Documentation scienceplus.abes.fr version Bêta

À propos de : Novel Sorbents of Non-Metal-Doped Spinel Co3O4 for the Removal of Gas-Phase Elemental Mercury        

AttributsValeurs
type
Is Part Of
Subject
Title
  • Novel Sorbents of Non-Metal-Doped Spinel Co3O4 for the Removal of Gas-Phase Elemental Mercury
has manifestation of work
related by
Author
Abstract
  • N-doping technology is introduced to improve Co3O4’s Hg0 removal ability and anion activation ability for the first time. The adsorption tests show that N-doped Co3O4 has a higher SBET and greater Hg0 removal ability. The reaction mechanism has been carefully studied using a number of different analyses methods such as X-ray diffraction, Brunauer-Emmett-Teller, and X-ray photoelectron spectroscopy. The analysis results illustrate that N atoms have been doped into a Co3O4 matrix as anions and are thought to substitute for O atoms. Anions, such as Cl− and Br−, can be activated by N-doped Co3O4 and then oxidize Hg0. It is considered that nitrogen atoms in polycrystalline N-doped Co3O4 are responsible for the significant enhancement of Hg0 removal ability. Different NH4Cl or NH4Br adulteration values have been tested, and the results show that 50 mol % NH4Cl or 40 mol % NH4Br doped Co3O4 have the highest Hg0 removal ability. Compared with Co3O4, N-doped Co3O4 has a longer breakthrough time and better SO2 antipoisoning ability. On the basis of the above analyses, possible Hg0 oxidation mechanisms of N-doped Co3O4 are provided.
  • The effects of N doping and halide doping on the activity of Co3O4 for the removal of elemental mercury have been studied, and the mechanisms are provided.
is part of this journal



Alternative Linked Data Documents: ODE     Content Formats:       RDF       ODATA       Microdata