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Global Model for Depth-Dependent Carbonyl Photochemical Production Rates in Seawater

机译:海水中深度依赖羰基光化学生产率的全球模型

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A photochemical model was used to quantify the global contribution of carbonyl photoproduction in the photodegradation of marine dissolved organic carbon (DOC). As model input, wavelength- and temperature-dependent apparent quantum yields (AQYs) for the photochemical production of carbonyl compounds were determined in seawater collected from the Northwest Atlantic Ocean. These AQY data and published AQY data from the North Pacific were used with remotely sensed seawater optical properties and solar irradiance data in a global model to calculate depth-resolved, mixed-layer photochemical fluxes of acetaldehyde and glyoxal in seawater. Based on this model, the annual global surface mixed-layer photochemical production is 89.7 +/- 36 Tg year(-1) for acetaldehyde and 20.0 +/- 8.0 Tg year(-1) for glyoxal. This work significantly improves our understanding of the impact of photochemistry on the cycling of DOC in the surface oceans. Low-molecular-weight carbonyl compounds represent the second largest carbon flux among all known carbon products that are produced during the photolysis of DOC. The annual photoproduction of carbonyl-compound carbon is similar to 110 +/- 23 Tg C year(-1), comprising approximately 9.6% of the total carbon and 22% of the biologically labile carbon that are produced globally from the photolysis of marine DOC.
机译:光化学模型用于量化羰基光生产在海洋溶解有机碳(DOC)的光降解中的全局贡献。作为模型输入,在从西北大西洋收集的海水中测定了用于光化学生产的波长和温度依赖性表观量子产率(AQYS)。这些AQY数据和来自北太太平洋的AQY数据与全球模型中的远程感测的海水光学性质和太阳辐照度数据一起使用,以计算海水中乙醛和乙二醛的深度分辨,混合层光化学通量。基于该模型,年全球表面混合层光化学产量为乙醛的89.7 +/- 36 TG(-1),乙醛20.0 +/- 8.0 TG(-1)。这项工作显着提高了我们对光化学对地表海洋循环的影响的理解。低分子重量羰基化合物代表所有已知的碳产物中的第二大碳通量,该碳产物在医生的光解期间产生。羰基化合物碳的年度光洗脱类似于110 +/- 23 Tg C的(-1),其中总碳的约9.6%和22%的生物稳定碳从海洋文档的光解产生的全球产生。

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