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Biogeochemical Control of the Coupled CO2–O2 System of the Baltic Sea: A Review of the Results of Baltic-C

机译:波罗的海CO2–O2耦合系统的生物地球化学控制:Baltic-C结果的综述

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摘要

Past, present, and possible future changes in the Baltic Sea acid–base and oxygen balances were studied using different numerical experiments and a catchment–sea model system in several scenarios including business as usual, medium scenario, and the Baltic Sea Action Plan. New CO2 partial pressure data provided guidance for improving the marine biogeochemical model. Continuous CO2 and nutrient measurements with high temporal resolution helped disentangle the biogeochemical processes. These data and modeling indicate that traditional understandings of the nutrient availability–organic matter production relationship do not necessarily apply to the Baltic Sea. Modeling indicates that increased nutrient loads will not inhibit future Baltic Sea acidification; instead, increased mineralization and biological production will amplify the seasonal surface pH cycle. The direction and magnitude of future pH changes are mainly controlled by atmospheric CO2 concentration. Apart from decreasing pH, we project a decreasing calcium carbonate saturation state and increasing hypoxic area.
机译:在几种情况下,包括照常营业,中等情况和波罗的海行动计划,使用不同的数值实验和集水区-海域模型系统研究了波罗的海酸碱和氧气平衡的过去,现在和将来的变化。新的二氧化碳分压数据为改善海洋生物地球化学模型提供了指导。连续的二氧化碳和营养素测量具有较高的时间分辨率,有助于弄清生物地球化学过程。这些数据和模型表明,对养分有效性和有机物生产关系的传统理解不一定适用于波罗的海。模型表明,增加的营养负荷不会抑制未来的波罗的海酸化;取而代之的是,增加矿化和生物产量将扩大季节性地表pH周期。未来pH值变化的方向和幅度主要受大气中CO2浓度的控制。除了降低pH值外,我们还计划降低碳酸钙饱和状态并增加缺氧面积。

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