Hydroclimate variability in southwest China during Marine Isotope Stage 9: Insights from multi–proxy stalagmite records

IF 3.2 1区 地球科学 Q1 GEOGRAPHY, PHYSICAL Quaternary Science Reviews Pub Date : 2025-02-26 DOI:10.1016/j.quascirev.2025.109268
Wei Jia , Yan Yang , Hai Cheng , Tingyong Li , Jingyao Zhao , Shaoneng He , Guangxin Liu , Xiao Liu , Lidan Lei , Mingyang Li , R. Lawrence Edwards
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Abstract

As a potential analogue of the present interglacial, the Marine Isotope Stage 9 (MIS 9) can help predict anthropogenically induced warm climates. However, limited attention and scarce paleoclimate archives have constrained our comprehension of large climate systems like the Asian summer monsoon (ASM) during this period. To better understand the ASM variability in MIS 9, we examined a precisely dated and highly resolved multi–proxy stalagmite record (SMY–1) (spanning from 333.4 to 268.1 kyr B.P.) from Shuiming Cave in southwest China. Its δ18O reveals three warm substages (MIS 9a, 9c, and 9e) and two cold substages (MIS 9b and 9d), following the high–northern–latitude insolation and interhemispheric insolation gradients, underscoring a key role of orbital forcing and low–latitude hydrological changes on ASM variabilities. Regional hydroclimate conditions recorded by its δ13C and trace element ratios (Mg/Ca, Sr/Ca, and Ba/Ca) respond to the ASM intensity on millennial scales. Increased ASM precipitation led to higher soil microbial activity and vegetation density, reducing the prior calcite precipitation effect and the water–rock interaction duration. Furthermore, we identified two–step increases in δ18O and trace element ratios during the MIS 9/8 transition, coinciding with two pulses of ice–rafted debris events and the gradual decline of the Atlantic meridional overturning circulation. Similar change patterns of δ18O between MIS 9 and MIS 3, alongside identified Chinese Interstadials 18–25, demonstrate that universal millennial–scale climate oscillations in the North Atlantic during Late Pleistocene climate cycles influenced variations in ASM via ocean–atmospheric reorganizations. Interestingly, the comparatively lower amplitude of SMY–1 δ18O variation between the antepenultimate deglaciation and the MIS 9e interglacial contradicts findings from other Chinese stalagmites. This spatial heterogeneity reflects the combined influence of regional–scale moisture sources and isotopic fractionation process along pathways on Chinese stalagmite δ18O records.
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来源期刊
Quaternary Science Reviews
Quaternary Science Reviews 地学-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
388
审稿时长
3 months
期刊介绍: Quaternary Science Reviews caters for all aspects of Quaternary science, and includes, for example, geology, geomorphology, geography, archaeology, soil science, palaeobotany, palaeontology, palaeoclimatology and the full range of applicable dating methods. The dividing line between what constitutes the review paper and one which contains new original data is not easy to establish, so QSR also publishes papers with new data especially if these perform a review function. All the Quaternary sciences are changing rapidly and subject to re-evaluation as the pace of discovery quickens; thus the diverse but comprehensive role of Quaternary Science Reviews keeps readers abreast of the wider issues relating to new developments in the field.
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