Technological Prospecting for the use of Electrodes Containing Iron its Composition for the Reduction of Organic Loads in Water and Effluent Treatment

Authors

  • Nathalia Marcelino Pereira-Queiroz Federal University of Alagoas, Maceió, AL, Brazil. http://orcid.org/0000-0003-2040-1410
  • Flaviana Freitas Feitosa Ferro Federal University of Alagoas, Maceió, AL, Brazil.
  • Nikson Iohannes Silva de Almeida Federal University of Alagoas, Maceió, AL, Brazil.
  • Juscyllan Santana Queiroz Federal University of Alagoas, Maceió, AL, Brazil.
  • Ana Lais de Araujo Costa Federal University of Alagoas, Maceió, AL, Brazil.
  • Carmem Lucia de Paiva e Silva Zanta Federal University of Alagoas, Maceió, AL, Brazil. https://orcid.org/0000-0003-4310-948X
  • Josealdo Tonholo Federal University of Alagoas, Maceió, AL, Brazil. http://orcid.org/0000-0002-4015-9564

DOI:

https://doi.org/10.9771/cp.v11i2.23427

Keywords:

Electrodes , Effluents , Patents.

Abstract

The electrochemistry technology has been pointed as promising to the treatment of wastewater due to its high oxidation power, relatively low cost, and easy operation. The material of the electrodes used is crucial to the good performance of this treatment method. Aiming to map the scientific and technological prospects about the use of electrodes containing iron immobilized or in its composition to the oxidation of organic charges, it was performed review and research of scientific papers and patents from national and international databases. Despite it was revealed a dense scientific production related to this technology, with total of 438 articles, there are few technological products registered, summing 88 patents. It was also observed that the countries that holds patent deposits in this field were China, Germany and United Kingdom. This data shows that there is an opportunity of investment in research and development to generate innovation in this field.

Downloads

Download data is not yet available.

References

BADRAYYANA, S. et al. Novel Fe-Ni-Graphene composite electrode for hydrogen production. International Journal of Hydrogen Energy, [S.l.], v. 40, p.10453–10462, 2015.

BORBÓN, B. et al. I. Electrochemical advanced oxidation processes for removal of toxic/persistent organic pollutants from water. Environmental Science and Pollution Research, [S.l.], v. 21, p. 8573–8584, 2014.

CHEN, F. et al. Q. Preparation and characterization of PbO2 electrode and its application in electro-catalytic degradation of o-aminophenol in aqueous solution assisted by CuO-Ce2O3/ɣ-Al2O3 catalyst. Journal of Hazardous Materials, [S.l.], v. 260, p.747–753, 2013.

ESPACENET. Patent seartch [Base de dados – Internet]. European Patent Office. 2017. Disponível em: . Acesso em: 20 jun. 2017.

INSTITUTO NACIONAL DE PROPRIEDADE INTELECTUAL (INPI) [Base de dados –Internet]. 2017. Disponível em: . Acesso em: 9 jul. 2017.

KUMAR, S.; SINGH, S.; SRIVASTAVA, V. C. Electro-oxidation of nitrophenol by ruthenium oxide coated titanium electrode: Parametric, kinetic and mechanistic study. Chemical Engineering Journal, [S.l.], v. 263, p. 135–143, 2015.

MARSHALL, A. T.; HAVERKAMP, R. G. Nanoparticles of IrO2or Sb-SnO2 increase the performance of iridium oxide DSA electrodes. Journal of Materials Science, [S.l.], v. 47, p. 1135–1141, 2012.

PIPI, A. R. F.; AQUINO NETO, S.; ANDRADE, A. R. Degradação eletroquímica de diuron em meio de cloreto usando anodos baseados em DSA®. Journal of the Brazilian Chemical Society, [S.l.], v. 24, 2013.

RAMALHO, A. M. Z.; MARTÍNEZ-HUITKE, C. A.; SILVA, D. R. Fuel, [S.l.], v. 89, p. 531–534, 2010.

SCIALDONE, O. et al. G. Electrochemical oxidation of organics at metal oxide electrodes: The incineration of oxalic acid at IrO2 – Ta2O5 (DSA – O2) anode. Electrochimica Acta, [S.l.], v. 54, p. 1210–1217, 2009.

SCOPUS [Base de dados – Internet]. 2017. Disponível em: . Acesso em: 9 out. 2017.

SIELO [Base de dados – Internet]. 2017. Disponível em: . Acesso em: 9 jul. 2017.

TURRO, E. et al. Electrochemical oxidation of stabilized landfill leachate on DAS electrodes. Journal of Hazardous Materials, [S.l.], v. 190, p. 460–465, 2011.

Published

2018-09-30

How to Cite

Pereira-Queiroz, N. M., Ferro, F. F. F., Almeida, N. I. S. de, Queiroz, J. S., Costa, A. L. de A., Zanta, C. L. de P. e S., & Tonholo, J. (2018). Technological Prospecting for the use of Electrodes Containing Iron its Composition for the Reduction of Organic Loads in Water and Effluent Treatment. Cadernos De Prospecção, 11(2), 664. https://doi.org/10.9771/cp.v11i2.23427

Issue

Section

Prospecções Tecnológicas de Assuntos Específicos