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May 23, 2026Science4 citations

Abrupt stream acidification and metal mobilization from permafrost degradation

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ESElliott K. SkierszkanASAndras J. SzeitzMLMatthew B.J. Lindsay

Key Points

  • This research aims to investigate the effects of permafrost degradation on stream acidification and metal mobilization.
  • Analyzed stream chemistry in Yukon and Mackenzie river basins
  • Monitored emerging acidic seepages and their effects on downstream ecosystems
  • Assessed multidecadal changes in sulfate and metal concentrations
  • Acidic seepages with pH ~3 mobilized metals at toxic levels, causing vegetation dieback
  • Significant multidecadal increases in sulfate concentrations observed downstream; metal concentrations remained stable
  • Increased acidification accelerated carbon dioxide emissions via carbonate-mineral dissolution

Abstract

Stream chemistry and ecosystem function are being transformed by abrupt acceleration of sulfide-mineral oxidation in permafrost-underlain headwater catchments of the Yukon and Mackenzie river basins—the two largest (sub)Arctic rivers in North America. Over the past decade, dozens of acidic (pH ~3) seepages have emerged in these headwaters, causing vegetation dieback and mobilizing metals at acutely toxic concentrations in receiving streams. Acid generated during sulfide-mineral oxidation also accelerates carbon dioxide emissions by driving carbonate-mineral dissolution. Downstream (sub)Arctic rivers show statistically significant multidecadal increases in sulfate concentrations, yet their metal concentrations remain stable because of attenuation and dilution processes. Headwater stream acidification signals a major perturbation in metal, carbon, and sulfur cycling linked to permafrost thaw with far-reaching consequences for water resources, northern communities, ecosystem health, and Earth’s biogeochemical future.

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Cite This Study

Skierszkan et al. (2026) studied this question.

synapsesocial.com/papers/6a1145b048a409a3a49df6c0https://doi.org/10.1126/science.aea2898
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