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Clay mineralogical and geochemical proxies of the East Asian summer monsoon evolution in the South China Sea during Late Quaternary

机译:晚第四纪南海东亚夏季风演化的粘土矿物学和地球化学代理

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摘要

The East Asian summer monsoon controls the climatic regime of an extended region through temperature and precipitation changes. As the East Asian summer monsoon is primarily driven by the northern hemisphere summer insolation, such meteorological variables are expected to significantly change on the orbital timescale, influencing the composition of terrestrial sediments in terms of both mineralogy and geochemistry. Here we present clay mineralogy and major element composition of Core MD12-3432 retrieved from the northern South China Sea, and we investigate their relationship with the East Asian summer monsoon evolution over the last 400 ka. The variability of smectite/(illite + chlorite) ratio presents a predominant precession periodicity, synchronous with the northern hemisphere summer insolation changes and therefore with that of the East Asian summer monsoon. Variations in K2O/Al2O3 are characterized by eccentricity cycles, increasing during interglacials when the East Asian summer monsoon is enhanced. Based on the knowledge of sediment provenances, we suggest that these two proxies in the South China Sea are linked to the East Asian summer monsoon evolution with different mechanisms, which are (1) contemporaneous chemical weathering intensity in Luzon for smectite/(illite + chlorite) ratio and (2) river denudation intensity for K2O/Al2O3 ratio of bulk sediment.
机译:东亚夏季风通过温度和降水变化控制大范围区域的气候状况。由于东亚夏季风主要受北半球夏季日射的影响,因此预计此类气象变量将在轨道时标上发生显着变化,从而从矿物学和地球化学角度影响陆地沉积物的组成。在这里,我们介绍了从南海北部获取的岩心MD12-3432的黏土矿物学和主要元素组成,并研究了它们与最近400 ka与东亚夏季风演化的关系。蒙脱石/(伊利石+亚氯酸盐)比率的变化呈现出主要的进动周期性,与北半球夏季的日照变化并因此与东亚夏季风的变化同步。 K2O / Al2O3的变化以偏心周期为特征,在东亚夏季风增强时,在冰间期增加。根据对沉积物物源的认识,我们认为这两个南海代理与东亚夏季风演化有不同的机制,它们是(1)绿土中绿土/(伊利石+绿泥石)的同时化学风化强度。 )比率和(2)河流沉积物的K2O / Al2O3比率。

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