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Changes in pH at the exterior surface of plankton with ocean acidification

机译:外表面的pH值变化的浮游生物与海洋酸化

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摘要

Anthropogenically released C02 is dissolving in the ocean, causing a decrease in bulk-seawater pH (ocean acidification). Projections indicate that the pH will drop 0.3 units from its present value by 2100 (ref. 1). However, it is unclear how the growth of plankton is likely to respond. Using simulations we demonstrate how pH and carbonate chemistry at the exterior surface of marine organisms deviates increasingly from those of the bulk sea water as organism metabolic activity and size increases. These deviations will increase in the future as the buffering capacity of sea water decreases with decreased pH and as metabolic activity increases with raised seawater temperatures. We show that many marine plankton will experience pH conditions completelyoutside their recent historical range. However, ocean acidification is likely to have differing impacts on plankton physiology as taxon-specific differences in organism size, metabolic activity and growth rates during blooms result in very different microenvironments around the organism. This is an important consideration for future studies in ocean acidification as the carbonate chemistry experienced by most planktonic organisms will probably be considerably different from that measured in bulk-seawater samples. An understanding of these deviations will assist interpretation of the impacts of ocean acidification on plankton of different size and metabolic activity.
机译:Anthropogenically释放二氧化碳溶解海洋,导致bulk-seawater pH值降低(海洋酸化)。pH值将从其现值下降0.3个单位然而,到2100年(ref。1)。目前尚不清楚如何浮游生物的增长可能会回应。模拟我们演示pH值和碳酸盐化学在海洋的外表面生物越来越偏离了这些的大部分生物体代谢活动和海水尺寸增加。未来海水的缓冲能力随pH值下降和代谢活动增加了海水温度。将经历completelyoutside pH值条件最近的历史范围。酸化可能会有不同的影响在浮游生物生理学taxon-specific生物差异大小,代谢活动和增长率在开花结果不同的生物体周围的微环境。这是一个重要的考虑未来研究海洋酸化碳酸盐化学大多数浮游生物可能会大大不同从那以bulk-seawater样本。理解这些偏差将协助对海洋的影响的理解酸化不同大小和浮游生物代谢活动。

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