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Net uptake of atmospheric CO2 by coastal submerged aquatic vegetation

机译:沿海淹没水生植被对大气CO2的净吸收

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摘要

‘Blue Carbon’, which is carbon captured by marine living organisms, has recently been highlighted as a new option for climate change mitigation initiatives. In particular, coastal ecosystems have been recognized as significant carbon stocks because of their high burial rates and long-term sequestration of carbon. However, the direct contribution of Blue Carbon to the uptake of atmospheric CO2 through air-sea gas exchange remains unclear. We performed in situ measurements of carbon flows, including air-sea CO2 fluxes, dissolved inorganic carbon changes, net ecosystem production, and carbon burial rates in the boreal (Furen), temperate (Kurihama), and subtropical (Fukido) seagrass meadows of Japan from 2010 to 2013. In particular, the air-sea CO2 flux was measured using three methods: the bulk formula method, the floating chamber method, and the eddy covariance method. Our empirical results show that submerged autotrophic vegetation in shallow coastal waters can be functionally a sink for atmospheric CO2. This finding is contrary to the conventional perception that most near-shore ecosystems are sources of atmospheric CO2. The key factor determining whether or not coastal ecosystems directly decrease the concentration of atmospheric CO2 may be net ecosystem production. This study thus identifies a new ecosystem function of coastal vegetated systems; they are direct sinks of atmospheric CO2.
机译:海洋生物捕获的碳“蓝色碳”最近被强调为缓解气候变化倡议的新选择。特别是,沿海地区的生态系统因其高埋藏率和长期固存碳而被认为是重要的碳储量。然而,尚不清楚通过空气-海气交换,蓝碳对大气中二氧化碳吸收的直接贡献。我们进行了碳流量的原位测量,包括日本的北海(Furen),温带(Kurihama)和亚热带(Fukido)海​​草草甸的海气CO2通量,溶解的无机碳变化,净生态系统产量和碳掩埋率。从2010年到2013年。特别是使用三种方法测量了海-海CO2通量:体积公式法,浮室法和涡动协方差法。我们的经验结果表明,浅水沿海水域的淹没自养植被可以在功能上成为大气CO2的汇。这一发现与大多数近岸生态系统是大气CO2的来源的传统看法相反。决定沿海生态系统是否直接降低大气二氧化碳浓度的关键因素可能是生态系统净产量。因此,这项研究确定了沿海植被系统的新生态系统功能。它们是大气中二氧化碳的直接汇入点。

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