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Formation and depression of N2O in selective reduction of NO by NH3 over Fe2O3-promoted V2O5-WO3/TiO2 catalysts: Roles of each constituent and strongly-adsorbed NH3 species Nguyen TPT, Kim MH, Yang KH Catalysis Today, 375, 565, 2021 |
2 |
Getting insight into the oxidation of SO2 to SO3 over V2O5-WO3/TiO2 catalysts: Reaction mechanism and effects of NO and NH3 Qing MX, Su S, Wang LL, Liu LJ, Xu K, He LM, Jun X, Hu S, Wang Y, Xiang J Chemical Engineering Journal, 361, 1215, 2019 |
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Urea Decomposition in Selective Catalytic Reduction on V2O5/WO3/TiO2 Catalyst in Diesel Exhaust Goldbach M, Roppertz A, Langenfeld P, Wackerhagen M, Fuger S, Kureti S Chemical Engineering & Technology, 40(11), 2035, 2017 |
4 |
NOx and N2O emissions over a Urea-SCR system containing both V2O5-WO3/TiO2 and Cu-zeolite catalysts in a diesel engine Jung Y, Shin YJ, Pyo YD, Cho CP, Jang J, Kim G Chemical Engineering Journal, 326, 853, 2017 |
5 |
금속염화물이 담지된 V2O5-WO3/TiO2 계 SCR 촉매에 의한 수은 및 NO 동시 제거 함성원 Clean Technology, 23(2), 172, 2017 |
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Design of a "high-efficiency" NH3-SCR reactor for stationary applications. A kinetic study of NH3 oxidation and NH3-SCR over V-based catalysts Usberti N, Jablonska M, Di Blasi M, Forzatti P, Lietti L, Beretta A Applied Catalysis B: Environmental, 179, 185, 2015 |
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Modeling of the SCR reactor for coal-fired power plants: Impact of NH3 inhibition on Hg-0 oxidation Beretta A, Usberti N, Lietti L, Forzatti P, Di Blasi M, Morandi A, La Marca C Chemical Engineering Journal, 257, 170, 2014 |
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Catalytic oxidation of hexachlorobenzene in simulated gas on V2O5-WO3/TiO2 catalyst Yang Y, Yu G, Deng SB, Wang SW, Xu ZZ, Huang J, Wang B Chemical Engineering Journal, 192, 284, 2012 |
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High-throughput study of the effects of inorganic additives and poisons on NH3-SCR catalysts Part I: V2O5-WO3/TiO2 catalysts Klimczak M, Kern P, Heinzelmann T, Lucas M, Claus P Applied Catalysis B: Environmental, 95(1-2), 39, 2010 |
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Wire-mesh honeycomb catalysts for selective catalytic reduction of NO with NH3 Yao J, Choi JS, Yang KS, Sun D, Chung JS Korean Journal of Chemical Engineering, 23(6), 888, 2006 |