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Century-scale trends and seasonality in pH and temperature for shallow zones of the Bering Sea

机译:白令海浅海地区pH和温度的世纪尺度趋势和季节性

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摘要

No records exist to evaluate long-term pH dynamics in high-latitude oceans, which have the greatest probability of rapid acidification from anthropogenic CO2 emissions. We reconstructed both seasonal variability and anthropogenic change in seawater pH and temperature by using laser ablation high-resolution 2D images of stable boron isotopes (δ11B) on a long-lived coralline alga that grew continuously through the 20th century. Analyses focused on four multiannual growth segments. We show a long-term decline of 0.08 ± 0.01 pH units between the end of the 19th and 20th century, which is consistent with atmospheric CO2 records. Additionally, a strong seasonal cycle (∼0.22 pH units) is observed and interpreted as episodic annual pH increases caused by the consumption of CO2 during strong algal (kelp) growth in spring and summer. The rate of acidification intensifies from –0.006 ± 0.007 pH units per decade (between 1920s and 1960s) to –0.019 ± 0.009 pH units per decade (between 1960s and 1990s), and the episodic pH increases show a continuous shift to earlier times of the year throughout the centennial record. This is indicative of ecosystem shifts in shallow water algal productivity in this high-latitude habitat resulting from warming and acidification.
机译:没有记录可评估高纬度海洋中的长期pH动力学,因为人为产生的CO2排放使酸快速酸化的可能性最大。我们使用激光消融高分辨率的二维硼图像来重建海水pH和温度的季节性变化和人为变化,这些二维图像是在长寿珊瑚藻类上稳定生长的硼同位素(δ 11 B)的过程,该藻类通过藻类不断生长。 20世纪。分析着重于四个年度增长部分。我们发现,在19世纪末至20世纪末,pH值长期下降了0.08±0.01,与大气中的二氧化碳记录一致。另外,观察到强烈的季节性周期(约0.22 pH单位),并解释为春季和夏季藻类(海藻)生长旺盛期间由于消耗CO2而导致的pH逐年增加。酸化速率从每十年的–0.006±0.007 pH单位(1920年代至1960年代)增至每十年的–0.019±0.009 pH单位(1960年代与1990年代之间),并且pH的升高表明持续向早期的pH转移。整个百年记录的一年。这表明在这种高纬度生境中,由于变暖和酸化,生态系统的浅水藻类生产力发生了变化。

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