TY - JOUR
T1 - A drought event in central eastern China during MIS 6 revealed by elemental ratio and δ13C records from Hulu Cave
AU - Wang, Sixian
AU - Zhu, Junji
AU - Gao, Kui
AU - Zhao, Bin
AU - Zhang, Zhenqiu
AU - Wang, Yongjin
AU - Cheng, Hai
N1 - Publisher Copyright:
© 2025
PY - 2025/10/15
Y1 - 2025/10/15
N2 - Speleothem oxygen isotope (δ18O) records from Hulu Cave in central eastern China have revealed detailed information on millennial-scale oscillations that punctuated the transition from the penultimate glacial period to the last interglacial period (i.e., MIS 6 to MIS5). It remains uncertain, however, what is the most pronounced drying episode among these millennial-scale monsoon oscillations. Here, we present new δ13C and trace element (Mg/Ca, Sr/Ca) data from the same cave, spanning 155 to 133 thousand years ago (ka), to investigate local hydroclimatic and ecological changes during the penultimate glacial period. While Mg/Ca and Sr/Ca exhibit orbital-scale trends consistent with their parallel δ18O record, the δ13C record displays subdued oscillations around distinct baselines, indicating a different response of overlying vegetation and soil conditions to insolation forcing. We identify a drought eventbetween 140.5 and 134.9 ka, which was likely triggered by a North Atlantic ice-rafted debris (IRD) episode and sustained by the expansion of the Eurasian ice sheet and cooling in the Indo-Pacific Warm Pool (IPWP). Within this event, we detect a pronounced megadrought from ∼139.5 to 137 ka, lasting ∼2.5 kyr, marked by peak trace element ratios, uranium enrichment, and extremely low growth rate, also displayed in the δ18O record. Our findings suggest that millennial-scale drying in East Asia was controlled by both northern high- and low-latitude climatic changes.
AB - Speleothem oxygen isotope (δ18O) records from Hulu Cave in central eastern China have revealed detailed information on millennial-scale oscillations that punctuated the transition from the penultimate glacial period to the last interglacial period (i.e., MIS 6 to MIS5). It remains uncertain, however, what is the most pronounced drying episode among these millennial-scale monsoon oscillations. Here, we present new δ13C and trace element (Mg/Ca, Sr/Ca) data from the same cave, spanning 155 to 133 thousand years ago (ka), to investigate local hydroclimatic and ecological changes during the penultimate glacial period. While Mg/Ca and Sr/Ca exhibit orbital-scale trends consistent with their parallel δ18O record, the δ13C record displays subdued oscillations around distinct baselines, indicating a different response of overlying vegetation and soil conditions to insolation forcing. We identify a drought eventbetween 140.5 and 134.9 ka, which was likely triggered by a North Atlantic ice-rafted debris (IRD) episode and sustained by the expansion of the Eurasian ice sheet and cooling in the Indo-Pacific Warm Pool (IPWP). Within this event, we detect a pronounced megadrought from ∼139.5 to 137 ka, lasting ∼2.5 kyr, marked by peak trace element ratios, uranium enrichment, and extremely low growth rate, also displayed in the δ18O record. Our findings suggest that millennial-scale drying in East Asia was controlled by both northern high- and low-latitude climatic changes.
KW - Drought event
KW - Hulu Cave
KW - Hydrological change
KW - Penultimate glacial period
KW - Stalagmite
UR - https://www.scopus.com/pages/publications/105010619170
U2 - 10.1016/j.palaeo.2025.113129
DO - 10.1016/j.palaeo.2025.113129
M3 - 文章
AN - SCOPUS:105010619170
SN - 0031-0182
VL - 676
JO - Palaeogeography, Palaeoclimatology, Palaeoecology
JF - Palaeogeography, Palaeoclimatology, Palaeoecology
M1 - 113129
ER -