岩石潮汐池:未来高二氧化碳条件下的碳酸盐化学、日变化和钙化生物

N. Dorey, S. Martin, L. Kwiatkowski
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摘要

了解沿海海洋变率并量化其在全球生物地球化学循环中的重要性,对我们预测未来变化的能力至关重要。在浅海水域,生物活性对水化学的贡献可能在局部较高,并负责季节和日变化。这些变化还没有得到很好的理解:它们经常被低估,而且普遍缺乏观测,这意味着它们很少被纳入IPCC使用的那种全球预测模型。& # 160;在本报告中,我们将介绍在布列塔尼(法国)潮汐岩池中自然碳酸盐化学日变化的结果。我们选择潮汐岩石池作为“迷你海岸”的代表:模拟极端变化的海岸环境的现实小生态环境。这些系统的优点是包含一系列钙化生物的封闭系统,如珊瑚壳藻和非壳藻,它们影响碳酸盐化学并受其影响。利用碱度异常法计算了池塘群落的钙化程度,并估算了群落的光合/呼吸作用。我们还比较了夜间溶解和白天钙化。最后,我们通过添加CO2模拟未来酸化变化来控制潮池的化学变化,并探讨海水酸化对潮池群落钙化的影响。
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Rocky tidal pools: carbonate chemistry, diurnal variability and calcifying organisms in future high-CO2 conditions

Understanding the coastal ocean variability and quantifying its significance in the global biogeochemical cycles is crucial to our ability to project future changes. In the shallow coastal waters, the contribution of the biological activity to water chemistry can be high locally, and responsible for seasonal and diurnal variations. These variations are not yet well-understood: they are often under-estimated and the general lack of observations means that they are seldom integrated into global predictive models such as those used by the IPCC.
    In this presentation, we will present results on the natural carbonate chemistry diurnal variability in tidal rock pools in Brittany (France), during emersion times. We chose tidal rock pools as to represent "mini-coastal seas": realistic small mesocosms that simulate coastal environments with extreme variability. These have the advantage to be closed systems containing a range of calcifying organisms such as coralline encrusting and non-encrusting algae, that influence and are influenced by the carbonate chemistry. We calculated calcification of the pools community by using the alkalinity anomaly method and estimated the community photosynthesis/respiration. We also compared night-time dissolution and day-time calcification. Finally, we manipulated the pools chemistry at emersion by adding CO2 to mimick future acidification changes, and explored the impact of seawater acidification on the calcification of the tidal pools' communities.

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