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Evidence for enhanced convection of North Pacific Intermediate Water to the low-latitude Pacific under glacial conditions

机译:冰川条件下北太平洋中间水与低纬太平洋对流增强的证据

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摘要

We provide high-resolution foraminiferal stable carbon isotope (δ13C) records from the subarctic Pacific and Eastern Equatorial Pacific (EEP) to investigate circulation dynamics between the extra-tropical and tropical North Pacific during the past 60 kyr. We measured the δ13C composition of the epibenthic foraminiferal species Cibicides lobatulus from a shallow sediment core recovered from the western Bering Sea (SO201-2-101KL; 58°52.52’N, 170°41.45’E; 630 m water depth) to reconstruct past ventilation changes close to the source region of Glacial North Pacific Intermediate Water (GNPIW). Information regarding glacial changes in the δ13C of sub-thermocline water masses in the EEP is derived from the deep-dwelling planktonic foraminifera Globorotaloides hexagonus at ODP Site 1240 (00°01.31’N, 82°27.76’W; 2921 m water depth). Apparent similarities in the long-term evolution of δ13C between GNPIW, intermediate waters in the eastern tropical North Pacific and sub-thermocline water masses in the EEP suggest the expansion of relatively 13C-depleted, nutrient-enriched, and northern-sourced intermediate waters to the equatorial Pacific under glacial conditions. Further, it appears that additional influence of GNPIW to the tropical Pacific is consistent with changes in nutrient distribution and biological productivity in surface-waters of the glacial EEP. Our findings highlight potential links between North Pacific mid-depth circulation changes, nutrient cycling, and biological productivity in the equatorial Pacific under glacial boundary conditions.
机译:我们提供了来自北极亚太平洋和东赤道太平洋(EEP)的高分辨率有孔虫稳定碳同位素(δ13C)记录,以研究过去60年间热带外和热带北太平洋之间的环流动力学。我们测量了从白令海西部(SO201-2-101KL; 58°52.52'N,170°41.45'E; 630 m水深)回收的表层有孔虫物种Cibicides lobatulus的δ13C组成,以重建过去通风变化接近北冰洋中间水(GNPIW)的源区。有关EEP中亚温泉运动水团δ13C的冰川变化的信息来自于ODP站点1240(00°01.31′N,82°27.76′W;2921μm水深)的深层浮游有孔虫孔雀藻六角形。 GNPIW,热带北部北太平洋的中间水域和EEP中的亚热跃线水体之间的δ13C长期演化的表观相似性表明,相对贫化,营养丰富和北源的中间水体已扩展到13C冰川条件下的赤道太平洋。此外,看来GNPIW对热带太平洋的其他影响与冰川EEP地表水中营养物分布和生物生产力的变化是一致的。我们的发现强调了在冰川边界条件下北太平洋中深度环流变化,营养循环和赤道太平洋生物生产力之间的潜在联系。

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