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Synergistic effects of advanced oxidization reactions in a combination of TiO2 photocatalysis for hydrogen production and wastewater treatment applications

  • M. E. Demir*
  • , G. Chehade
  • , I. Dincer
  • , B. Yuzer
  • , H. Selcuk
  • *Bu çalışma için yazışmadan sorumlu yazar
  • Ontario Tech University
  • Yildiz Technical University
  • Istanbul University - Cerrahpaşa

Araştırma sonucu: Dergiye katkıMakalebilirkişi

46 Atıf (Scopus)

Özet

In this paper, the synergistic effects of advanced oxidization reactions in a combination of TiO2 photocatalysis are comparatively investigated for hydrogen production and wastewater treatment applications. An experimental study is conducted with a photoelectrochemical reactor under a UV-light source. TiO2 is selected as the photocatalyst due to the high corrosion resistant nature and ability to form hydroxyl radicals with the interaction with photons. The synergetic effects of advanced oxidization processes (AOPs) such as Fenton, Fenton-like, photocatalysis (TiO2/UV) and UV photolysis (H2O2/UV) are investigated individually and in a combination of each other. The Fenton type reagent in the reactor is formed by anodic sacrificial of stainless-steel electrode with the presence of H2O2. The influences of various parameters, including pH level, type of the electrode and electrolyte and the UV light, on the performance of the combined system are also investigated experimentally. The highest chemical oxygen demand (COD) removal efficiency is observed as 97.9% for the experimental condition which combines UV/TiO2, UV/H2O2 and photo-electro Fenton type processes. The maximum hydrogen production rate from the photoelectrolysis of wastewater is obtained as 7.0 mg/Wh for the experimental condition which has the highest rate of photo-electro Fenton type processes. The average enhancement with the presence of UV light on hydrogen production rates and COD removal efficiencies are further calculated to be 3% and 20%, respectively.

Orijinal dilİngilizce
Sayfa (başlangıç-bitiş)23856-23867
Sayfa sayısı12
DergiInternational Journal of Hydrogen Energy
Hacim44
Basın numarası43
DOI'lar
Yayın durumuYayınlandı - 6 Eyl 2019
Harici olarak yayınlandıEvet

Bibliyografik not

Publisher Copyright:
© 2019 Hydrogen Energy Publications LLC

Finansman

“The authors would like to thank the European Union and Natural Sciences and Engineering Research Council of Canada . ( NSERC ) for funding, in the frame of the collaborative international Consortium ECOSAFEFARMING financed under the ERA-NET WaterWorks2015 Cofunded Call. This ERA-NET is an integral part of the 2016 Joint Activities developed by the Water Challenges for a Changing World Joint Programme Initiative (Water JPI).”

Finansörler
Natural Sciences and Engineering Research Council of Canada

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