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March 14, 2026Science Advances2 citationsOpen Access

Atmospheric systems drive spatiotemporal divergence of dust and moisture changes across Asia over the past 130,000 years

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GLGuoqiang LiHYHe YangXZXiaojian Zhang

Key Points

  • This research investigates the impact of atmospheric systems on dust and moisture changes across Asia over the last 130,000 years.
  • Compiled luminescence ages and climatic proxies from 107 loess sections.
  • Reconstructed dust mass accumulation rates (MARs) and hydroclimate variability.
  • Examined changes in atmospheric humidity linked to ice volume fluctuations.
  • Found high MARs and low moisture during Marine Isotope Stages 4 to 2.
  • Identified low MARs and high moisture during MIS 5 and MIS 1.
  • Observed spatial contrasts in MARs and moisture between westerly and monsoon-dominated regions of Asia.

Abstract

Loess-paleosol sequences across Asia provide a critical archive of past dust deposition and climate dynamics shaped by westerlies and Asian monsoons. We compile luminescence ages and climatic proxies from 107 loess sections to reconstruct dust mass accumulation rates (MARs) and hydroclimate variability over the past 130 thousand years (ka). The results reveal a consistent pattern: high MARs and low moisture during Marine Isotope Stages (MIS) 4 to 2 (71 to 12 ka) and low MARs with high moisture during MIS 5 (130 to 71 ka) and MIS 1 (12 ka to present). These shifts are driven by cooling-induced changes in atmospheric humidity linked to fluctuations in ice volume across glacial-interglacial cycles. Within MIS 5, MIS 4 to 2, and MIS 1, pronounced spatial and temporal contrasts in MARs and moisture emerge between westerlies-dominated northern Iran and central Asia and monsoon-dominated East Asia. Notably, westerly and monsoonal precipitation vary out of phase, driven by insolation-controlled shifts in moisture transport.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69b4b9eb18185d8a39802145https://doi.org/10.1126/sciadv.adx8500
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