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An Unaccounted Fraction of Marine Biogenic CaCO3 Particles

机译:海洋中生物碳酸钙粒子的分数下落不明

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摘要

Biogenic production and sedimentation of calcium carbonate in the ocean, referred to as the carbonate pump, has profound implications for the ocean carbon cycle, and relate both to global climate, ocean acidification and the geological past. In marine pelagic environments coccolithophores, foraminifera and pteropods have been considered the main calcifying organisms. Here, we document the presence of an abundant, previously unaccounted fraction of marine calcium carbonate particles in seawater, presumably formed by bacteria or in relation to extracellular polymeric substances. The particles occur in a variety of different morphologies, in a size range from <1 to >100 µm, and in a typical concentration of 104–105 particles L−1 (size range counted 1–100 µm). Quantitative estimates of annual averages suggests that the pure calcium particles we counted in the 1–100 µm size range account for 2–4 times more CaCO3 than the dominating coccolithophoride Emiliania huxleyi and for 21% of the total concentration of particulate calcium. Due to their high density, we hypothesize that the particles sediment rapidly, and therefore contribute significantly to the export of carbon and alkalinity from surface waters. The biological and environmental factors affecting the formation of these particles and possible impact of this process on global atmospheric CO2 remains to be investigated.
机译:海洋中碳酸钙的生物生产和沉积(称为碳酸盐泵)对海洋碳循环具有深远的影响,并且与全球气候,海洋酸化和地质历史有关。在海洋中上层环境中,球藻,有孔虫和翼足类被认为是主要的钙化生物。在这里,我们记录了海水中大量碳酸钙的存在,以前无法解释,这大概是由细菌形成的,或者与细胞外聚合物有关。颗粒以各种不同的形态出现,尺寸范围从<1到> 100 µm,典型浓度为10 4 –10 5 L < sup> -1 (尺寸范围为1–100 µm)。对年平均水平的定量估计表明,我们在1–100 µm尺寸范围内计算出的纯钙颗粒比主要的球墨石化ide草(Emiliania huxleyi)所占的CaCO3含量高2-4倍,占颗粒钙总浓度的21%。由于它们的高密度,我们假设颗粒会快速沉降,因此对地表水的碳和碱度输出做出了重要贡献。影响这些颗粒形成的生物学和环境因素以及该过程对全球大气CO2的可能影响尚待研究。

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