2,076
Views
104
CrossRef citations to date
0
Altmetric
Original Articles

Deactivation of the Vanadia Catalyst in the Selective Catalytic Reduction Process

, , &
Pages 1403-1409 | Received 15 Feb 1990, Accepted 06 Apr 1990, Published online: 06 Mar 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Ann-Charlotte Larsson, Jessica Einvall & Mehri Sanati. (2007) Deactivation of SCR Catalysts by Exposure to Aerosol Particles of Potassium and Zinc Salts. Aerosol Science and Technology 41:4, pages 369-379.
Read now
S.R. Ness & D.K. Ludlow. (1995) Bench-Scale System Design to Screen Catalyst-Coated Fabric Filters for Simultaneous NoX and Particulate Control. Instrumentation Science & Technology 23:3, pages 181-189.
Read now

Articles from other publishers (102)

Guomeng Zhang, Ye Jiang, Qingyi Li, Yichao Xu, Congcong Su, Hongwei Ge, Xiao Dou & Zhengda Yang. (2023) Mechanism study of Na poisoning on Ce/TiO2(001) surface based on adsorption of reaction species and elementary reaction pathways. Molecular Catalysis 548, pages 113446.
Crossref
William Gundtorp, Thomas Klint Torp & Anker Degn Jensen. (2023) A review and comparison of the reaction kinetics of the catalytic oxidation of PCDD/Fs and model compounds. Journal of Environmental Chemical Engineering 11:3, pages 110223.
Crossref
Emil O. Lidman Olsson, Peter Glarborg, Kim Dam-Johansen & Hao Wu. (2023) Review of Phosphorus Chemistry in the Thermal Conversion of Biomass: Progress and Perspectives. Energy & Fuels 37:10, pages 6907-6998.
Crossref
M. Sunil Kumar, M.S. Alphin, P. Senthil Kumar & S. Raja. (2023) A review on zeolite catalyst for deNOx performance in ammonia–selective catalytic reduction. Fuel 334, pages 126828.
Crossref
Yang-wen Wu, Xin-yue Zhou, Jia-le Zhou, Zhuang Hu, Qi Cai & Qiang Lu. (2023) A comprehensive review of the heavy metal issues regarding commercial vanadium‑titanium-based SCR catalyst. Science of The Total Environment 857, pages 159712.
Crossref
Jie Yu, Lei Qiu, Yimeng Yin, Xing Li, Haohui Chen, Chizhong Wang & Huazhen Chang. (2022) Poisoning Effects of Chlorine on V2O5–WO3/TiO2 Catalysts for Selective Catalytic Reduction of NOx by NH3. Catalysis Surveys from Asia.
Crossref
Matthew S. Christian, Tina M. Nenoff & Jessica M. Rimsza. (2022) Discovery of Complex Binding and Reaction Mechanisms from Ternary Gases in Rare Earth Metal–Organic Frameworks. Chemistry – A European Journal 28:58.
Crossref
Chenglong Li, Zhitao Han, Xinxin Wang, Yu Gao, Zhen Wang & Xinxiang Pan. (2022) The promoting effect of support pretreatment with sulfate acid on the Ca resistance of a CeO 2 /ZrO 2 catalyst for NH 3 -SCR of NO x with NH 3 . New Journal of Chemistry 46:39, pages 18732-18743.
Crossref
Xue Bian, Kaikai Lv, Ming Cai, Peng Cen & Wenyuan Wu. (2022) Effects of Flue Gas Impurities on the Performance of Rare Earth Denitration Catalysts. Catalysts 12:8, pages 808.
Crossref
Tianyu Liu, Ye Jiang, Zhengda Yang, Riyi Lin, Xinwei Wang & Xinbo Zhu. (2022) Insight into the influence of K on the adsorption performance and reaction pathways of CeO2/TiO2 catalyst. Fuel 312, pages 122813.
Crossref
Yang-wen Wu, Xin-yue Zhou, Qi Cai, Zhuang Hu, Teng-ge Mi, Bing Zhang, Li Zhao & Qiang Lu. (2022) Intrinsic mechanism insight of the interaction between lead species and the Vanadium-based catalysts based on First-principles investigation. Journal of Colloid and Interface Science 607, pages 1362-1372.
Crossref
Yi Xiao, Xiaohan Ren & Juan Chen. (2022) Effect of Magnesium Additives on Phosphorous Recovery during Sewage Sludge Combustion and Further Improvement of Bioavailable Phosphorous. Energies 15:3, pages 909.
Crossref
Ke Zhao, Xin Sun, Chi Wang, Xin Song, Fei Wang, Kai Li & Ping Ning. (2021) Supported catalysts for simultaneous removal of SO2, NOx, and Hg0 from industrial exhaust gases: A review. Chinese Chemical Letters 32:10, pages 2963-2974.
Crossref
Ye Jiang, Lin Yang, Da Han, Zhengda Yang, Congcong Su, Riyi Lin, Xinwei Wang & Xinbo Zhu. (2021) The enhanced Pb resistance of CeO2/TiO2 catalyst for selective catalytic reduction of NO with NH3 by the modification with W. Molecular Catalysis 514, pages 111839.
Crossref
Ye Jiang, Tianyu Liu, Chengzhen Lai, Zhengda Yang, Riyi Lin, Xinwei Wang & Xinbo Zhu. (2021) Deactivation of CeO2-TiO2 catalyst by K2SO4 for NH3-SCR: An experimental and DFT study. Applied Surface Science 547, pages 149196.
Crossref
Lei Deng, Zhengrong Zhu, Yikun Wang, Shihao Ma, Yan Zhang, Tao Zhang, Zhun Hu & Defu Che. (2021) Deactivation Influence of HF on the V 2 O 5 –WO 3 –TiO 2 SCR Catalyst . Energy & Fuels 35:5, pages 4377-4386.
Crossref
Luciana Lisi & Stefano Cimino. (2020) Poisoning of SCR Catalysts by Alkali and Alkaline Earth Metals. Catalysts 10:12, pages 1475.
Crossref
S. Raja, M. S. Alphin & L. Sivachandiran. (2020) Promotional effects of modified TiO 2 - and carbon-supported V 2 O 5 - and MnO x -based catalysts for the selective catalytic reduction of NO x : a review . Catalysis Science & Technology 10:23, pages 7795-7813.
Crossref
Qinghua Yan, Xiangting Hou, Guocheng Liu, Yuran Li, Tingyu Zhu, Yanjun Xin & Qiang Wang. (2020) Recent advances in layered double hydroxides (LDHs) derived catalysts for selective catalytic reduction of NOx with NH3. Journal of Hazardous Materials 400, pages 123260.
Crossref
Handan Zhang, Ming Kong, Zelong Cai, Qingcai Liu, Jingsong Zeng, Minghua Duan, Jian Yang, Shan Ren & Jiangling Li. (2020) Comparative Studies of Effects of Vapor- and Liquid-Phase As 2 O 3 on Catalytic Behaviors of V 2 O 5 –WO 3 /TiO 2 Catalysts for NH 3 -SCR . ACS Omega 5:38, pages 24195-24203.
Crossref
Qiulin Wang, Feng Lin, Jianjian Zhou, Jianchao Zhang & Jing Jin. (2020) Effect of HCl and o-DCBz on NH3-SCR of NO over MnO /TiO2 and MnO -CeO2/TiO2 catalysts. Applied Catalysis A: General 605, pages 117801.
Crossref
Agnieszka Szymaszek, Bogdan Samojeden & Monika Motak. (2020) The Deactivation of Industrial SCR Catalysts—A Short Review. Energies 13:15, pages 3870.
Crossref
Yingju Yang, Jing Liu & Zhen Wang. (2020) Reaction mechanisms and chemical kinetics of mercury transformation during coal combustion. Progress in Energy and Combustion Science 79, pages 100844.
Crossref
Ye Jiang, Lin Yang, Guitao Liang, Shaojun Liu, Wenqian Gao, Zhengda Yang, Xinwei Wang, Riyi Lin & Xinbo Zhu. (2020) The poisoning effect of PbO on CeO2-MoO3/TiO2 catalyst for selective catalytic reduction of NO with NH3. Molecular Catalysis 486, pages 110877.
Crossref
Ziwei Zhao, Erwei Li, Yu Qin, Xiaolong Liu, Yang Zou, Heng Wu & Tingyu Zhu. (2020) Density functional theory (DFT) studies of vanadium-titanium based selective catalytic reduction (SCR) catalysts. Journal of Environmental Sciences 90, pages 119-137.
Crossref
Jifa Miao, Xianfang Yi, Qingfa Su, Huirong Li, Jinsheng Chen & Jinxiu Wang. (2020) Poisoning Effects of Phosphorus, Potassium and Lead on V2O5-WO3/TiO2 Catalysts for Selective Catalytic Reduction with NH3. Catalysts 10:3, pages 345.
Crossref
Francesco Ferella. (2020) A review on management and recycling of spent selective catalytic reduction catalysts. Journal of Cleaner Production 246, pages 118990.
Crossref
Thomas Rammelt, Agnieszka-Beata Kuc, Jürgen Böhm, Thomas Heine & Roger Gläser. (2019) Nature and Surface Interactions of Sulfur-Containing Deposits on V2O5-WO3/TiO2 Catalysts for SCR-DeNOx. Emission Control Science and Technology 5:4, pages 297-306.
Crossref
C. U. Ingemar Odenbrand. (2019) Penetration of Poisons Along the Monolith Length of a V2O5/TiO2 Diesel SCR Catalyst and Its Effect on Activity. Catalysis Letters 149:12, pages 3476-3490.
Crossref
Lin Li, Lin Chen, Ming Kong, Qingcai Liu & Shan Ren. (2019) New insights into the deactivation mechanism of V 2 O 5 -WO 3 /TiO 2 catalyst during selective catalytic reduction of NO with NH 3 : synergies between arsenic and potassium species . RSC Advances 9:65, pages 37724-37732.
Crossref
Jinyao Xiang, Xuesen Du, Yuyi Wan, Yanrong Chen, Jingyu Ran & Li Zhang. (2019) Alkali-driven active site shift of fast SCR with NH 3 on V 2 O 5 –WO 3 /TiO 2 catalyst via a novel Eley–Rideal mechanism . Catalysis Science & Technology 9:21, pages 6085-6091.
Crossref
Yibo Cao, Fang Han, Meixin Wang, Lina Han, Changming Zhang, Jiancheng Wang, Weiren Bao & Liping Chang. (2019) Regeneration of the Waste Selective Catalytic Reduction Denitrification Catalyst by Nitric Acid Washing. ACS Omega 4:15, pages 16629-16637.
Crossref
Xiaohui Fan, Jiawen Yao, Min Gan, Wei Lv, Zhiyun Ji, Xuling Chen, Guojing Wong & Qingyu Tang. (2019) Influences of fine-grained NaCl particles on performance and denitration efficiency of activated carbon during sintering flue gas purification process. Environmental Science and Pollution Research 26:29, pages 29660-29668.
Crossref
Daojun Zhang, Chunjie Wang, Qingya Liu, Zhenyu Liu, Tingyu Lei & Baodong Wang. (2019) The combined effects of alkaline-earth metal, SO2 and CO2 on the selective catalytic reduction of NO by NH3 over V2O5-WO3/TiO2 catalyst. Environmental Technology & Innovation 14, pages 100331.
Crossref
Jifa Miao, Huirong Li, Qingfa Su, Yanke Yu, Yanting Chen, Jinsheng Chen & Jinxiu Wang. (2019) The combined promotive effect of SO2 and HCl on Pb-poisoned commercial NH3-SCR V2O5-WO3/TiO2 catalysts. Catalysis Communications 125, pages 118-122.
Crossref
De Fang, Feng He & Junlin Xie. (2019) Characterization and performance of common alkali metals and alkaline earth metals loaded Mn/TiO2 catalysts for NOx removal with NH3. Journal of the Energy Institute 92:2, pages 319-331.
Crossref
Haiping Xiao, Chaozong Dou, Hao Shi, Jinlin Ge & Li Cai. (2018) Influence of Sulfur-Containing Sodium Salt Poisoned V2O5–WO3/TiO2 Catalysts on SO2–SO3 Conversion and NO Removal. Catalysts 8:11, pages 541.
Crossref
Ye Jiang, Guitao Liang, Changzhong Bao, Mingyuan Lu, Chengzhen Lai & Weiyun Shi. (2018) The poisoning effect of PbO and PbCl2 on CeO2-TiO2 catalyst for selective catalytic reduction of NO with NH3. Journal of Colloid and Interface Science 528, pages 82-91.
Crossref
C.U. Ingemar Odenbrand. (2018) CaSO4 deactivated V2O5-WO3/TiO2 SCR catalyst for a diesel power plant. Characterization and simulation of the kinetics of the SCR reactions. Applied Catalysis B: Environmental 234, pages 365-377.
Crossref
Zulfiqar Ali, Qiang lu, Tahir Iqbal, Sajida Riffat Laraib, Zulqarnain Arain, Manoj Kumar Panjwani, M. Usman Tahir & Asif Muhammad. (2018) Poisoning Effects of P and Zn on Commercial NH 3- SCR V 2 O 5 -MoO 3 /TiO 2 Catalyst . Poisoning Effects of P and Zn on Commercial NH 3- SCR V 2 O 5 -MoO 3 /TiO 2 Catalyst .
Chuanmin Chen, Yue Cao, Songtao Liu, Jianmeng Chen & Wenbo Jia. (2018) Review on the latest developments in modified vanadium-titanium-based SCR catalysts. Chinese Journal of Catalysis 39:8, pages 1347-1365.
Crossref
Hongyan Xue, Xiaoming Guo, Shengdong Wang, Chao Sun, Jun Yu & Dongsen Mao. (2018) Poisoning effect of CaO on Cu/ZSM-5 for the selective catalytic reduction of NO with NH3. Catalysis Communications 112, pages 53-57.
Crossref
Ye Jiang, Mingyuan Lu, Shaojun Liu, Changzhong Bao, Guitao Liang, Chengzhen Lai, Weiyun Shi & Shiyuan Ma. (2018) Deactivation by HCl of CeO 2 –MoO 3 /TiO 2 catalyst for selective catalytic reduction of NO with NH 3 . RSC Advances 8:32, pages 17677-17684.
Crossref
Jan G. M. Brandin & C. U. Ingemar Odenbrand. (2017) Deactivation and Characterization of SCR Catalysts Used in Municipal Waste Incineration Applications. Catalysis Letters 148:1, pages 312-327.
Crossref
Fumei Wang, Boxiong Shen, Lanjun Gao & Jiancheng Yang. (2017) Simultaneous removal of NO and Hg0 from oxy-fuel combustion flue gas over CeO2-modified low-V2O5-based catalysts. Fuel Processing Technology 168, pages 131-139.
Crossref
Lei Deng, Xuan Liu, Peiqing Cao, Yonggang Zhao, Yongbo Du, Chang'an Wang & Defu Che. (2017) A study on deactivation of V 2 O 5 WO 3 TiO 2 SCR catalyst by alkali metals during entrained-flow combustion. Journal of the Energy Institute 90:5, pages 743-751.
Crossref
Wenshuo Hu, Yuhong Zhang, Shaojun Liu, Chenghang Zheng, Xiang Gao, Isabella Nova & Enrico Tronconi. (2017) Improvement in activity and alkali resistance of a novel V-Ce(SO4)2/Ti catalyst for selective catalytic reduction of NO with NH3. Applied Catalysis B: Environmental 206, pages 449-460.
Crossref
Ye Jiang, Xuechong Wang, Changzhong Bao, Shanbo Huang, Xiuxia Zhang & Xinwei Wang. (2017) Poisoning effect of CaO on CeO2/TiO2 catalysts for selective catalytic reduction of NO with NH3. Korean Journal of Chemical Engineering 34:6, pages 1874-1881.
Crossref
Xuesen Du, Jiyun Tang, Yanrong Chen, Xin Yang, Jingyu Ran & Li Zhang. (2017) Adsorption of As 4 O 6 from flue gas by zeolites: Influence of pore structure and Al substitution. Microporous and Mesoporous Materials 243, pages 22-27.
Crossref
Yanan Wang, Dong Jiang, Shule Zhang, Man Ou, Gang Bian & Qin Zhong. (2017) Photocatalytic removal of NO from coal-fired flue gas by H2O2/UV reaction over TiS catalyst. Journal of Alloys and Compounds 691, pages 1005-1017.
Crossref
Xuesen Du, Guangpeng Yang, Yanrong Chen, Jingyu Ran & Li Zhang. (2017) The different poisoning behaviors of various alkali metal containing compounds on SCR catalyst. Applied Surface Science 392, pages 162-168.
Crossref
Lingling Zhou, Caiting Li, Lingkui Zhao, Guangming Zeng, Lei Gao, Yan Wang & Ming’e Yu. (2016) The poisoning effect of PbO on Mn-Ce/TiO2 catalyst for selective catalytic reduction of NO with NH3 at low temperature. Applied Surface Science 389, pages 532-539.
Crossref
J. Schobing, V. Tschamber, J. F. Brilhac, A. Auclaire & R. Vonarb. (2016) Investigation of the Impact of Calcium, Zinc and Phosphorus on DeNOx Activity of a Commercial SCR Catalyst. Topics in Catalysis 59:10-12, pages 1013-1019.
Crossref
Qinghua Yan, Ruoyan Yang, Yili Zhang, Ahmad Umar, Zhanggen Huang & Qiang Wang. (2016) A comprehensive review on selective catalytic reduction catalysts for NO x emission abatement from municipal solid waste incinerators . Environmental Progress & Sustainable Energy 35:4, pages 1061-1069.
Crossref
Wenshuo Hu, Xiang Gao, Yawen Deng, Ruiyang Qu, Chenghang Zheng, Xinbo Zhu & Kefa Cen. (2016) Deactivation mechanism of arsenic and resistance effect of SO42− on commercial catalysts for selective catalytic reduction of NO with NH3. Chemical Engineering Journal 293, pages 118-128.
Crossref
Junhua Li, Yue Peng, Huazhen Chang, Xiang Li, John C. Crittenden & Jiming Hao. (2016) Chemical poison and regeneration of SCR catalysts for NO x removal from stationary sources. Frontiers of Environmental Science & Engineering 10:3, pages 413-427.
Crossref
Xuesen Du, Jiyun Tang, Xiang Gao, Yanrong Chen, Jingyu Ran & Li Zhang. (2016) Molecular Transformations of Arsenic Species in the Flue Gas of Typical Power Plants: A Density Functional Theory Study. Energy & Fuels 30:5, pages 4209-4214.
Crossref
Xuesen Du, Xiangmin Wang, Yanrong Chen, Xiang Gao & Li Zhang. (2016) Supported metal sulfates on Ce?TiOx as catalysts for NH3?SCR of NO: High resistances to SO2 and potassium. Journal of Industrial and Engineering Chemistry 36, pages 271-278.
Crossref
Sandra Dahlin, Marita Nilsson, Daniel Bäckström, Susanna Liljegren Bergman, Emelie Bengtsson, Steven L. Bernasek & Lars J. Pettersson. (2016) Multivariate analysis of the effect of biodiesel-derived contaminants on V 2 O 5 ‑WO 3 /TiO 2 SCR catalysts. Applied Catalysis B: Environmental 183, pages 377-385.
Crossref
Brian K. Olsen, Frauke Kügler, Francesco Castellino & Anker D. Jensen. (2016) Poisoning of vanadia based SCR catalysts by potassium: influence of catalyst composition and potassium mobility. Catalysis Science & Technology 6:7, pages 2249-2260.
Crossref
Huazhen Chang, Qingru Wu, Tao Zhang, Mingguan Li, Xiaoxu Sun, Junhua Li, Lei Duan & Jiming Hao. (2015) Design Strategies for CeO 2 –MoO 3 Catalysts for DeNO x and Hg 0 Oxidation in the Presence of HCl: The Significance of the Surface Acid–Base Properties . Environmental Science & Technology 49:20, pages 12388-12394.
Crossref
Yue Peng, Junhua Li, Wenzhe Si, Jinming Luo, Qizhou Dai, Xubiao Luo, Xin Liu & Jiming Hao. (2014) Insight into Deactivation of Commercial SCR Catalyst by Arsenic: An Experiment and DFT Study. Environmental Science & Technology 48:23, pages 13895-13900.
Crossref
Shule Zhang, Qin Zhong, Wei Zhao & Yuntao Li. (2014) Surface characterization studies on F-doped V2O5/TiO2 catalyst for NO reduction with NH3 at low-temperature. Chemical Engineering Journal 253, pages 207-216.
Crossref
Yaqin Hou, Guoqin Cai, Zhanggen Huang, Xiaojin Han & Shijie Guo. (2014) Effect of HCl on V2O5/AC catalyst for NO reduction by NH3 at low temperatures. Chemical Engineering Journal 247, pages 59-65.
Crossref
Stanislava Andonova, Evgeny Vovk, Jonas Sjöblom, Emrah Ozensoy & Louise Olsson. (2014) Chemical deactivation by phosphorous under lean hydrothermal conditions over Cu/BEA NH3-SCR catalysts. Applied Catalysis B: Environmental 147, pages 251-263.
Crossref
Liu Yang, Yue Tan, Zhongyi Sheng & Aiyi Zhou. (2014) The Poisoning Effect of Na Doping over Mn-Ce/TiO 2 Catalyst for Low-Temperature Selective Catalytic Reduction of NO by NH 3 . Journal of Nanomaterials 2014, pages 1-6.
Crossref
Huazhen Chang, Junhua Li, Wenkang Su, Yuankai Shao & Jiming Hao. (2014) A novel mechanism for poisoning of metal oxide SCR catalysts: base?acid explanation correlated with redox properties. Chem. Commun. 50:70, pages 10031-10034.
Crossref
Jonas Jansson. 2014. Urea-SCR Technology for deNOx After Treatment of Diesel Exhausts. Urea-SCR Technology for deNOx After Treatment of Diesel Exhausts 65 96 .
Ning Zhao, Si Wei Pan & Zheng Le Wei. (2013) Discussion and Research on the Deactivation of the SCR Catalyst in the Coal-Fired Power Plants. Advanced Materials Research 807-809, pages 1431-1436.
Crossref
Shule Zhang, Xiaoning Yang & Qin Zhong. (2013) Cluster molecular modeling of strong interaction for F-doped V2O5?WO3/TiO2 supported catalyst. Journal of Fluorine Chemistry 153, pages 26-32.
Crossref
Liyuan Xiong, Qin Zhong, Qianqiao Chen & Shule Zhang. (2013) TiO2 nanotube-supported V2O5 catalysts for selective NO reduction by NH3. Korean Journal of Chemical Engineering 30:4, pages 836-841.
Crossref
Xuesen Du, Xiang Gao, Ruiyang Qu, Peidong Ji, Zhongyang Luo & Ke‐fa Cen. (2012) The Influence of Alkali Metals on the Ce‐Ti Mixed Oxide Catalyst for the Selective Catalytic Reduction of NO x . ChemCatChem 4:12, pages 2075-2081.
Crossref
Shule Zhang, Hongyu Li & Qin Zhong. (2012) Promotional effect of F-doped V2O5?WO3/TiO2 catalyst for NH3-SCR of NO at low-temperature. Applied Catalysis A: General 435-436, pages 156-162.
Crossref
Shule Zhang, Xiaoxiao Liu, Qin Zhong & Yao Yao. (2012) Effect of Y doping on oxygen vacancies of TiO2 supported MnOX for selective catalytic reduction of NO with NH3 at low temperature. Catalysis Communications 25, pages 7-11.
Crossref
Xuesong Shang, Jianrong Li, Xiaowei Yu, Jinsheng Chen & Chi He. (2012) Effective regeneration of thermally deactivated commercial V-W-Ti catalysts. Frontiers of Chemical Science and Engineering 6:1, pages 38-46.
Crossref
Xuesong Shang, Gongren Hu, Chi He, Jinping Zhao, Fuwang Zhang, Ya Xu, Yunfeng Zhang, Jianrong Li & Jinsheng Chen. (2012) Regeneration of full-scale commercial honeycomb monolith catalyst (V2O5?WO3/TiO2) used in coal-fired power plant. Journal of Industrial and Engineering Chemistry 18:1, pages 513-519.
Crossref
Xiang Gao, Xue-sen Du, Yin-cheng Fu, Jian-hong Mao, Zhong-yang Luo, Ming-jiang Ni & Ke-fa Cen. (2011) Theoretical and experimental study on the deactivation of V2O5 based catalyst by lead for selective catalytic reduction of nitric oxides. Catalysis Today 175:1, pages 625-630.
Crossref
Francesco Castellino, Anker Degn Jensen, Jan Erik Johnsson & Rasmus Fehrmann. (2009) Influence of reaction products of K-getter fuel additives on commercial vanadia-based SCR catalysts. Applied Catalysis B: Environmental 86:3-4, pages 196-205.
Crossref
Francesco Castellino, Anker Degn Jensen, Jan Erik Johnsson & Rasmus Fehrmann. (2009) Influence of reaction products of K-getter fuel additives on commercial vanadia-based SCR catalysts. Applied Catalysis B: Environmental 86:3-4, pages 206-215.
Crossref
Yuanjing Zheng, Anker Degn Jensen, Jan Erik Johnsson & Joakim Reimer Thøgersen. (2008) Deactivation of V2O5-WO3-TiO2 SCR catalyst at biomass fired power plants: Elucidation of mechanisms by lab- and pilot-scale experiments. Applied Catalysis B: Environmental 83:3-4, pages 186-194.
Crossref
Francesco Castellino, Søren Birk Rasmussen, Anker Degn Jensen, Jan Erik Johnsson & Rasmus Fehrmann. (2008) Deactivation of vanadia-based commercial SCR catalysts by polyphosphoric acids. Applied Catalysis B: Environmental 83:1-2, pages 110-122.
Crossref
Pär Gabrielsson & Henrik Guldberg Pedersen. 2008. Handbook of Heterogeneous Catalysis. Handbook of Heterogeneous Catalysis 2345 2385 .
Eduardo Humeres, Karen Mendes de Castro, Moreira, Maria da Gloria B. Peruch, Wido H. Schreiner, Abil E. Aliev, Mois?s Canle, J. Arturo Santaballa & Isabel Fern?ndez. (2008) Reactivity of the Thermally Stable Intermediates of the Reduction of SO 2 on Carbons and Mechanisms of Insertion of Organic Moieties in the Carbon Matrix . The Journal of Physical Chemistry C 112:2, pages 581-589.
Crossref
D. Nicosia, I. Czekaj & O. Kr?cher. (2008) Chemical deactivation of V2O5/WO3?TiO2 SCR catalysts by additives and impurities from fuels, lubrication oils and urea solution. Applied Catalysis B: Environmental 77:3-4, pages 228-236.
Crossref
Ann-Charlotte Larsson, Jessica Einvall, Arne Andersson & Mehri Sanati. (2007) Physical and chemical characterisation of potassium deactivation of a SCR catalyst for biomass combustion. Topics in Catalysis 45:1-4, pages 149-152.
Crossref
Morteza Sohrabi, Farokhbag Moradi & Mehri Sanati. (2007) Deactivation of Pt/wire-mesh and vanadia/monolith catalysts applied in selective catalytic reduction of NO x in flue gas. Korean Journal of Chemical Engineering 24:4, pages 583-587.
Crossref
Ann-Charlotte Larsson, Jessica Einvall, Arne Andersson & Mehri Sanati. (2006) Targeting by Comparison with Laboratory Experiments the SCR Catalyst Deactivation Process by Potassium and Zinc Salts in a Large-Scale Biomass Combustion Boiler. Energy & Fuels 20:4, pages 1398-1405.
Crossref
Jin Woo Choung & In-Sik Nam. (2006) Characteristics of copper ion exchanged mordenite catalyst deactivated by HCl for the reduction of NOx with NH3. Applied Catalysis B: Environmental 64:1-2, pages 42-50.
Crossref
Calvin H. Bartholomew & Robert J. Farrauto. 2005. Fundamentals of Industrial Catalytic Processes. Fundamentals of Industrial Catalytic Processes 753 819 .
Jens Beck, Robert M?ller, J?rgen Brandenstein, Bruno Matscheko, J?rn Matschke, Sven Unterberger & Klaus R.G. Hein. (2005) The behaviour of phosphorus in flue gases from coal and secondary fuel co-combustion. Fuel 84:14-15, pages 1911-1919.
Crossref
Yuanjing Zheng, Anker Degn Jensen & Jan Erik Johnsson. (2005) Deactivation of V2O5-WO3-TiO2 SCR catalyst at a biomass-fired combined heat and power plant. Applied Catalysis B: Environmental 60:3-4, pages 253-264.
Crossref
Gongshin Qi, Ralph T. Yang, Ramsay Chang, Sylvio Cardoso & Randall A. Smith. (2004) Deactivation of La-Fe-ZSM-5 catalyst for selective catalytic reduction of NO with NH3: field study results. Applied Catalysis A: General 275:1-2, pages 207-212.
Crossref
J. Brandenstein, J. Beck, S. Unterberger & K. R.G. Hein. (2004) Deaktivierung von SCR‐DeNO x ‐Katalysatoren durch Phosphorverbindungen . Chemie Ingenieur Technik 76:10, pages 1499-1503.
Crossref
L Lisi, G Lasorella, S Malloggi & G Russo. (2004) Single and combined deactivating effect of alkali metals and HCl on commercial SCR catalysts. Applied Catalysis B: Environmental 50:4, pages 251-258.
Crossref
Jens Beck, Jürgen Brandenstein, Sven Unterberger & Klaus R.G Hein. (2004) Effects of sewage sludge and meat and bone meal Co-combustion on SCR catalysts. Applied Catalysis B: Environmental 49:1, pages 15-25.
Crossref
Yuanjing Zheng, Anker Degn Jensen & Jan Erik Johnsson. (2004) Laboratory Investigation of Selective Catalytic Reduction Catalysts:  Deactivation by Potassium Compounds and Catalyst Regeneration. Industrial & Engineering Chemistry Research 43:4, pages 941-947.
Crossref
F. J. Janssen. 1999. Environmental Catalysis. Environmental Catalysis 119 179 .
Guido Saracco & Vito Specchia. (1998) Simultaneous removal of nitrogen oxides and fly-ash from coal-based power-plant flue gases. Applied Thermal Engineering 18:11, pages 1025-1035.
Crossref
Raziyeh Khodayari & C. U. Ingemar Odenbrand. (1998) Deactivating Effects of Lead on the Selective Catalytic Reduction of Nitric Oxide with Ammonia over a V 2 O 5 /WO 3 /TiO 2 Catalyst for Waste Incineration Applications . Industrial & Engineering Chemistry Research 37:4, pages 1196-1202.
Crossref
E. S. J. Lox, B. H. Engler, F. J. Janssen, R. L. Garten, R. A. Dalla Betta, J. C. Schlatter, Z. Ainbinder, L. E. Manzer, M. J. Nappa, V. N. Parmon & K. I. Zamaraev. 1997. Handbook of Heterogeneous Catalysis. Handbook of Heterogeneous Catalysis 1569 1595 .
Sumitra R. Ness, Grant E. Dunham, Greg F. Weber & Douglas K. Ludlow. (2006) SCR catalyst‐coated fabric filters for simultaneous NO x and high‐temperature particulate control . Environmental Progress 14:1, pages 69-74.
Crossref
S.N. Ahmed, J.M. Stencel, F.J. Derbyshire & R.M. Baldwin. (1993) Activated carbons for the removal of nitric oxide. Fuel Processing Technology 34:2, pages 123-136.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.