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New insights into the transport processes controlling the sulfate-methane-transition-zone near methane vents

机译:对控制甲烷排放口附近的硫酸盐-甲烷过渡带的运输过程的新见解

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摘要

Over the past years, several studies have raised concerns about the possible interactions between methane hydrate decomposition and external change. To carry out such an investigation, it is essential to characterize the baseline dynamics of gas hydrate systems related to natural geological and sedimentary processes. This is usually treated through the analysis of sulfate-reduction coupled to anaerobic oxidation of methane (AOM). Here, we model sulfate reduction coupled with AOM as a two-dimensional (2D) problem including, advective and diffusive transport. This is applied to a case study from a deep-water site off Nigeria’s coast where lateral methane advection through turbidite layers was suspected. We show by analyzing the acquired data in combination with computational modeling that a two-dimensional approach is able to accurately describe the recent past dynamics of such a complex natural system. Our results show that the sulfate-methane-transition-zone (SMTZ) is not a vertical barrier for dissolved sulfate and methane. We also show that such a modeling is able to assess short timescale variations in the order of decades to centuries.
机译:在过去的几年中,几项研究引起了人们对甲烷水合物分解与外部变化之间可能相互作用的关注。要进行这样的调查,必须表征与自然地质和沉积过程有关的天然气水合物系统的基线动态。通常通过分析硫酸盐还原与甲烷厌氧氧化(AOM)进行处理。在这里,我们将硫酸盐还原与AOM耦合为二维(2D)问题,包括对流和扩散传输。这项研究用于尼日利亚沿海外一个深水站点的案例研究,该站点怀疑甲烷通过浊积层横向平流。通过结合计算模型分析获得的数据,我们表明二维方法能够准确地描述这种复杂自然系统的近期动态。我们的结果表明,硫酸盐-甲烷过渡区(SMTZ)并不是溶解硫酸盐和甲烷的垂直屏障。我们还表明,这种建模方法能够评估几十至几百个数量级的短时标变化。

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