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Methane dynamics in the Weddell Sea determined via stable isotope ratios and CFC-11

机译:通过稳定同位素比和CFC-11确定了韦德尔海的甲烷动力学

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The physical, chemical/biological processes that control the methane dynamics in the Weddell Sea are revealed by the distributions of methane (CH_4), its stable carbon isotope ratio, δ~(13)C-CH_4, and the conservative transient tracer, chlorofluorocarbon-11 (CFC-11, CCl3F). In general, a nearly linear correlation between CH_4 and CFC-11 concentrations was observed. Air-sea exchange is the major source of methane to this region, and the distribution of methane is controlled mainly by mixing between surface water and methane-poor Warm Deep Water. A significant influence of methane oxidation over the predominant two end-member mixing was only found in the Weddell Sea Bottom Water (WSBW) of the deep central Weddell Basin, where the turnover time of methane appears to be about 20 years. Mixing also controls most of the δ~(13)C-CH_4 distribution, but lighter than expected carbon isotopic ratios occur in the deep WSBW of the basin. From box model simulations, it appears that this “anomaly” is due to methane oxidation with a low kinetic isotope fractionation of about 1.004. The surface waters in the Weddell Sea and the Antarctic Circumpolar Current showed a general methane undersaturation of 6 to 25% with respect to the atmospheric mixing ratio. From this undersaturation and model-derived air-sea exchange rates, we estimate a net uptake of CH4 of roughly -0.5 μmol m~(-2) d~(-1) during austral autumn.
机译:甲烷(CH_4)的分布,稳定的碳同位素比δ〜(13)C-CH_4以及保守的瞬态示踪剂氯氟烃-揭示了控制韦德海甲烷动态的物理,化学/生物过程。 11(CFC-11,CCl3F)。通常,观察到CH_4与CFC-11浓度之间几乎呈线性关系。海-气交换是该地区甲烷的主要来源,甲烷的分布主要通过地表水和贫甲烷的暖深水之间的混合来控制。甲烷氧化对主要的两个末端成员混合的重大影响仅在韦德中部盆地中部深处的韦德尔海底水(WSBW)中发现,甲烷的转换时间似乎约为20年。混合也控制了大部分的δ〜(13)C-CH_4分布,但是在盆地深处的WSBW中出现了比预期低的碳同位素比。从盒模型模拟看来,这种“异常”是由于甲烷氧化所致,其动力学同位素分馏率较低,约为1.004。相对于大气混合比,韦德尔海和南极极地洋流中的地表水普遍显示甲烷欠饱和度为6%至25%。根据这种不饱和度和模型推导的海气交换速率,我们估计在秋季期间,CH4的净吸收量约为-0.5μmolm〜(-2)d〜(-1)。

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