过去350年来,锋面迁移和硅酸浓度在推动印度洋南部硅藻生产力方面的协同作用 ka

IF 1.5 4区 地球科学 Q2 PALEONTOLOGY Marine Micropaleontology Pub Date : 2023-05-01 DOI:10.1016/j.marmicro.2023.102245
Sunil Kumar Shukla , Xavier Crosta , Minoru Ikehara
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引用次数: 0

摘要

南大洋(SO)亚南极带(SAZ)的冰期-间冰期硅质生产力已被提出,以响应更高的含尘铁通量和/或盆地范围内增加的地表水营养供应。然而,硅藻生产力的长期记录主要来自大西洋和太平洋板块。在过去的四个冰期-间冰期旋回中,南极环极流与底部地形强烈相互作用,形成了一个生产力热点,我们提出了一个新的硅藻生产力记录。结果表明,硅藻生产力的区域变化不遵循冰期-间冰期模式。在海洋同位素阶段(MIS) 6和MIS4硅藻产量最高,MIS10-MIS8和MIS3-MIS1硅藻产量最低,MIS7和MIS5硅藻产量处于中等水平。数千年的高硅藻生产力事件分散在冰期和间冰期。该地区硅藻生产力的长期和快速变化与尘埃通量的变化无关,但可能与锋面迁移和SO上涌强度的变化有关,这些变化都调节了硅藻的二氧化硅和铁的有效性。重要的是,我们的数据表明,锋面迁移在SO中不是均匀的,特别是在这些锋面与底部地形相互作用的地方。过去在绘制SO-wide碳平衡时,必须考虑这些生产力热点的特殊性。
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Synergic role of frontal migration and silicic acid concentration in driving diatom productivity in the Indian sector of the Southern Ocean over the past 350 ka

The glacial-interglacial siliceous productivity in the Sub-Antarctic Zone (SAZ) of the Southern Ocean (SO) has been proposed to respond to higher dust-bearing iron fluxes and/or basin-wide increased nutrient supply to surface waters. However, long records of diatom productivity are mainly obtained from the Atlantic and Pacific sectors of the SO. We present a new diatom productivity record from the SAZ of the western Indian sector of the SO, where the Antarctic Circumpolar Current strongly interacts with bottom topography to create a productivity hotspot, during the last four glacial-interglacial cycles. Our results show that regional changes in diatom productivity did not follow a glacial-interglacial pattern. It was highest during the Marine Isotope stage (MIS) 6 and MIS4, lowest during MIS10-MIS8 and MIS3-MIS1, whereas intermediate diatom productivity was found during MIS7 and MIS5. Multi-millennial events of high diatom productivity were scattered throughout both the glacial and interglacial periods. Both long-term and rapid diatom productivity changes in the region were disconnected from dust flux changes, but might relate to frontal migrations and SO upwelling intensity changes which have both mediated the silica and iron availability for diatoms. Importantly, our data suggest that front migrations were not homogenous in the SO, especially where these fronts interact with bottom topography. The peculiarity of these productivity hotspots must be considered when drawing SO-wide carbon balance in the past.

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来源期刊
Marine Micropaleontology
Marine Micropaleontology 地学-古生物学
CiteScore
3.70
自引率
15.80%
发文量
62
审稿时长
26.7 weeks
期刊介绍: Marine Micropaleontology is an international journal publishing original, innovative and significant scientific papers in all fields related to marine microfossils, including ecology and paleoecology, biology and paleobiology, paleoceanography and paleoclimatology, environmental monitoring, taphonomy, evolution and molecular phylogeny. The journal strongly encourages the publication of articles in which marine microfossils and/or their chemical composition are used to solve fundamental geological, environmental and biological problems. However, it does not publish purely stratigraphic or taxonomic papers. In Marine Micropaleontology, a special section is dedicated to short papers on new methods and protocols using marine microfossils. We solicit special issues on hot topics in marine micropaleontology and review articles on timely subjects.
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