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Natural in situ relationships suggest coral reef calcium carbonate production will decline with ocean acidification

机译:自然的原位关系表明,随着海洋酸化,珊瑚礁碳酸钙的产量将下降

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摘要

There are few in situ studies showing how net community calcification (G) of coral reefs is related to carbonate chemistry, and the studies to date have demonstrated different predicted rates of change. In this study, we measured net community production (P), G, and carbonate chemistry of a reef flat at One Tree Island, Great Barrier Reef. Diurnal pCO variability of 289-724 μatm was driven primarily by photosynthesis and respiration. The reef flat was found to be net autotrophic, with daily production of ~ 35 mmol C m d and net calcification of ~ 33 mmol C m d. G was strongly related to P, which drove a hysteresis pattern in the relationship between G and aragonite saturation state (Ω). Although P was the main driver of G, Ω was still an important factor, where 95% of the variance in G could be described by P and Ω. Based on the observed in situ relationship, G would be expected to reach zero when Ω is ~ 2.5. It is unknown what proportion of a decline in G would be through reduced calcification and what would occur through increased dissolution, but the results here support predictions that overall calcium carbonate production will decline in coral reefs as a result of ocean acidification.
机译:很少有原位研究显示珊瑚礁的净群落钙化(G)与碳酸盐化学有何关系,迄今为止的研究表明了不同的预测变化率。在这项研究中,我们测量了大堡礁One Tree Island上一个礁滩的净社区生产(P),G和碳酸盐化学。 289-724μatm的昼夜pCO变异主要由光合作用和呼吸作用驱动。该礁滩被发现是净自养的,日产量约为35 mmol C m d,净钙化约为33 mmol C m d。 G与P密切相关,在P与文石饱和状态(Ω)之间的关系中产生了磁滞模式。尽管P是G的主要驱动因素,但Ω仍然是一个重要因素,其中G的95%的变化可以用P和Ω来描述。根据观察到的原位关系,当Ω约为2.5时,预计G将达到零。尚不清楚钙减少的比例中钙减少的比例是多少,而溶解度的增加则是什么比例的降低,但是这里的结果支持了以下预测:由于海洋酸化,珊瑚礁中碳酸钙的总产量将下降。

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