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A significant net sink for CO2 in Tokyo Bay

机译:东京湾的大量二氧化碳净汇

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摘要

Most estuaries and inland waters are significant source for atmospheric CO2 because of input of terrestrial inorganic carbon and mineralization of terrestrially supplied organic carbon. In contrast to most coastal waters, some estuaries with small freshwater discharge are weak source or sometimes sink for CO2. Extensive surveys of pCO2 in Tokyo Bay showed that the overall bay acts as a strong net sink for atmospheric CO2. Although small area was a consistent source for CO2, active photosynthesis driven by nutrient loading from the land overwhelmed the CO2 budget in the bay. Here we show a comprehensive scheme with a border where air-sea CO2 flux was ±0 between nearshore waters emitting CO2 and offshore waters absorbing CO2. The border in Tokyo Bay was extremely shifted toward the land-side. The shift is characteristic of highly urbanized coastal waters with an extensive sewage treatment system in the catchment area. Because highly urbanized coastal areas worldwide are expected to quadruple by 2050, coastal waters such as Tokyo Bay are expected to increase as well. Through extrapolation of Tokyo Bay data, CO2 emission from global estuaries would be expected to decrease roughly from the current 0.074 PgC year−1 to 0.014 PgC year−1 in 2050.
机译:由于陆上无机碳的输入和陆上供应的有机碳的矿化作用,大多数河口和内陆水域是大气中二氧化碳的重要来源。与大多数沿海水域相比,一些淡水排放量较小的河口是二氧化碳的弱源,有时甚至下沉。东京湾对pCO2的广泛调查表明,整个海湾是大气CO2的强大净汇。尽管小面积地区是二氧化碳的稳定来源,但由于土地养分负载而导致的主动光合作用压倒了海湾的二氧化碳预算。在这里,我们展示了一个有边界的综合方案,其中近海排放CO2的海水与吸收CO2的近海水之间的海气CO2通量为±0。东京湾的边界极度向陆地一侧转移。这种转变是高度城市化的沿海水域的特征,在集水区设有广泛的污水处理系统。由于全球高度城市化的沿海地区预计到2050年将翻两番,因此东京湾等沿海水域也将增加。通过东京湾数据的推算,预计到2050年,全球河口的二氧化碳排放量将从目前的0.074 PgC年 -1 大致减少到0.014 PgC年 -1

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