Removing and recycling mercury from scrubbing solution produced in wet nonferrous metal smelting flue gas purification process

被引:4
作者
Shu Yang [1 ]
Ziliang Li [2 ]
Kang Yan [2 ,3 ]
Xi Zhang [2 ]
Zhifeng Xu [2 ,3 ]
Wanrong Liu [4 ]
Zhilou Liu [2 ,3 ]
Hui Liu [1 ]
机构
[1] School of Metallurgy and Environment, Central South University
[2] Solid Waste and Chemicals Management Center, Ministry of Environmental Protection
[3] School of Metallurgy Engineering, JiangX i University of Science and Technology
[4] Institute of Green Metallurgy and Process Intensification
基金
中国博士后科学基金;
关键词
D O I
暂无
中图分类号
X758 [有色金属工业];
学科分类号
083002 ;
摘要
Wet purification technology for nonferrous metal smelting flue gas is important for mercury removal; however, this technology produces a large amounts of spent scrubbing solution that contain mercury. The mercury in these scrubbing solutions pose a great threat to the environment. Therefore, this research provides a novel strategy for removing and recycling mercury from the scrubbing solution, which is significant for decreasing mercury pollution while also allowing for the safe disposal of wastewater and a stable supply of mercury resources. Some critical parameters for the electrochemical reduction of mercury were studied in detail. Additionally, the electrodeposition dynamics and electroreduction mechanism for mercury were evaluated. Results suggested that over 92.4% of mercury could be removed from the scrubbing solution in the form of a Hg-Cu alloy under optimal conditions within 150 min and with a current efficiency of approximately 75%. Additionally, mercury electrodeposition was a quasi-reversible process, and the controlled step was the mass transport of the reactant. A pre-conversion step from Hg(Tu)to Hg(Tu)before mercury electroreduction was necessary. Then, the formed Hg(Tu)on the cathode surface gained electrons step by step. After electrodeposition, the mercury in the spent cathode could be recycled by thermal desorption. The results of the electrochemical reduction of mercury and subsequent recycling provides a practical and easy-to-adopt alternative for recycling mercury resources and decreasing mercury contamination.
引用
收藏
页码:59 / 68
页数:10
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共 38 条
  • [1] Mercury emissions and partitioning from Indian coal-fired power plants
    Hridesh Agarwalla
    Rabi Narayan Senapati
    Tarit Baran Das
    [J]. Journal of Environmental Sciences, 2021, (02) : 28 - 33
  • [2] Hierarchical Ag-SiO_2Fe_3O_4magnetic composites for elemental mercury removal from non-ferrous metal smelting flue gas.[J].Yongpeng Ma;Bailong Mu;Xiaojing Zhang;Hongzhong Zhang;Haomiao Xu;Zan Qu;Li Gao;.Journal of Environmental Sciences.2019, 05@
  • [3] Alkynyl carbon materials as novel and efficient sorbents for the adsorption of mercury(Ⅱ) from wastewater
    Yingjie Li
    Wenfeng Li
    Qingnan Liu
    Hong Meng
    Yingzhou Lu
    Chunxi Li
    [J]. Journal of Environmental Sciences, 2018, 68 (06) : 169 - 176
  • [4] Absorption characteristics of elemental mercury in mercury chloride solutions.[J].Yongpeng Ma;Haomiao Xu;Zan Qu;Naiqiang Yan;Wenhua Wang;.Journal of Environmental Sciences.2014, 11
  • [5] Electrochemical removal of gaseous elemental mercury in liquid phase with a novel foam titanium-based DSA anode.[J].Jie Yang;Qing Wang;Jiacheng Zhou;Qicheng Shen;Limei Cao;Ji Yang.Separation and Purification Technology.2020, prepublish
  • [6] Critical temperature for rapid release of mercury from coal after high temperature: A review.[J].Jianjun Hu;Qiang Sun;Jing Hua Zhang.Journal of Cleaner Production.2020,
  • [7] Extracting of copper from simulated leaching solution of copper-cadmium residues by cyclone electrowinning technology.[J].Hongao Xu;Bo Li;Yonggang Wei;Hua Wang.Hydrometallurgy.2020, prepublish
  • [8] Promotional effect of NH 3 on mercury removal over biochar thorough chlorine functional group transformation.[J].Huicong Zhang;Tao Wang;Yongsheng Zhang;Baomin Sun;Wei-Ping Pan.Journal of Cleaner Production.2020,
  • [9] In-situ synthesis of monodispersed Cu x O heterostructure on porous carbon monolith for exceptional removal of gaseous Hg 0.[J].Liyuan Zhang;Shu Yang;Yuekun Lai;Hui Liu;Yiang Fan;Cao Liu;Haiying Wang;Liyuan Chai.Applied Catalysis B: Environmental.2020,
  • [10] Selective recovery of lead and zinc through controlling cathodic potential in a bioelectrochemically-assisted electrodeposition system.[J].Lingen Zhang;Zhenming Xu;Zhen He.Journal of Hazardous Materials.2020,