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A bi-polar signal recorded in the western tropical Pacific: Northern and Southern Hemisphere climate records from the Pacific warm pool during the last Ice Age

机译:在西部热带太平洋记录的双极信号:在最后一个冰河时期,来自太平洋暖池的北半球和南半球气候记录

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Western tropical Pacific sea surface temperatures and Pacific Deep Water temperatures during Marine Isotope Stage 3 have been reconstructed from the delta O-18 and Mg/Ca of planktonic and benthic for aminifera from Marion Dufresne core MD98-2181. This 36 m marine core was collected at 6.3 degrees N from a water depth of 2114 m. With sediment accumulation rates of up to 80 cm/ky, it provides a decadally resolved history of ocean variability during the Last Glacial period. Surface temperatures and salinities at this site varied in close association with millennial-scale atmospheric temperature swings at high northern latitudes as reflected in the GISP2 ice core. At times of colder atmospheric temperatures over Greenland, the western Pacific was more saline and summer season SSTs were similar to 2 degrees C colder. These millennial-scale changes within the tropics are attributed to a southward displacement of the summer season ITCZ in response to steeper meridional temperature gradients within the Pacific. The benthic delta O-18 record from MD98-2181 documents upper Pacific Deep Water temperature and salinity variability. Benthic delta O-18 variations of 0.3-0.5 parts per thousand during MIS 3 indicate deep waters within the Pacific were varying by similar to 1-1.5 degrees C, with the possibility that some of the variability was due to changing salinity and minor glacial-eustatic changes. The observed deep-water variability correlates to changes in Antarctic surface temperatures and thus reflects changes in Southern Ocean temperatures at the site of Pacific Deep Water formation. The combined planktonic and benthic records from MD98-2181 thus provide a northern and southern hemispheric climate record of anti-phased variability during MIS 3 as has been inferred previously from ice core records. Furthermore, the deep sea temperature excursions appear to have led millennial variations in atmospheric CO2 as recorded in the EDML ice core by similar to 1 kyr.
机译:西部热带太平洋海表温度和海洋同位素第3阶段期间的太平洋深水温度已从Marion Dufresne核心MD98-2181的浮游生物和底栖生物的浮游和底栖生物的δO-18和Mg / Ca重建。在水深2114 m处,在6.3度N处收集了这36 m的海洋岩心。沉积物累积速率高达80 cm / ky,在最后一次冰期期间,它提供了数十年的海洋变率解析历史。 GISP2冰芯反映出,该地点的地表温度和盐度与北纬高纬度地区千年尺度的大气温度波动密切相关。在格陵兰岛上的大气温度较低的时候,西太平洋的盐分更高,夏季的SST大约要冷2摄氏度。热带地区这些千禧年尺度的变化归因于夏季ITCZ向南位移,这是由于太平洋内子午温度梯度变大所致。 MD98-2181的底栖三角洲O-18记录记录了太平洋深水区的温度和盐度变异性。 MIS 3期间底栖三角洲O-18的变化为千分之0.3-0.5,表明太平洋内的深水变化幅度接近1-1.5摄氏度,有可能某些变化是由于盐度的变化和较小的冰川-欣喜若狂的变化。观测到的深水变化与南极表面温度的变化有关,因此反映了太平洋深水形成地点南极海洋温度的变化。因此,来自MD98-2181的浮游和底栖记录相结合,提供了北半球和南半球的MIS 3期间反相位变化的气候记录,如先前从冰芯记录中推断的那样。此外,如EDML冰芯所记录的那样,深海温度漂移似乎已导致大气CO2的千年变化,大约相差1年。

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