globalchange  > 气候减缓与适应
DOI: 10.1016/j.quascirev.2018.08.026
Scopus记录号: 2-s2.0-85054384954
论文题名:
Marine productivity, water column processes and seafloor anoxia in relation to Nile discharge during sapropels S1 and S3
作者: Zwiep K.L.; Hennekam R.; Donders T.H.; van Helmond N.A.G.M.; de Lange G.J.; Sangiorgi F.
刊名: Quaternary Science Reviews
ISSN: 2773791
出版年: 2018
卷: 200
起始页码: 178
结束页码: 190
语种: 英语
英文关键词: Anoxia ; Dinocysts ; Geochemistry ; Marine productivity ; Micropaleontology ; Nile delta ; Nile discharge ; Pollen ; Sapropel S1 ; Sapropel S3
英文摘要: Eastern Mediterranean sapropels S1 (∼10.5–6.1 kyr BP) and S3 (∼85.8–80.8 kyr BP) formed respectively under full interglacial and glacial inception conditions. Consequently, the environmental factors preconditioning and leading to sapropel formation (e.g., global sea level and monsoonal forcing) were different. These factors must have differently influenced processes such as marine productivity, water column processes, and related seafloor anoxia. Here we investigate these differences through an interdisciplinary approach using dinoflagellate cyst and pollen/spore assemblages and sedimentary (redox-sensitive) trace-metal concentrations from a core in the central Nile delta area. Comparing S1 to S3, we demonstrate that (1) Nile discharge appears to be stronger during S3 than S1, as shown by δ18Oresiduals higher ratio of pollen and spores, and the higher abundance of coastal dinocysts and freshwater palynomorphs, (2) Ba/Al, Corg, and dinocyst accumulation rates indicate that marine productivity was similar at least during the first phase of their deposition and started prior to the onset of both sapropels, (3) bottom water conditions were more reducing during S3, resulting in higher Mo/Al, S, and Corg/Ptot values, but preservation was high and similar for both sapropels, and (4) Sedimentary Mo-–U covariation indicates that the depth of water-column ventilation during deposition of S3 was shallower than during S1 (∼1000 m versus ∼1800m, respectively). We attribute the observed differences to slightly enhanced precessional-forced monsoon intensity and potentially lower global sea level, resulting not only in increased North-African run-off, but also in reduced ventilation during S3 compared to S1. © 2018 Elsevier Ltd
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/112015
Appears in Collections:气候减缓与适应

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作者单位: Marine Palynology and Paleoceanography, Department of Earth Sciences, Faculty of Geosciences, Utrecht University, Princetonlaan 8, Utrecht, CB 3584, Netherlands; Geochemistry, Department of Earth Sciences, Faculty of Geosciences, Utrecht University, Princetonlaan 8, Utrecht, CB 3584, Netherlands; NIOZ Royal Netherlands Institute for Sea Research, Department of Ocean Systems, and Utrecht University, P.O. Box 59, Den Burg, Texel, AB 1790, Netherlands; Palaeoecology, Department of Physical Geography, Faculty of Geosciences, Utrecht University, Princetonlaan 8, Utrecht, CB 3584, Netherlands

Recommended Citation:
Zwiep K.L.,Hennekam R.,Donders T.H.,et al. Marine productivity, water column processes and seafloor anoxia in relation to Nile discharge during sapropels S1 and S3[J]. Quaternary Science Reviews,2018-01-01,200
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