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Nighttime dissolution in a temperate coastal ocean ecosystem increases under acidification

机译:在酸化作用下温带沿海海洋生态系统的夜间溶解增加

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摘要

Anthropogenic emissions of carbon dioxide (CO2) are causing ocean acidification, lowering seawater aragonite (CaCO3) saturation state (Ωarag), with potentially substantial impacts on marine ecosystems over the 21st Century. Calcifying organisms have exhibited reduced calcification under lower saturation state conditions in aquaria. However, the in situ sensitivity of calcifying ecosystems to future ocean acidification remains unknown. Here we assess the community level sensitivity of calcification to local CO2-induced acidification caused by natural respiration in an unperturbed, biodiverse, temperate intertidal ecosystem. We find that on hourly timescales nighttime community calcification is strongly influenced by Ωarag, with greater net calcium carbonate dissolution under more acidic conditions. Daytime calcification however, is not detectably affected by Ωarag. If the short-term sensitivity of community calcification to Ωarag is representative of the long-term sensitivity to ocean acidification, nighttime dissolution in these intertidal ecosystems could more than double by 2050, with significant ecological and economic consequences.
机译:人为排放的二氧化碳(CO2)导致海洋酸化,降低了海水文石(CaCO3)的饱和状态(Ωarag),并可能在21世纪对海洋生态系统产生重大影响。钙化生物在水族箱中处于较低饱和状态下的钙化程度降低。但是,钙化生态系统对未来海洋酸化的原位敏感性仍然未知。在这里,我们评估了在不受干扰的,生物多样的,温带的潮间带生态系统中,钙化对自然呼吸引起的局部CO2诱导的酸化的社区敏感性。我们发现,在每小时的时标上,夜间社区的钙化受到Ωarag的强烈影响,在更酸性的条件下,碳酸钙的净净溶解度更高。然而,白天钙化不受Ωarag的影响。如果社区钙化对Ωarag的短期敏感性代表对海洋酸化的长期敏感性,那么到2050年,这些潮间带生态系统的夜间溶出量可能会增加一倍以上,从而对生态和经济产生重大影响。

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