4.5 Article

Enhanced degradation of methylene blue by a solution plasma process catalyzed by incidentally co-generated copper nanoparticles

Journal

WATER SCIENCE AND TECHNOLOGY
Volume 79, Issue 5, Pages 967-974

Publisher

IWA PUBLISHING
DOI: 10.2166/wst.2019.035

Keywords

catalytic degradation; copper nanoparticles; methylene blue; solution plasma

Funding

  1. EcoTopia Science Institute
  2. Technology and Department of Materials Engineering, Nagoya University
  3. Thailand Research Fund (TRF) [TRG5880028]
  4. Office of Higher Education Commission (OHEC)
  5. S& T Postgraduate Education and Research Development Office (PERDO)

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This study presents a catalytic organic pollution treatment using the solution plasma process (SPP) with incidentally co-generated copper (Cu) nanoparticles via Cu electrode erosion. Methylene blue (MB) was used as a model organic contaminant. The treatment time was from 0 to 60 minutes at the plasma frequencies of 15 and 30 kHz. The treatment efficacy using the Cu electrode was compared with that of the tungsten (W) electrode. The high erosion-resistant W electrode provided no W nanoparticles, while the low erosion-resistant Cu electrode yielded incidental nanoparticles (10-20 nm), hypothesized to catalyze the MB degradation during the SPP. The percentage of MB degradation and the hydrogen peroxide (H2O2) generation were determined by an ultraviolet-visible spectrophotometer. The results showed that, after the SPP by the Cu electrode for 60 minutes, the MB was degraded up to 96%. Using the Cu electrode at a high plasma frequency strongly accelerated the Cu nanoparticle generation and MB treatment, although the amount of H2O2 generated during the SPP using the Cu electrode was less than that of the W electrode. The Cu nanoparticles were hypothesized to enhance MB degradation via both homogeneous (release of dissolved Cu ions) and heterogeneous (on the surface of the particles) catalytic processes.

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