透光带
中层带
溶解有机碳
环境科学
生物地球化学循环
总有机碳
有机质
水柱
海洋学
固碳
碳纤维
生物泵
水文学
碳循环
再矿化
二氧化碳
远洋带
大气科学
环境化学
化学
浮游植物
地质学
生态学
生态系统
材料科学
营养物
生物
复合材料
有机化学
无机化学
复合数
氟化物
作者
Wei‐Lei Wang,Weiwei Fu,Frédéric A.C. Le Moigne,Robert T. Letscher,Yi Liu,Jin‐Ming Tang,François Primeau
出处
期刊:Nature
[Nature Portfolio]
日期:2023-12-06
卷期号:624 (7992): 579-585
被引量:59
标识
DOI:10.1038/s41586-023-06772-4
摘要
Abstract The transfer of photosynthetically produced organic carbon from surface to mesopelagic waters draws carbon dioxide from the atmosphere 1 . However, current observation-based estimates disagree on the strength of this biological carbon pump (BCP) 2 . Earth system models (ESMs) also exhibit a large spread of BCP estimates, indicating limited representations of the known carbon export pathways 3 . Here we use several decades of hydrographic observations to produce a top-down estimate of the strength of the BCP with an inverse biogeochemical model that implicitly accounts for all known export pathways. Our estimate of total organic carbon (TOC) export at 73.4 m (model euphotic zone depth) is 15.00 ± 1.12 Pg C year −1 , with only two-thirds reaching 100 m depth owing to rapid remineralization of organic matter in the upper water column. Partitioned by sequestration time below the euphotic zone, τ , the globally integrated organic carbon production rate with τ > 3 months is 11.09 ± 1.02 Pg C year −1 , dropping to 8.25 ± 0.30 Pg C year −1 for τ > 1 year, with 81% contributed by the non-advective-diffusive vertical flux owing to sinking particles and vertically migrating zooplankton. Nevertheless, export of organic carbon by mixing and other fluid transport of dissolved matter and suspended particles remains regionally important for meeting the respiratory carbon demand. Furthermore, the temperature dependence of the sequestration efficiency inferred from our inversion suggests that future global warming may intensify the recycling of organic matter in the upper ocean, potentially weakening the BCP.
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