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Ecosystem metabolism drives pH variability and modulates long-term ocean acidification in the Northeast Pacific coastal ocean

机译:生态系统的新陈代谢驱动pH值变化并调节东北太平洋沿岸海洋的长期海洋酸化

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摘要

Ocean acidification poses serious threats to coastal ecosystem services, yet few empirical studies have investigated how local ecological processes may modulate global changes of pH from rising atmospheric CO2. We quantified patterns of pH variability as a function of atmospheric CO2 and local physical and biological processes at 83 sites over 25 years in the Salish Sea and two NE Pacific estuaries. Mean seawater pH decreased significantly at −0.009 ± 0.0005 pH yr−1 (0.22 pH over 25 years), with spatially variable rates ranging up to 10 times greater than atmospheric CO2-driven ocean acidification. Dissolved oxygen saturation (%DO) decreased by −0.24 ± 0.036% yr−1, with site-specific trends similar to pH. Mean pH shifted from <7.6 in winter to >8.0 in summer concomitant to the seasonal shift from heterotrophy (%DO < 100) to autotrophy (%DO > 100) and dramatic shifts in aragonite saturation state critical to shell-forming organisms (probability of undersaturation was >80% in winter, but <20% in summer). %DO overwhelmed the influence of atmospheric CO2, temperature and salinity on pH across scales. Collectively, these observations provide evidence that local ecosystem processes modulate ocean acidification, and support the adoption of an ecosystem perspective to ocean acidification and multiple stressors in productive aquatic habitats.
机译:海洋酸化对沿海生态系统服务构成严重威胁,但很少有实证研究调查本地生态过程如何调节大气CO2升高引起的全球pH值变化。我们对25年来在Salish海和两个东北太平洋河口的83个站点的大气二氧化碳和局部物理与生物过程的函数进行了pH可变性的量化模式。平均海水pH值在-0.009±0.0005 pH yr −1 (25年中为0.22 pH)时显着下降,其空间变化率比大气CO2驱动的海洋酸化高10倍。溶解氧饱和度(%DO)降低-0.24±0.036%yr -1 ,且特定位置的趋势类似于pH。平均pH从冬季的<7.6转变为夏季的> 8.0,伴随着从异养(%DO <100)到自养(%DO> 100)的季节性变化以及文石饱和状态的剧烈变化,这对于壳形成生物至关重要(概率为冬天的饱和度> 80%,而夏天<20%)。 %DO压倒了整个规模的大气CO2,温度和盐度对pH的影响。总而言之,这些观察提供了证据,表明本地生态系统过程调节了海洋酸化,并支持将生态系统观点应用于海洋酸化和生产性水生生境中的多种压力源。

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