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Variable ageing and storage of dissolved organic components in the open ocean

机译:在远洋中可变的老化和溶解有机成分的存储

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Seawater dissolved organic matter (DOM) is the largest reservoir of exchangeable organic carbon in the ocean, comparable in quantity to atmospheric carbon dioxide(1,2). The composition, turnover times and fate of all but a few planktonic constituents of this material are, however, largely unknown(3,4). Models of ocean carbon cycling are thus limited by the need for information on temporal scales of carbon storage in DOM subcomponents, produced via the 'biological pump', relative to their recycling by bacteria(3,4). Here we show that carbohydrate- and protein-like substances in the open Atlantic and Pacific oceans, though often significantly aged, comprise younger fractions of the DOM, whereas dissolved lipophilic material exhibits up to similar to90 per cent fossil character. In contrast to the millennial mean ages of DOM observed throughout the water column, weighted mean turnover times of DOM in the surface ocean are only decadal in magnitude. An observed size-age continuum further demonstrates that small dissolved molecules are the most highly aged forms of organic matter, cycling much more slowly than larger, younger dissolved and particulate precursors, and directly links oceanic organic matter age and size with reactivity(3,5).
机译:海水溶解的有机物(DOM)是海洋中最大的可交换有机碳库,其数量可与大气中的二氧化碳相媲美(1,2)。但是,该材料的组成,周转时间和除少数浮游性成分外的所有命运都是未知的(3,4)。因此,海洋碳循环模型受到关于通过“生物泵”产生的DOM子成分中碳存储的时间尺度信息(相对于其被细菌回收)的需求的限制(3,4)。在这里,我们显示出,在大西洋和太平洋的大洋中,类似碳水化合物和蛋白质的物质虽然经常显着衰老,却占DOM的年轻部分,而溶解的亲脂物质的化石特性高达90%。与在整个水柱中观测到的DOM的千禧年平均年龄形成对照,在海洋表层海洋中DOM的加权平均周转时间在数量级上仅为十年。观察到的大小-年龄连续体进一步表明,小分子溶解是有机物老化程度最高的形式,其循环比更大,更年轻的溶解和颗粒状前体慢得多,并将海洋有机物的年龄和大小与反应性直接联系起来(3,5 )。

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