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首页> 外文期刊>Paleoceanography >Late Holocene productivity and hydrographic variability in the eastern Mediterranean inferred from benthic foraminiferal stable isotopes
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Late Holocene productivity and hydrographic variability in the eastern Mediterranean inferred from benthic foraminiferal stable isotopes

机译:由底栖有孔虫稳定同位素推断的地中海东部晚全新世生产力和水文变异性

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The paleoproductivity, paleo-oxygenation, and paleohydrographic configuration of the southeastern Mediterranean during the late Holocene was reconstructed on the basis of the isotopic composition of the epibenthic Heterolepa floridana, shallow-endobenthic Uvigerina mediterranea, and the deeper endobenthic Bulimina inflata from two high-resolution cores GA-112 (470 m) and GA-110 (670 m). The Δδ~(13)C between H. floridana and U. mediterranea reveals four intervals of enhanced productivity, from 3.3-2.6, 2.3-1.9, 1.5-1.1, and 0.8-0.4 kyr BP, coinciding with increased nutrient supply by the Nile River. The entire basin was well aerated, with oxygen consumption varying between 1.0 and 3.5 mL O_2/L. Oxygen consumption increases toward present day, probably because of higher accumulation of total organic carbon at 1.7 kyr BP, coinciding with the appearance of the mesotropic benthic species. The hydrographic configuration of the basin has changed during the course of the last 3.75 kyr. The Levantine Intermediate Water (LIW) deepens below 470 m between 3.3 and 2.0 kyr, and especially between 2.5 and 2.0 kyr. During the last 1.5 kyr, the LIW becomes shallower than 470 m, similar to the present day. The change in the hydrographic configuration reflects changes in evaporation/precipitation ratio and in temperature.
机译:全新世晚期地中海东南部的古生产力,古加氧作用和古水文构型是根据两个高分辨率的上表生杂岩藻,浅内生Uvigerina meterraerranea和更深的内生浮游生物的同位素组成重建的GA-112(470 m)和GA-110(670 m)岩心。 H. floridana和U. mediterranea之间的Δδ〜(13)C揭示了四个提高生产力的区间,分别为3.3-2.6、2.3-1.9、1.5-1.1和0.8-0.4千BP,与尼罗河提供的养分增加相吻合河。整个盆地充气良好,耗氧量介于1.0和3.5 mL O_2 / L之间。当今,氧气消耗量增加,这可能是由于在1.7千BP时总有机碳的积累量更高,这与各向同性底栖生物的出现相吻合。在最近的3.75千瓦期间,流域的水文构型发生了变化。黎凡特中间水(LIW)在3.3至2.0千瓦之间,尤其是在2.5至2.0千瓦之间加深到470 m以下。在最近的1.5年里,LIW变得比现在的470​​ m浅。水文构型的变化反映了蒸发/沉淀比和温度的变化。

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