生物地球化学循环
永久冻土
生态系统
硫酸盐
环境科学
环境化学
自行车
北极的
生物地球化学
热岩溶
碳循环
二氧化碳
硫黄
水文学(农业)
溪流
溶解有机碳
植被(病理学)
酸雨
稀释
矿化(土壤科学)
大洪水
长江
化学
碳汇
金属
二氧化硫
海洋学
作者
Elliott K. Skierszkan,Andras J. Szeitz,Matthew B.J. Lindsay,Sean K. Carey
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-05-21
卷期号:392 (6800): 863-867
标识
DOI:10.1126/science.aea2898
摘要
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI