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Acceleration of modern acidification in the South China Sea driven by anthropogenic CO2

机译:人为二氧化碳驱动的南中国海现代酸化加速

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摘要

Modern acidification by the uptake of anthropogenic CO2 can profoundly affect the physiology of marine organisms and the structure of ocean ecosystems. Centennial-scale global and regional influences of anthropogenic CO2 remain largely unknown due to limited instrumental pH records. Here we present coral boron isotope-inferred pH records for two periods from the South China Sea: AD 1048–1079 and AD 1838–2001. There are no significant pH differences between the first period at the Medieval Warm Period and AD 1830–1870. However, we find anomalous and unprecedented acidification during the 20th century, pacing the observed increase in atmospheric CO2. Moreover, pH value also varies in phase with inter-decadal changes in Asian Winter Monsoon intensity. As the level of atmospheric CO2 keeps rising, the coupling global warming via weakening the winter monsoon intensity could exacerbate acidification of the South China Sea and threaten this expansive shallow water marine ecosystem.
机译:吸收人为二氧化碳导致的现代酸化会深刻影响海洋生物的生理和海洋生态系统的结构。由于有限的仪器pH记录,人为产生的CO2的百年尺度全球和区域影响仍然未知。在这里,我们介绍了南海两个时期珊瑚硼同位素推断的pH记录:公元1048-1079和公元1838-2001。在中世纪温暖期的第一个时期和公元1830年至1870年之间,pH值没有显着差异。但是,我们发现20世纪出现了异常且前所未有的酸化现象,这与观察到的大气CO2的增加步伐一致。此外,pH值也随着亚洲冬季风强度的年代际变化而相位变化。随着大气中CO2含量的不断上升,通过减弱冬季季风强度引起的全球变暖耦合现象可能会加剧南中国海的酸化,并威胁到这个广阔的浅水海洋生态系统。

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