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Diurnal changes in seawater carbonate chemistry speciation at increasing atmospheric carbon dioxide

机译:大气二氧化碳增加海水碳酸盐化学形态的日变化

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摘要

Natural variability in seawater pH and associated carbonate chemistry parameters is in part driven by biological activities such as photosynthesis and respiration. The amplitude of these variations is expected to increase with increasing seawater carbon dioxide (CO2) concentrations in the future, because of simultaneously decreasing buffer capacity. Here, we address this experimentally during a diurnal cycle in a mesocosm CO2 perturbation study. We show that for about the same amount of dissolved inorganic carbon (DIC) utilized in net community production diel variability in proton (H+) and CO2 concentrations was almost three times higher at CO2 levels of about 675 ± 65 in comparison with levels of 310 ± 30 μatm. With a simple model, adequately simulating our measurements, we visualize carbonate chemistry variability expected for different oceanic regions with relatively low or high net community production. Since enhanced diurnal variability in CO2 and proton concentration may require stronger cellular regulation in phytoplankton to maintain respective gradients, the ability to adjust may differ between communities adapted to low in comparison with high natural variability.
机译:海水pH值和相关碳酸盐化学参数的自然变化部分受到诸如光合作用和呼吸作用等生物活动的驱动。由于同时减少缓冲能力,预计将来这些变化的幅度会随着海水中二氧化碳(CO2)浓度的增加而增加。在这里,我们在中层CO2摄动研究的昼夜周期中通过实验解决了这一问题。我们表明,在净社区生产中,使用相同量的溶解无机碳(DIC)时,质子的Diel变异性(H + )和CO2浓度几乎是675±的CO2水平的三倍65相比于310±30μatm的水平。通过一个简单的模型,可以充分模拟我们的测量结果,我们可以看到净群落生产量相对较低或较高的不同海洋地区的碳酸盐化学变化趋势。由于CO2和质子浓度的昼夜变化性可能需要增强浮游植物的细胞调节以维持各自的梯度,因此适应能力较弱的群落与高自然变异性之间的适应能力可能会有所不同。

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