Mercury(编程语言)
环境化学
化学
同位素
质量无关分馏
分馏
同位素分馏
物理
有机化学
量子力学
计算机科学
程序设计语言
作者
Ben Yu,Lin Yang,Linlin Wang,Hongwei Liu,Cailing Xiao,Yong Liang,Qian Liu,Yongguang Yin,Ligang Hu,Jianbo Shi,Guibin Jiang
标识
DOI:10.5194/acp-20-9713-2020
摘要
Abstract. The marine boundary layer (MBL) is the largest transport place and reaction vessel of atmospheric mercury (Hg). The transformations of atmospheric Hg in the MBL are crucial for the global transport and deposition of Hg. Herein, Hg isotopic compositions of total gaseous mercury (TGM) and particle-bound Hg (PBM) collected during three cruises to Chinese seas in summer and winter were measured to reveal the transformation processes of atmospheric Hg in the MBL. Unlike the observation results at inland sites, isotopic compositions of TGM in the MBL were affected not only by mixing continental emissions but also largely by the oxidation of Hg0 primarily derived by Br atoms. Δ199Hg values of TGM were significantly positively correlated with air temperature in summer, indicating that processes inducing positive mass-independent fractionation of odd isotopes in TGM could be more active at low temperatures, while the relative processes might be weak in winter. In contrast, the positive Δ199Hg and high ratios of Δ199Hg∕Δ201Hg in PBM indicated that alternative oxidants other than Br or Cl atoms played a major role in the formation of Hg(II) in PBM, likely following the nuclear volume effect. Our results suggest the importance of local Hg environmental behaviors caused by an abundance of highly reactive species and provide new evidence for understanding the complicated transformations of atmospheric Hg in the MBL.
科研通智能强力驱动
Strongly Powered by AbleSci AI