4.6 Article

New Sustainable Approach for the Production of Fe3O4/Graphene Oxide-Activated Persulfate System for Dye Removal in Real Wastewater

期刊

WATER
卷 12, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/w12030733

关键词

persulfate activation; dyes; wastewater treatment; Fe3O4; graphene

资金

  1. National Natural Science Foundation of China [21377039]
  2. University of Salerno
  3. FARBS projects
  4. Italian Ministry of Foreign Affairs and International Cooperation [IN17GR09/INT/Italy/P-17/2016 (SP), EG16MO01]
  5. Department of Science and Technology, Ministry of Science and Technology, Government of India [IN17GR09/INT/Italy/P-17/2016 (SP)]
  6. Italian Ministry of Environment [EG16MO01]

向作者/读者索取更多资源

Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention as a potential advanced and sustainable water purification system. Herein, a novel Fe3O4 impregnated graphene oxide (Fe3O4@GO)-activated persulfate system (Fe3O4@GO+K2S2O8) was synthesized by following a sustainable protocol and was tested on real wastewater containing dye pollutants. In the presence of the PS-activated system, the degradation efficiency of Rhodamine B (RhB) was significantly increased to a level of approximate to 95% compared with that of Fe3O4 (approximate to 25%). The influences of different operational parameters, including solution pH, persulfate dosage, and RhB concentration, were systemically evaluated. This system maintained its catalytic activity and durability with a negligible amount of iron leached during successive recirculation experiments. The degradation intermediates were further identified through reactive oxygen species (ROS) studies, where surface-bound SO4- was found to be dominant radical for RhB degradation. Moreover, the degradation mechanism of RhB in the Fe3O4@GO+K2S2O8 system was discussed. Finally, the results indicate that the persulfate-activated Fe3O4@GO catalyst provided an effective pathway for the degradation of dye pollutants in real wastewater treatment.

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