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Synergetic effect in water treatment with mesoporous TiO 2 /BDD hybrid electrode.

Norihiro SuzukiAkihiro OkazakiHaruo KuriyamaIzumi SerizawaYuki HiramiAiga HaraYuiri HiranoYukihiro NakabayashiNitish RoyChiaki TerashimaKazuya NakataKen-Ichi KatsumataTakeshi KondoMakoto YuasaAkira Fujishima
Published in: RSC advances (2020)
Boron-doped diamond (BDD) electrodes have a wide potential window and can produce ozone by water electrolysis at high voltage. Though ozone has strong oxidative power (standard oxidation potential: 2.07 V vs. NHE), it cannot decompose certain types of recalcitrant organic matter completely. We developed an advanced oxidation process (AOP), in which hydroxy radicals with stronger oxidative power (standard oxidation potential: 2.85 V vs. NHE) are formed using a combination of ozone, photocatalyst, and UV. In this study, we fabricated a mesoporous TiO 2 /BDD hybrid electrode and examined its potential for AOPs. A synergetic effect between electrochemical water treatment and photocatalytic water treatment was observed with the hybrid electrode that did not occur with the BDD electrode.
Keyphrases
  • visible light
  • hydrogen peroxide
  • quantum dots
  • carbon nanotubes
  • highly efficient
  • organic matter
  • mass spectrometry
  • high resolution
  • smoking cessation