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[해외논문] Efficient Degradation of Styrene in a Nonthermal Plasma-Catalytic System Over Pd/ZSM-5 Catalyst

Plasma chemistry and plasma processing, v.40 no.5, 2020년, pp.1207 - 1220  

Nguyen, Van Toan ,  Nguyen, Duc Ba ,  Heo, Iljeong ,  Mok, Young Sun

초록이 없습니다.

참고문헌 (37)

  1. J Hazard Mater Z Wang 392 122258 2020 10.1016/j.jhazmat.2020.122258 Wang Z, Yang H, Liu R et al (2020) Probing toluene catalytic removal mechanism over supported Pt nano- and single-atom-catalyst. J Hazard Mater 392:122258 

  2. Catalysts S Veerapandian 7 113 2017 10.3390/catal7040113 Veerapandian S, Leys C, De Geyter N, Morent R (2017) Abatement of VOCs using packed bed non-thermal plasma reactors: a review. Catalysts 7:113 

  3. Front Environ Sci Eng W Lu 13 30 2019 10.1007/s11783-019-1108-5 Lu W, Abbas Y, Mustafa MF et al (2019) A review on application of dielectric barrier discharge plasma technology on the abatement of volatile organic compounds. Front Environ Sci Eng 13:30 

  4. Ecotoxicol Environ Safe BF Gibbs 38 181 1997 10.1006/eesa.1997.1526 Gibbs BF, Mulligan CN (1997) Styrene toxicity: an ecotoxicological assessment. Ecotoxicol Environ Safe 38:181-194 

  5. Chem Eng J H Zhang 241 92 2014 10.1016/j.cej.2013.12.019 Zhang H, Li K, Sun T et al (2014) Removal of styrene using dielectric barrier discharge plasmas combined with sol-gel prepared TiO2 coated γ-Al2O3. Chem Eng J 241:92-102 

  6. Chem Eng J H Zhang 343 759 2018 10.1016/j.cej.2018.03.057 Zhang H, Li K, Li L et al (2018) High efficient styrene mineralization through novel NiO-TiO2-Al2O3 packed pre-treatment/treatment/post-treatment dielectric barrier discharge plasma. Chem Eng J 343:759-769 

  7. J Hazard Mater J Zhong 386 121957 2020 10.1016/j.jhazmat.2019.121957 Zhong J, Zeng Y, Chen D et al (2020) Toluene oxidation over Co3+-rich spinel Co3O4: evaluation of chemical and by-product species identified by in situ DRIFTS combined with PTR-TOF-MS. J Hazard Mater 386:121957 

  8. Eurasian Chem J YV Ostrovsky 4 31 2017 10.18321/ectj515 Ostrovsky YV, Zabortsev GM, Shpak AA et al (2017) Catalytic oxidation of volatile organic compounds in industrial off-gases. Eurasian Chem J 4:31 

  9. Energy Fuels B Boulinguiez 24 4756 2010 10.1021/ef901346f Boulinguiez B, Le Cloirec P (2010) Adsorption on activated carbons of five selected volatile organic compounds present in biogas: comparison of granular and fiber cloth materials. Energy Fuels 24:4756-4765 

  10. Chem Eng J X Wang 159 1 2010 10.1016/j.cej.2010.02.006 Wang X, Jia X, Wen J (2010) Transient modeling of toluene waste gas biotreatment in a gas-liquid airlift loop reactor. Chem Eng J 159:1-10 

  11. Plasma Chem Plasma Proc G Xiao 34 1033 2014 10.1007/s11090-014-9562-0 Xiao G, Xu W, Wu R et al (2014) Non-thermal plasmas for VOCs abatement. Plasma Chem Plasma Proc 34:1033-1065 

  12. Water Air Soil Pollut M Schiavon 228 388 2017 10.1007/s11270-017-3574-3 Schiavon M, Torretta V, Casazza A, Ragazzi M (2017) Non-thermal plasma as an innovative option for the abatement of volatile organic compounds: a review. Water Air Soil Pollut 228:388 

  13. Ind Eng Chem Res Q Tang 50 9839 2011 10.1021/ie200039w Tang Q, Jiang W, Cheng Y et al (2011) Generation of reactive species by gas-phase dielectric barrier discharges. Ind Eng Chem Res 50:9839-9846 

  14. Acta Phys Slovaca S Pekárek 56 109 2006 Pekárek S, Khun J (2006) Non-thermal plasma at atmospheric pressure for ozone generation and volatile organic compounds decomposition. Acta Phys Slovaca 56:109-113 

  15. Appl Catal B Environ M Magureanu 74 270 2007 10.1016/j.apcatb.2007.02.019 Magureanu M, Mandache NB, Parvulescu VI et al (2007) Improved performance of non-thermal plasma reactor during decomposition of trichloroethylene: optimization of the reactor geometry and introduction of catalytic electrode. Appl Catal B Environ 74:270-277 

  16. Catal Today W Mista 137 345 2008 10.1016/j.cattod.2008.02.009 Mista W, Kacprzyk R (2008) Decomposition of toluene using non-thermal plasma reactor at room temperature. Catal Today 137:345-349 

  17. Chem Eng J X Zhang 232 527 2013 10.1016/j.cej.2013.08.009 Zhang X, Feng F, Li S et al (2013) Aerosol formation from styrene removal with an AC/DC streamer corona plasma system in air. Chem Eng J 232:527-533 

  18. J Hazard Mater AM Vandenbroucke 195 30 2011 10.1016/j.jhazmat.2011.08.060 Vandenbroucke AM, Morent R, De Geyter N, Leys C (2011) Non-thermal plasmas for non-catalytic and catalytic VOC abatement. J Hazard Mater 195:30-54 

  19. Chem Eng J R Zhu 279 463 2015 10.1016/j.cej.2015.05.043 Zhu R, Mao Y, Jiang L, Chen J (2015) Performance of chlorobenzene removal in a nonthermal plasma catalysis reactor and evaluation of its byproducts. Chem Eng J 279:463-471 

  20. Sci Rep J Zhang 5 1 2015 Zhang J, Li Y, Zhang Y et al (2015) Effect of support on the activity of Ag-based catalysts for formaldehyde oxidation. Sci Rep 5:1-10 

  21. Catalysts KPS Veerapandian 9 98 2019 10.3390/catal9010098 Veerapandian KPS, De Geyter N, Giraudon J-M et al (2019) The use of zeolites for VOCs abatement by combining non-thermal plasma, adsorption, and/or catalysis: a review. Catalysts 9:98 

  22. Green Chem CMAS Freitas 17 4247 2015 10.1039/C5GC00777A Freitas CMAS, Soares OSGP, Órfão JJM et al (2015) Highly efficient reduction of bromate to bromide over mono and bimetallic ZSM5 catalysts. Green Chem 17:4247-4254 

  23. J Adv Oxid Technol KLL Vercammen 2 312 2017 Vercammen KLL, Berezin AA, Lox F, Chang J-S (2017) Non-thermal plasma techniques for the reduction of volatile organic compounds in air streams: a critical review. J Adv Oxid Technol 2:312-329 

  24. Pure Appl Chem CJ Liu 78 1227 2006 10.1351/pac200678061227 Liu CJ, Zou J, Yu K et al (2006) Plasma application for more environmentally friendly catalyst preparation. Pure Appl Chem 78:1227-1238 

  25. Res Chem Intermed MS Gandhi 40 1483 2014 10.1007/s11164-013-1053-z Gandhi MS, Ananth A, Mok YS et al (2014) Effect of porosity of α-alumina on non-thermal plasma decomposition of ethylene in a dielectric-packed bed reactor. Res Chem Intermed 40:1483-1493 

  26. Plasma Chem Plasma Process Z Bo 27 546 2007 10.1007/s11090-007-9081-3 Bo Z, Yan JH, Li XD et al (2007) Effects of oxygen and water vapor on volatile organic compounds decomposition using gliding arc gas discharge. Plasma Chem Plasma Process 27:546-558 

  27. Ind Eng Chem Res HL Chen 47 2122 2008 10.1021/ie071411s Chen HL, Lee HM, Chen SH, Chang MB (2008) Review of packed-bed plasma reactor for ozone generation and air pollution control. Ind Eng Chem Res 47:2122-2130 

  28. Catal Commun K Sekiguchi 4 247 2003 10.1016/S1566-7367(03)00047-5 Sekiguchi K, Sanada A, Sakamoto K (2003) Degradation of toluene with an ozone-decomposition catalyst in the presence of ozone, and the combined effect of TiO2 addition. Catal Commun 4:247-252 

  29. Appl Catal A Gen P Konova 298 109 2006 10.1016/j.apcata.2005.09.027 Konova P, Stoyanova M, Naydenov A et al (2006) Catalytic oxidation of VOCs and CO by ozone over alumina supported cobalt oxide. Appl Catal A Gen 298:109-114 

  30. Int J Environ Sci Technol T Zhu 5 375 2008 10.1007/BF03326032 Zhu T, Li J, Jin Y et al (2008) Decomposition of benzene by non-thermal plasma processing: photocatalyst and ozone effect. Int J Environ Sci Technol 5:375-384 

  31. IEEE Trans Plasma Sci V Demidiouk 33 157 2005 10.1109/TPS.2004.841621 Demidiouk V, Chae JO (2005) Decomposition of volatile organic compounds in plasma-catalytic system. IEEE Trans Plasma Sci 33:157-161 

  32. Environ Sci Technol N Jiang 47 9898 2013 10.1021/es401110h Jiang N, Lu N, Shang K et al (2013) Innovative approach for benzene degradation using hybrid surface/packed-bed discharge plasmas. Environ Sci Technol 47:9898-9903 

  33. IEEE Trans Ind Appl H Kohno 34 953 1998 10.1109/28.720435 Kohno H, Berezin AA, Chang JS (1998) Destruction of volatile organic compounds used in a semiconductor industry by a capillary tube discharge reactor. IEEE Trans Ind Appl 34:953-966 

  34. Der Pharma Chem MR Mas Haris 2 316 2010 Mas Haris MR, Kathiresan S, Mohan S (2010) FT-IR and FT-Raman spectra and normal coordinate analysis of poly methyl methacrylate. Der Pharma Chem 2:316-323 

  35. AAPS J MT Islam 6 4 2004 10.1208/aapsj060435 Islam MT, Rodríguez-Hornedo N, Ciotti S, Ackermann C (2004) Fourier transform infrared spectroscopy for the analysis of neutralizer-carbomer and surfactant-carbomer interactions in aqueous, hydroalcoholic and anhydrous gel formulations. AAPS J 6:4-10 

  36. Atmos Environ J Mo 43 2229 2009 10.1016/j.atmosenv.2009.01.034 Mo J, Zhang Y, Xu Q et al (2009) Photocatalytic purification of volatile organic compounds in indoor air: a literature review. Atmos Environ 43:2229-2246 

  37. Appl Catal A Gen A Ogata 236 9 2002 10.1016/S0926-860X(02)00280-6 Ogata A, Ito D, Mizuno K et al (2002) Effect of coexisting components on aromatic decomposition in a packed-bed plasma reactor. Appl Catal A Gen 236:9-15 

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