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首页> 外文期刊>Geophysical Research Letters >Vulnerability of a semienclosed estuarine sea to ocean acidification in contrast with hypoxia
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Vulnerability of a semienclosed estuarine sea to ocean acidification in contrast with hypoxia

机译:与低氧相反,半封闭的河口海容易受到海洋酸化的影响

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摘要

The Strait of Georgia (SoG) is a large semienclosed estuary that spatially dominates the Salish Sea on the North American Pacific coast. The region is well populated, harbors significant aquaculture, and is vulnerable to climate change. We present the first inorganic carbon data collected in the SoG covering all seasons (2003 and 2010-2012) and put them into the context of local circulation and oxygen cycles. Results show that the SoG has a higher carbon content and lower pH than surrounding waters. Aragonite saturation horizons in the SoG do not become deeper than 20-30m and shoal to the surface for extended periods. Furthermore, incoming upwelled acidified water from the outer coast actually increases local pH. Finally, intense mixing in the physically restricted channels connecting the SoG to the outer coast allows significant oxygen uptake but minimal CO2 out gassing, protecting the SoG from hypoxia but not from ocean acidification.
机译:格鲁吉亚海峡(SoG)是一个大型半封闭河口,在空间上占主导地位的北美太平洋海岸的萨利什海。该地区人口稠密,拥有大量水产养殖,并且容易受到气候变化的影响。我们展示了SoG中收集的所有季节(2003年和2010-2012年)中的第一个无机碳数据,并将其用于局部循环和氧气循环的背景下。结果表明,SoG具有比周围水更高的碳含量和更低的pH值。 SoG中的文石饱和层深度不超过20-30m,并长时间潜入地面。此外,从外海岸流入的上升流的酸性水实际上会增加局部pH值。最后,在将SoG连接到外部海岸的受物理限制的通道中进行剧烈混合可以吸收大量的氧气,但放出的CO2最少,可以保护SoG免受缺氧影响,但不能免受海洋酸化。

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