Abstract

M-metal (Ca and Cu) doped Ca-Fe2O3 and Cu-Fe2O3 catalysts were synthesized using solvothermal method. The Ca-Fe2O3 and Cu-Fe2O3 catalysts were characterized by XRD, Raman spectroscopy, SEM, TEM and XPS spectroscopy. The catalytic performance of 6%Ca-Fe2O3 and 5%Cu-Fe2O3 catalysts for trichloroethylene (TCE) removal were improved by M-metal doping leading to TCE removal at 99.8% in 1 h, which were three folds greater than by simple a-Fe2O3 in the presence of persulfate (PS). Ca and Cu doping formed defective structure and created more oxygen vacancies thereby generating abundant active species during PS activation process. Further, the influence of catalysts’ dosage, oxidant dosage, solution pH, inorganic anions, and dissolved oxygen were evaluated. Complete removal of TCE was also obtained at weak alkaline pH condition. The greater specific surface area and the improved electrical conductivity was attributed to the huge generation of O2•– and 1O2 species which played major part in TCE removal. Scavenging tests and ESR spectroscopy confirmed the dominant role of O2•– and 1O2 in TCE degradation. The stability and viability of 6%Ca-Fe2O3 and 5%Cu-Fe2O3 catalysts were evaluated by repetition tests and in the presence of surfactants, TCE removal in real water matrix, and in the degradation of multi-pollutants.

Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call