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March 3, 2026Nature Communications4 citationsOpen Access

Vegetation greening drives long-term dust mitigation in Eastern Asia

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YFYang FuCWChenglai WuSGShan Gao

Key Points

  • Dust emissions in Eastern Asia have declined by 32.5% due to increased vegetation cover since the early 2000s.
  • Surface wind is the main factor for interannual variability, correlating negatively with various oscillations.
  • The physically based modeling approach separates the impacts of different drivers on dust emissions across timescales.
  • These findings call for ecological restoration to promote dust reduction and enhance regional sustainability.

Abstract

Dryland vegetation dynamics play a fundamental role in dust mitigation. While weaker winds have driven recent dust decline in Eastern Asia, the long-term influence of vegetation remains overlooked. Here, using a physically based modeling approach that partitions the drivers of dust emissions across timescales, we reveal that surface wind dominates interannual variability, negatively correlated with the El Niño-Southern Oscillation, Arctic Oscillation, and Pacific Decadal Oscillation. On a multidecadal scale, however, vegetation cover emerges as the key driver, reducing dust emissions by 32.5% since the early 2000s-a trend projected to continue through 2100. Without these vegetation gains, dust emissions would increase under various CMIP6 projections. Vegetation contributions are uneven: greening of perennial dryland vegetation in sparsely vegetated regions (<15% cover; responsible for 95% of dust emissions) offers the greatest mitigation by stabilizing the land surface and suppressing long-term emissions. These findings highlight priority areas for ecological restoration to sustain dust reduction and advance regional sustainability goals.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69a75aa8c6e9836116a20c11https://doi.org/10.1038/s41467-026-68427-y
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