Geochemical record of chemical weathering and monsoon climate change since the early Miocene in the South China Sea

风化作用 地质学 季风 古气候学 中新世晚期 东亚季风 海洋学 气候变化 底栖区 地球化学 气候学 古生物学 构造盆地
作者
Gangjian Wei,Xian‐Hua Li,Ying Liu,Lei Shao,Xirong Liang
出处
期刊:Paleoceanography [American Geophysical Union]
卷期号:21 (4) 被引量:215
标识
DOI:10.1029/2006pa001300
摘要

The chemical index of alteration (CIA) and elemental ratios that are sensitive to chemical weathering, such as Ca/Ti, Na/Ti, Al/Ti, Al/Na, Al/K, and La/Sm, were analyzed for detrital sediments at Ocean Drilling Program Site 1148 from the northern South China Sea to reveal information of chemical weathering in the source regions during the early Miocene. High CIA values of ∼80, coupled with high Al/Ti and Al/Na and low Na/Ti and Ca/Ti, are observed for the sediments at ∼23 Ma, indicating a high chemical weathering intensity in the north source region, i.e., south China. This was followed by gradual decreases in Al/Ti, Al/Na, La/Sm, and Al/K ratios, as well as the CIA values, and increases in Ca/Ti and Na/Ti ratios. These records together with other paleoclimate proxies, such as black carbon δ 13 C and benthic foraminifer δ 18 O, give reliable information on the climate changes in south China. Our results show that the climate in south China was warm and humid in the early Miocene (∼23 Ma) according to the chemical weathering records. The humidity in south China decreased from the early Miocene to Present with several fluctuations centering at approximately 15.7 Ma, 8.4 Ma, and 2.5 Ma, coincident with the global cooling since the middle Miocene. These climate changes implied that the summer east Asian monsoon has dramatically affected south China in the early Miocene, whereas the influence of the summer monsoon on this region has decreased continuously since that time, probably because of the intensification of the winter monsoon. Such an evolution for the east Asian monsoon is different from that for the Indian monsoon.
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