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Efficiency of carbon removal per added iron in ocean iron fertilization

机译:海洋铁肥中每添加铁去除碳的效率

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ABSTRACT: The major response to ocean iron fertilization is by large diatoms, which at Fe-replete ambient seawater show an optimum C:Fe elemental ratio of ~23000 and a higher ratio of ~160000 or more under Fe-limited conditions. The efficiency of CO2 drawdown during the several weeks of artificial fertilization experiments with concomitant observations is in the range of 100 (CO2:Fe) 1000 and is unknown in direction (positive or negative) and magnitude in the period after observations. The efficiency of biogenic carbon export into deeper water layers ranges from ~650 (C:Fe)export ~25000 for reported export depths in the 100 to 250 m range. Variations in ocean initial conditions and variable weather during an experiment cause this range of ~2 orders of magnitude. Approximately 75% of Fe added in fertilization experiments is lost very rapidly. Hence the above efficiencies can be multiplied 4-fold, to ~2600 (C:Fe)export ~100000, for the sake of comparison with natural fertilization with Fe-organic complexes, which stabilize Fe in solution. Quantification of the Fe source of natural fertilization is difficult, leading to an export efficiency in the ~2400 (C:Fe)export ~800000 range. Due to severe under-sampling, the existing datasets of artificial experiments and natural fertilizations may allow a wider range of alternative assessments than reported here.
机译:摘要:对铁肥的主要响应是大型硅藻,在富含铁的环境海水中,最佳的C:Fe元素比为〜23000,在有限的铁条件下具有更高的〜160000或更高的比例。在伴随观察的几周的人工受精实验中,CO 2 下降的效率在100 <(CO 2 :Fe)<1000的范围内,在观察后一段时间内的方向(正或负)和大小。对于据报道的100至250 m范围的出口深度,生物碳向深水层的出口效率在〜650 <(C:Fe) export <〜25000之间。在实验过程中,海洋初始条件的变化和天气的变化导致该范围约为2个数量级。施肥实验中添加的大约75%的铁非常迅速地流失。因此,上述效率可以乘以4倍,达到〜2600 <(C:Fe) export <〜100000,以便与铁-有机配合物的自然施肥进行比较,从而使铁稳定解。天然肥料中铁的来源很难量化,导致出口效率在〜2400 <(C:Fe) export <〜800000范围内。由于严重的欠采样,现有的人工实验和自然施肥数据集可能提供比此处报告的范围更广泛的替代评估。

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