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Shallow gas off the Rhone prodelta, Gulf of Lions

机译:狮子湾罗纳河谷三角洲附近的浅层气体

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摘要

Sediment cores acquired in 2004 off the Rhone prodelta show consistent anomalous methane concentrations of up to 87,440 ppm. Methane compositional and isotopic data support a biogenic origin, although there are a few sites that show strongly depleted delta(13)C values (-53%o PDB) suggesting a mixed source for the gas (biogenic and thermogenic). Anomalous methane concentrations (samples with more than 90 ppm) are discussed and integrated with organic carbon data, sedimentary rates and ADCP profiles. Highest gas concentrations were found directly off the river mouth (20-40 m water depth) and where the IFREMER models point to the thickest accumulation (> 2 m) in response to the Rhone flood event. In areas unaffected by the high flux of organic matter and rapid/thick flood deposition, or in between flood events, the conditions for methanogenesis and gas accumulation have not been met; in these areas, the physical and biological reworking of the surficial sediment may effectively oxidize and mineralize organic matter and limit bacterial methanogenesis in the sub-surface. We propose that in the Rhone prodelta flood deposits deliver significant amounts of terrigenous organic matter that can be rapidly buried, effectively removing this organic matter from aerobic oxidation and biological uptake and leading to the potential for methanogenesis with burial
机译:2004年从罗纳河谷(Rhone prodelta)附近获得的沉积岩心显示出一致的异常甲烷浓度,高达87,440 ppm。甲烷的组成和同位素数据支持生物成因,尽管有一些站点显示δ(13)C值严重耗尽(PDB为-53%),表明气体的混合来源(生物成因和热成因)。讨论了甲烷的异常浓度(样品含量超过90 ppm),并将其与有机碳数据,沉积速率和ADCP曲线结合在一起。直接在河口附近发现最高的气体浓度(水深20-40 m),并且在响应罗纳河洪水事件时,IFREMER模型指向最厚的储集层(> 2 m)。在不受高有机物流量和快速/浓密的洪水沉积影响的地区,或在洪水事件之间,没有满足甲烷生成和气体聚集的条件;在这些地区,表层沉积物的物理和生物再加工可能有效地氧化和矿化有机物,并限制了地下细菌的甲烷生成。我们建议在罗纳河三角洲的洪水沉积物中提供大量可快速掩埋的陆源有机质,从而有效地从需氧氧化和生物吸收中去除该有机质,并通过埋藏产生甲烷化作用

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