Saiz-Lopez Alfonso, Cuevas Carlos A, Acuña A Ulises, Añel Juan A, Mahajan Anoop S, de la Torre Laura, Feng Wuhu, Dávalos Juan Z, Roca-Sanjuán Daniel, Kinnison Douglas E, Carmona-García Javier, Fernandez Rafael P, Li Qinyi, Sonke Jeroen E, Feinberg Aryeh, Martín Juan Carlos Gómez, Villamayor Julián, Zhang Peng, Zhang Yanxu, Blaszczak-Boxe Christopher S, Travnikov Oleg, Wang Feiyue, Bieser Johannes, Francisco Joseph S, Plane John M C
Department of Atmospheric Chemistry and Climate, Institute of Physical Chemistry Blas Cabrera, CSIC, 28006 Madrid, Spain.
Environmental Physics Laboratory (EPhysLab), Centro de Investigación Mariña (CIM-UVIGO), Universidade de Vigo, 32004 Ourense, Spain.
Sci Adv. 2025 Jan 10;11(2):eads1459. doi: 10.1126/sciadv.ads1459. Epub 2025 Jan 8.
Mercury (Hg) is a global pollutant with substantial risks to human and ecosystem health. By upward transport in tropical regions, mercury enters into the stratosphere, but the contribution of the stratosphere to global mercury dispersion and deposition remains unknown. We find that between 5 and 50% (passing through the 400-kelvin isentropic surface and tropopause, respectively) of the mercury mass deposited on Earth's surface is chemically processed in the lower stratosphere. Our results show the stratosphere as a unique chemical environment where elemental mercury is efficiently converted to long-lived oxidized species. Subsequent downward transport contributes substantially to the oxidized mercury burden in the troposphere. The results show that the stratosphere facilitates the global dispersion of large amounts of mercury from polluted source regions to Earth's remote environments. We find that stratospheric transport is as important as tropospheric transport in interhemispheric mercury dispersion. Future projections suggest that expected changes in atmospheric circulation will increase the transport of mercury into the stratosphere.
汞(Hg)是一种全球性污染物,对人类和生态系统健康构成重大风险。通过在热带地区的向上传输,汞进入平流层,但平流层对全球汞扩散和沉降的贡献仍不明确。我们发现,沉积在地球表面的汞质量中,分别有5%至50%(分别穿过400开尔文等熵面和对流层顶)在平流层下部进行了化学处理。我们的结果表明,平流层是一个独特的化学环境,其中元素汞被有效地转化为长寿命的氧化态物种。随后的向下传输对对流层中氧化汞的负担有很大贡献。结果表明,平流层促进了大量汞从污染源区向地球偏远环境的全球扩散。我们发现,平流层传输在半球间汞扩散中与对流层传输同样重要。未来预测表明,大气环流的预期变化将增加汞向平流层的传输。