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Oddelenie environmentálnej fyziky - Prihlásený: veronika
Katedra astronómie, fyziky Zeme a meteorológie, FMFI UK, Bratislava,


Sliding discharge inside glass capillaries

Hensel K., Sato S., Mizuno A.
IEEE Trans. Plasma Sci. 36 (4), 1282-1283 (2008)

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Abstrakt:

Nowadays, the processes where the interaction between gas and liquid occurs are very popular in the chemical engineering technology. Prevalence of them in the industry makes even slight improving of parameters of work very desirable. Foaming system was introduced a long time ago as the way of increasing the efficacy. Presently, it can be one of options for cleaning the large amounts of the polluted exhaust gas because the heat and mass exchange is especially efficient in the
two-phase systems like a dynamic foam environment...


Citácie:

1.)V. T. Nguyen, D. B. Nguyen, Y. S. Mok, M. M. Hossain, S. Saud, K. H. Yoon, D. K. Dinh, S. Ryu, H. Jeon, S. B. Kim: Removal of ethyl acetate in air by using different types of corona discharges generated in a honeycomb monolith structure coated with Pd/γ-alumina, J. Hazard. Materials 416, 126162 (2021), citation no. 23, WoS
(2021)
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2.)V. T. Nguyen: Plasma Catalytic Hybrid Reactor System for Air Pollution Control, PhD Thesis, Jeju National University, Jeju (South Korea), citation no. 141 (2021)
(2021)
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3.)M. Hossain, Y. S. Mok, D. B. Nguyen, S.-J. Kim, Y. J. Kim, J. H. Lee, I. Heo: Nonthermal plasma in practical-scale honeycomb catalysts for the removal of toluene, J. Hazard. Materials X, xxx-xxx (2020) citation no. 36, WoS
(2020)
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4.)Q.-Z. Zhang, A. Bogaerts: Plasma streamer propagation in structured catalysts, Plasma Sources Sci. Technol. 27, 105013 (2018), citation no. 10, WoS/SCOPUS
(2018)
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5.)F. Feng, Y. Zheng, X. Shen, Q. Zheng, S. Dai, X. Zhang, Y. Huang, Z. Liu, K. Yan: Characteristics of back corona discharge in a honeycomb catalyst and its application for treatment of volatile organic compounds, Environ. Sci. Technol. 49, 6831-6837 (2015), citation no. 21, WoS/SCOPUS
(2015)
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6.)Y. Huang, S. Dai, F. Feng, X. Zhang, Z. Liu, K. Yan: Comparison study of toluene removal by two-stage DBD-catalyst systems loading with MnOx, CeMnOx, and CoMnOx, Environ. Sci. Pollutio Res 22, 19240-19250 (2015), citation Hensel, WoS/SCOPUS
(2015)
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7.)K. Graupner, J. Binner, N. Fox, C. P. Garner, J. E. Harry, D. Hoare, K. S. Ladha, A. Mason, A. M. Williams: Pulsed discharge regeneration of diesel particulate filter, Plasma Chem. Plasma Process. 32 (3), 467-477 (2013), citation no. 10, WoS/SCOPUS
(2013)
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8.)H. H. Kim, Y. Teramoto, N. Negishi, A. Ogata: Physicochemical characteristics of plasma-driven catalysis packed with metal nanoparticle-supported zeolites for VOC decomposition, 8th International Symposium on Non-thermal Plasma Technology for Pollution Control ISNTP-8, Camaret (France), June 25-28, USB (2012), citation no. 20
(2012)
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9.)H. H. Kim, A. Ogata: Interaction of nonthermal plasma with catalyst for the air pollution control, Int. J. Plasma Environ. Sci. Technol. 6 (1), 43-48 (2012), citation no. 20, SCOPUS
(2012)
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10.)H. H. Kim, A. Ogata: Nonthermal plasma activates catalyst: from current understanding and future prospects, Eur. Phys. J. Appl. Phys. 55, 13806 (2011), citation no. 56, WoS/SCOPUS
(2011)
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11.)H. H. Kim, A. Ogata: Nonthermal plasma activates catalyst: from current understanding and future prospects, 12th International Symposium on High Pressure Low Temperature Plasma Chemistry HAKONE XII, Trenčianske Teplice (Slovakia), September 12-17, 43-55 (2010), citation no. 39
(2010)
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Prihlásený(á): veronika

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