysis of PACs and petroleum biomarkers in sediments is useful to quantify petrogenic contributions to lakes with added confidence and highlight the potential for petroleum biomarkers in lake sediment cores as a novel and effective method to track petroleum hydrocarbons in lake sediment. (C) 2020 Published by Elsevier Ltd.
机译:在Athabasca油砂区域(AOSR)和Alberta(加拿大)的和平 - Athabasca Delta(Pad)地区,将多环芳烃(PACS)和石油生物标志物(STERAN,HOPANE和TERPANES)在ATHABASCA油砂区域(AOSR)和Alberta(加拿大)的和平 - Athabasca delta(Pad)地区进行了分析确定石油碳氢化合物是否随时间变化的贡献。垫中的两个泛洪叶湖(垫30,垫31)记录了烷基化PACs的增加,并且在类似于1980年后增加了岩石化(石油衍生的)烃,与沉积物有机碳含量的下降和散装沉降率的升高相一致,可能是由于Athabasca河流增加了。自20世纪80年代以来,上游油和精采的大扩展油型挖掘,升级和精炼也可能导致观察到的转变为更加纤维素的碳氢化合物到沉积物。自20世纪70年代 - 1980年代以来,在AOSR(盐湖)内分析的洪水湖泊中烷基化的PAC助焊剂在AOSR(盐湖)内分析,沉积物有机碳含量急剧上升和纤维原碳氢化合物的贡献增加。这些变化鉴定了随着Athabasca河洪水的增加,番石皮河洪水的供应增加,并且可能暗示来自油脂活性的纤维素烃的空中贡献。 PACS和石油生物标志物(Stetanes,Hopanes和Terpanes)在盐水湖,垫30和垫31中的沉积物核心,揭示了这些湖泊中的纤维素烃的优势。相比之下,我们在AOSR和垫的表面可偏离面积外的参考湖泊(Mariana Lake和BM11)之外的参考湖泊中记录了最小的纤维素碳氢化合物,尽管我们对现代(2010 - 2016-2016)沉积物的近视贡献略微增加了。我们展示了PACS和石油生物标志物在沉积物中的综合分析是有助于量化培养的潜水工贡献,充分信心并突出湖泊沉积物芯中的石油生物标志物作为一种新颖的有效方法,可追踪湖泊泥瓦石油烃。 (c)2020由elestvier有限公司发布

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