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Corals concentrate dissolved inorganic carbon to facilitate calcification

机译:珊瑚浓缩溶解的无机碳以促进钙化

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The sources of dissolved inorganic carbon (DIC) used to produce scleractinian coral skeletons are not understood. Yet this knowledge is essential for understanding coral biomineralization and assessing the potential impacts of ocean acidification on coral reefs. Here we use skeletal boron geochemistry to reconstruct the DIC chemistry of the fluid used for coral calcification. We show that corals concentrate DIC at the calcification site substantially above seawater values and that bicarbonate contributes a significant amount of the DIC pool used to build the skeleton. Corals actively increase the pH of the calcification fluid, decreasing the proportion of DIC present as CO2 and creating a diffusion gradient favouring the transport of molecular CO2 from the overlying coral tissue into the calcification site. Coupling the increases in calcification fluid pH and [DIC] yields high calcification fluid [CO32-] and induces high aragonite saturation states, favourable to the precipitation of the skeleton.
机译:用于产生巩膜珊瑚骨骼的溶解性无机碳(DIC)的来源尚不清楚。然而,这些知识对于理解珊瑚的生物矿化和评估海洋酸化对珊瑚礁的潜在影响至关重要。在这里,我们使用骨骼硼地球化学来重建用于珊瑚钙化的流体的DIC化学。我们表明,珊瑚将DIC集中在钙化位点上,大大高于海水值,而碳酸氢盐对用于建造骨骼的DIC池的贡献很大。珊瑚积极地增加钙化液的pH,降低DIC作为CO2的比例,并产生扩散梯度,有利于分子CO2从上覆的珊瑚组织向钙化部位的运输。钙化液pH和[DIC]的增加结合产生高钙化液[CO32-],并诱导高文石饱和状态,有利于骨架的沉淀。

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