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What Pulsating H 2 Emissions Suggest about the H 2 Resource in the Sao Francisco Basin of Brazil

机译:什么脉动的H 2排放表明了巴西圣弗朗西斯科盆地的H 2资源

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摘要

Proterozoic sedimentary basins very often emit natural hydrogen gas that may be a valuable part of a non-carbon energy infrastructure. Vents in the Sao Francisco Basin in Brazil release hydrogen to the atmosphere mainly during the daylight half of the day. Daily temperature and the regular daily tidal atmospheric pressure variations have been suggested as possible causes of the pulsing of H 2 venting. Here, we analyze a ~550 m-diameter depression that is barren of vegetation and venting hydrogen mainly at its periphery. We show that daily temperature changes propagated only ~1/2 m into the subsurface and are thus too shallow to explain the H 2 variations measured at 1-m depth. Pressure changes could propagate deeply enough, and at the depth at which the cyclic variations are measured hydrogen concentration will have the observed phase relationship to atmospheric pressure changes provided: (1) the pressure wave is terminated by geologic barriers at about 25% of its full potential penetration distance, and (2) the volume of gas in the vents is very small compared to the volume of gas tapped by the venting. These constraints suggest that there is a shallow gas reservoir above the water table under the ~550 m-diameter barren-of-vegetation depression. The 1D-analytical and finite-element calculations presented in this paper help define the hydrogen system and suggest the further steps needed to characterize its volume, hydrogen flux and resource potential.
机译:平面沉积物盆地经常发出天然氢气,可能是非碳能量基础设施的有价值部分。在巴西的圣弗朗西斯科盆地的通风口主要在当天的一半之日航天释放氢气到大气中。每日温度和常规日常潮汐大气压变化已经提出了H 2通风脉冲的可能原因。在这里,我们分析了〜550米直径的抑郁症,这些抑郁症主要在其周边贫瘠。我们表明,日常温度变化仅传播到地下〜1/2米,因此太浅,无法解释在1米深度下测量的H 2变化。压力变化可以深入地传播,并且在测量氢气浓度的深度下,氢浓度将具有所观察到的相位关系与大气压变化提供:(1)压力波被几个完整的地质屏障终止于地质屏障电位穿透距离,(2)通风口中的气体体积非常小,与通过通气挖掘的气体体积相比非常小。这些约束表明,在水位上方有一个浅气体储层,在左右的左植被贫瘠的贫瘠抑制下。本文中提出的1D分析和有限元计算有助于定义氢系统,并表明表征其体积,氢气通量和资源潜力所需的进一步步骤。

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