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Annual cycle of export fluxes of biogenic matter near Hanna Shoal in the northeast Chukchi Sea

机译:东北楚科海汉纳浅滩附近汉纳浅滩出口通量的年度周期

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The Chukchi Ecosystem Observatory (CEO), a mooring array of subsurface oceanographic instruments, was established on the northeast Chukchi Sea continental shelf to obtain time-series measurements of physical, biogeochemical, and biological parameters. A sequential sediment trap was deployed on a CEO mooring 8 m above seafloor to measure export fluxes of chlorophyll a (chl a), microalgal cells, zooplankton fecal pellets, total particulate matter (TPM), particulate organic carbon (POC), and zooplankton actively entering the trap from August 2015 to July 2016. These time-series measurements allowed us to monitor sympagic and pelagic algal production, the seasonal development of the zooplankton community, pelagic-benthic coupling, and particulate matter export in relation to snow and sea-ice cover on the shallow Chukchi Sea continental shelf. Notably, chl a and algal fluxes were nearly as high from August to October 2015 as in June-July 2016, indicating substantial autumn production. Autumn algal fluxes were dominated by the epipelic Cylindrotheca closterium while summer fluxes were dominated by pennate diatoms, including Fossula arctica and Neodenticula seminae. Peaks in the export of the exclusively sympagic diatom Nitzschia frigida in May and June 2016 indicated the release of ice algae due to snow and ice melt events. While pelagic copepods Calanus glacialis/marshallae, Pseudocalanus spp. and Oithona similis were the dominant copepods collected in the sediment trap, meroplanktonic stages of benthic organisms displayed the largest abundances and reflected mixing of pelagic stages and resuspension events on the shallow Chukchi Sea shelf. Enhanced fecal pellet carbon fluxes reflected zooplankton grazing in August and September 2015 and in July 2016. Despite the grazing pressure, high chl a, diatom and POC fluxes during these periods allowed strong pelagic-benthic coupling in the northeast Chukchi Sea. Persistent summer and autumn production also suggest that the local benthic community benefits from a sustained food supply rather than episodic flux events. Overall, these observations demonstrate the importance of year-round monitoring for fully understanding the phenology of marine processes and set a baseline for understanding the impact of environmental changes on Arctic marine ecosystems.
机译:Chukchi生态系统天文台(CEO)是在东北Chukchi海陆架上建立了一系列系泊的地下海洋仪器阵列,以获得物理,生物地球化学和生物参数的时间序列测量。在Seaforoor上方的首席执行官停泊处部署了一个连续的沉积物陷阱,以测量叶绿素A(CHL A),微藻细胞,Zooplankton Fecal颗粒,总颗粒物(TPM),颗粒状有机碳(POC)和Zooplankton的出口助熔剂从2015年8月到2016年7月进入陷阱。这些时间序列测量允许我们监控Zooplankton群落,Pelagic-Benthic耦合和与雪和海冰有关的季节性发展的调控和藻类藻类生产覆盖在浅齿轮海陆架子上。值得注意的是,CHL A和藻类助焊剂于2015年8月至2015年8月至2016年6月至7月,表明秋季生产大幅增加。秋季藻类助焊剂由突出的圆柱圆弧柱汇总,而夏季助势由Pennate硅藻占主导地位,包括细胞曲线Arctica和Neodenticula seminae。 2016年5月和6月和6月举行的专门解释迪亚斯科尼特·迪尔佐基亚·弗里迪达出口的山峰表明,由于雪和冰融化事件,冰藻释放。而Pelagic Copepods Calanus Glacialis / Marshallae,Pseudocalanus SPP。和奥特纳Similis是在沉积物陷阱中收集的主要桡足类,底栖生物的梅尔多兰顿阶段展示了最大的丰富性,并反映了浅丘脑海架上的木质阶段和重悬浮事件的混合。增强的粪便颗粒碳通量在2015年8月和2016年9月和2016年7月的浮游动物中掠过。尽管在这些时期的饲养压力,高CHL A,硅藻和POC助焊剂允许在东北Chukchi海中允许强烈的脑筋膜耦合。持久的夏季和秋季产量还表明,当地的底栖社区受益于持续的食品供应而非集中性助焊剂事件。总体而言,这些观察结果展示了全年监测的重要性,以充分了解海事过程的候选,并设定了理解环境变化对北极海洋生态系统的影响的基线。

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