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  • The main scientific aim of this work is research and investigation of the system based on synergistic effect of Advanced Oxidation Processes (AOPs) such as photocatalysis, plasma or UV light for decomposition of the organic chemical substances resistant to biodegradation detected in wastewater. In our paper, the synergistic effect of simultaneously applied photocatalytically active material and low temperature plasma or UV light on decomposition of model substances (Acid Orange 7, Verapamil hydrochloride) were studied. TiO2 deposited by various methods was used as the photoactive material. Model substances with photoactive TiO2 were exposed to atmospheric plasma discharge (Gliding Arc) or UV source in order to improve generation of active hydroxyl groups and oxidation processes. The relations between different effects of AOP during model substances decomposition process were analysed. It was observed that decomposition of model substances is strongly improved by synergistic effect of: (i) photocatalytic reaction occurring on photoactive TiO2 films, (ii) presence of oxidative radicals (e.g. ?OH, ozone), (iii) presence of UV in wide range.
  • The main scientific aim of this work is research and investigation of the system based on synergistic effect of Advanced Oxidation Processes (AOPs) such as photocatalysis, plasma or UV light for decomposition of the organic chemical substances resistant to biodegradation detected in wastewater. In our paper, the synergistic effect of simultaneously applied photocatalytically active material and low temperature plasma or UV light on decomposition of model substances (Acid Orange 7, Verapamil hydrochloride) were studied. TiO2 deposited by various methods was used as the photoactive material. Model substances with photoactive TiO2 were exposed to atmospheric plasma discharge (Gliding Arc) or UV source in order to improve generation of active hydroxyl groups and oxidation processes. The relations between different effects of AOP during model substances decomposition process were analysed. It was observed that decomposition of model substances is strongly improved by synergistic effect of: (i) photocatalytic reaction occurring on photoactive TiO2 films, (ii) presence of oxidative radicals (e.g. ?OH, ozone), (iii) presence of UV in wide range. (en)
Title
  • Oxidation Processes Enhanced by Plasma in Environmental Applications
  • Oxidation Processes Enhanced by Plasma in Environmental Applications (en)
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  • Oxidation Processes Enhanced by Plasma in Environmental Applications
  • Oxidation Processes Enhanced by Plasma in Environmental Applications (en)
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  • RIV/60076658:12220/13:43886366!RIV14-MSM-12220___
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  • P(EE2.3.30.0006), S
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  • 95082
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  • RIV/60076658:12220/13:43886366
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  • Advanced oxidation processes, Waste water treatment, Photocatalysis (en)
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  • [6EFDD07E73A5]
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  • PAPN 2013 Book of extended abstracts
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  • Horáková, Marta
  • Špatenka, Petr
  • Exnar, Petr
  • Balakrishnan, Syam Krishna
  • Olšan, Pavel
  • Šram, Vlastimil
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  • Technická univerzita v Liberci
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  • 978-80-7372-988-2
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  • 12220
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