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Detecting anthropogenic carbon dioxide uptake and ocean acidification in the North Atlantic Ocean

机译:检测北大西洋人为二氧化碳的吸收和海洋酸化

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Fossil fuel use, cement manufacture and land-use changes are the primary sources of anthropogenic carbon dioxide (CO2) to the atmosphere, with the ocean absorbing approximately 30% (Sabine et al., 2004). Ocean uptake and chemical equilibration of anthropogenic CO2 with seawater results in a gradual reduction in seawater pH and saturation states (Ω) for calcium carbonate (CaCO3) minerals in a process termed ocean acidification. Assessing the present and future impact of ocean acidification on marine ecosystems requires detection of the multi-decadal rate of change across ocean basins and at ocean time-series sites. Here, we show the longest continuous record of ocean CO2 changes and ocean acidification in the North Atlantic subtropical gyre near Bermuda from 1983-2011. Dissolved inorganic carbon (DIC) and partial pressure of CO2 (pCO2) increased in surface seawater by ~40 I1/4mol kg??'1 and ~50 I1/4atm (~20%), respectively. Increasing Revelle factor (I2) values imply that the capacity of North Atlantic surface waters to absorb CO2 has also diminished. As indicators of ocean acidification, seawater pH decreased by ~0.05 (0.0017 yr−1) and ω values by ~7-8%. Such data provide critically needed multi-decadal information for assessing the North Atlantic Ocean CO2 sink and the pH changes that determine marine ecosystem responses to ocean acidification.
机译:化石燃料的使用,水泥生产和土地用途的变化是人为大气中二氧化碳的主要来源,海洋吸收的二氧化碳约占30%(Sabine等,2004)。海洋吸收和人为二氧化碳与海水的化学平衡导致在称为海洋酸化的过程中,碳酸钙(CaCO3)矿物的海水pH值和饱和状态(Ω)逐渐降低。要评估海洋酸化对海洋生态系统的当前和未来影响,就需要检测整个海洋盆地和海洋时间序列地点的十年变化率。在这里,我们显示了1983-2011年百慕大附近的北大西洋亚热带回旋区中海洋CO2变化和海洋酸化的最长连续记录。地表海水中的溶解性无机碳(DIC)和CO2分压(pCO2)分别增加了约40 I1 / 4mol kg ??'1和约50 I1 / 4atm(〜20%)。 Revelle因子(I2)值的增加表示北大西洋地表水吸收CO2的能力也降低了。作为海洋酸化的指标,海水的pH值下降了约0.05(0.0017 yr-1),ω值下降了约7-8%。此类数据为评估北大西洋CO2汇和确定海洋生态系统对海洋酸化反应的pH值变化提供了急需的数十年信息。

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