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首页> 外文期刊>Ocean Science Journal >Fossil Diatom Assemblages as Paleoecological Indicators of Paleo-water Environmental Change in the Ulleung Basin, East Sea, Republic of Korea
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Fossil Diatom Assemblages as Paleoecological Indicators of Paleo-water Environmental Change in the Ulleung Basin, East Sea, Republic of Korea

机译:化石硅藻综合组织作为乌利盆地,东海,大韩民国的古水环境变化古生态指标

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摘要

The fossil diatom assemblage record from two sediment cores obtained from the Ulleung Basin, East Sea, Republic of Korea, revealed changes in the diatom assemblage zones in PG1 and PD3 core samples. The two sediment cores were delta C-14 dated and approximately represented the late Pleistocene-Holocene. The analysis of age zones in the PG1 core and PD3 core was assessed based on the frequency of variations, and occurrences of biostratigraphical fossil diatom species. During the Last Glacial Maximum (LGM), the sea level was lower than that at present and the Ulleung Basin became isolated from the Pacific Ocean. As a result, there would have been a limited Tsushima Warm Current (TWC) influence, and salinity would have decreased resulting in increased freshwater and coastal diatoms. The distribution pattern of diatoms presented in the cores was associated with changes in water temperature and salinity and the adding of terrigenous material brought about by the input of freshwater. Changes in the abundance of a tychopelagic diatom, Paralia sulcata, reflected the effect of the water currents. Diatom temperature (Td) values and the ratio of centric/pennate diatoms provided evidence of limited influences of the TWC and freshwater inflow. It is thought that all assemblage zones were influenced by the TWC, which had an important effect on the distribution and composition of fossil diatoms.
机译:从蔚蓝盆地,东海,大韩民国获得的两个沉积物的化石硅藻综合记录揭示了PG1和PD3核心样品中的硅藻组合区的变化。两个沉积物核心是Delta C-14日期,大约代表晚熟 - 全新世。基于变化的频率评估PG1核心和PD3核心的年龄区域的分析,以及生物检索物化石硅藻种类的发生。在最后的冰川最大值(LGM)期间,海平面低于目前的海平面,蔚蓝盆地从太平洋隔离。结果,存在有限的Tsushima温热电流(TWC)影响,并且盐度将降低,导致淡水和沿海硅藻量增加。核心呈现的硅藻的分布模式与水温和盐度的变化有关,并通过淡水的输入增加了植物的堆积材料。 Tychopelagic硅藻土丰富的变化,Paralia Sulcata,反映了水流的影响。硅藻温度(TD)值和中心/钢酸乙酸的比例提供了对TWC和淡水流入的有限影响的证据。据认为,所有组合区受到TWC的影响,这对化石硅藻的分布和组成具有重要作用。

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