Natural organic matter-enhanced atmospheric Hg(0) uptake involves thiol-induced unusual electron transfer from Hg to carboxyl moiety Article

Zhang, Xiaoyan, Guo, Yingying, Zheng, Wang et al. (2025). Natural organic matter-enhanced atmospheric Hg(0) uptake involves thiol-induced unusual electron transfer from Hg to carboxyl moiety . WATER RESEARCH, 287 10.1016/j.watres.2025.124311

International Collaboration

cited authors

  • Zhang, Xiaoyan; Guo, Yingying; Zheng, Wang; Liu, Jun; Li, Yanbin; Liu, Yanwei; Shi, Jianbo; Hu, Ligang; Zhang, Xiaoshan; Yin, Yongguang; Cai, Yong; Jiang, Guibin

authors

publication date

  • December 1, 2025

published in

keywords

  • ACIDS
  • CHEMOSELECTIVE REDUCTION
  • Carboxyl
  • DISSOLVED ELEMENTAL MERCURY
  • Engineering
  • Engineering, Environmental
  • Environmental Sciences
  • Environmental Sciences & Ecology
  • Hg(0) uptake
  • ISOTOPES
  • Life Sciences & Biomedicine
  • METHYLATION
  • Natural organic matter
  • OXIDATION
  • Oxidation
  • Physical Sciences
  • Science & Technology
  • Technology
  • Thiol
  • WATER
  • Water Resources

Digital Object Identifier (DOI)

publisher

  • PERGAMON-ELSEVIER SCIENCE LTD

volume

  • 287