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Mechanisms for a nutrient-conserving carbon pump in a seasonally stratified, temperate continental shelf sea

机译:季节性分层,温带大陆架海中养分碳泵的机理

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Continental shelf seas may have a significant role in oceanic uptake and storage of carbon dioxide (CO2) from the atmosphere through a 'continental shelf pump' mechanism. The northwest European continental shelf, in particular the Celtic Sea (50 degrees N 8 degrees W), was the target of extensive biogeochemical sampling from March 2014 to , September 2015 as part of the UK Shelf Sea Biogeochemistry research programme (UK-SSB). Here, we use the UK-SSB carbonate chemistry and macronutrient measurements to investigate the biogeochemical seasonality in this temperate, seasonally stratified system. Following the onset of stratification, near-surface biological primary production during spring and summer removed dissolved inorganic carbon and nutrients, and a fraction of the sinking particulate organic matter was subsequently remineralised beneath the thermocline. Water column inventories of these variables throughout 1.5 seasonal cycles, corrected for air-sea CO2 exchange and sedimentary denitrification and anammox, isolated the combined effect of net community production (NCP) and remineralisation on the inorganic macronutrient inventories. Overall inorganic inventory changes suggested that a significant fraction ( > 50%) of the annual NCP of around 3 mol-C m(-2) yr(-1) appeared to be stored within a long-lived organic matter (OM) pool with a lifetime of several months or more. Moreover, transfers into and out of this pool appeared not to be in steady state over the one full seasonal cycle sampled. Accumulation of such a long-lived and potentially C-rich OM pool is suggested to be at least partially responsible for the estimated net air-to-sea CO2 flux of similar to 1.3 mol-C m(-2)yr(-1) at our study site, while providing a mechanism through which a nutrient-conserving continental shelf pump for CO2 could potentially operate in this and other similar regions.
机译:大陆架海可能通过“陆架泵”机制在大气中从海洋吸收和储存二氧化碳(CO2)中发挥重要作用。作为英国架海生物地球化学研究计划(UK-SSB)的一部分,从2014年3月至2015年9月,广泛的生物地球化学采样的目标是西北欧洲大陆架,尤其是凯尔特海(北纬50度,北纬8度)。在这里,我们使用UK-SSB碳酸盐化学方法和大量营养素测量方法来研究这种温带,季节性分层系统中的生物地球化学季节性。分层开始后,春季和夏季的近地表生物初级生产去除了溶解的无机碳和养分,一部分沉没的颗粒有机物随后在温热层下重新矿化。在1.5个季节周期内,对这些变量的水柱清单进行了校正(针对海气CO2交换,沉积物反硝化和厌氧氨气进行了校正),从而隔离了净群落生产(NCP)和再矿化对无机大量营养素清单的综合影响。总体无机库存变化表明,大约3 mol-C m(-2)yr(-1)的年度NCP中有很大一部分(> 50%)似乎存储在具有长寿命的有机物(OM)库中,寿命长达几个月或更长时间。此外,在一个完整的季节性周期内,进出该池的转移似乎未处于稳定状态。建议长期积累并可能富含C的OM池至少部分负责估算的类似于1.3 mol-C m(-2)yr(-1)的空气-海洋二氧化碳净通量在我们的研究站点上,同时提供了一种机制,通过该机制,可以在该地区和其他类似地区潜在地使用保存营养的大陆架二氧化碳泵。

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  • 来源
    《Progress in Oceanography》 |2019年第10期|101961.1-101961.14|共14页
  • 作者单位

    Univ Southampton Natl Oceanog Ctr Southampton Ocean & Earth Sci Southampton Hants England|Univ East Anglia Sch Environm Sci Ctr Ocean & Atmospher Sci Norwich Norfolk England;

    Univ Southampton Natl Oceanog Ctr Southampton Ocean & Earth Sci Southampton Hants England|GEOMAR Helmholtz Ctr Ocean Res Kiel Germany;

    Natl Oceanog Ctr Liverpool Merseyside England;

    Univ Southampton Natl Oceanog Ctr Southampton Ocean & Earth Sci Southampton Hants England;

    Natl Oceanog Ctr Ocean Biogeochem & Ecosyst Southampton Hants England;

    Univ East Anglia Sch Environm Sci Ctr Ocean & Atmospher Sci Norwich Norfolk England|Ctr Environm Fisheries & Aquaculture Sci Lowestoft Suffolk England;

    Natl Oceanog Ctr Liverpool Merseyside England|Univ Liverpool Sch Environm Sci Dept Earth Ocean & Ecol Sci Liverpool Merseyside England;

    Plymouth Marine Lab Plymouth Devon England;

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