Study on Noble Metal Catalyst for Selective Catalytic Reduction of NOx at Low Temperature

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The method of selective catalytic reduction (SCR) to removal NOx is very mature. However, its initial investment and operation cost are still high, which limits the development of SCR technology. Low temperature SCR catalysts can significantly reduce the cost. Catalyst active component and its carrier is the key to the efficiency of denitration. This paper summarizes the research progress of noble metal catalyst of low temperature SCR.

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885-889

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October 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] T. Komatsu, K. Tomokuni, I. Yamada: Catalysis Today, Vol. 116 (2006), p.244.

Google Scholar

[2] G. Pastor, S. Esclapez, A. Lopez: Applied Catalysis A: General, Vol. 354 (2009), p.63.

Google Scholar

[3] J.L. Xie, D. Fang, F. He: Catalysis Communications, Vol. 28 (2012), p.77.

Google Scholar

[4] A. Flura, F. Can, X. Courtois, S. Royer: Applied Catalysis B: Environmental, Vol. 126 (2012), p.275.

Google Scholar

[5] A.R. Vaccaro, G. Mul: Applied Catalysis B: Environmental, Vol. 46 (2003), p.687.

Google Scholar

[6] C.N. Costa, A. M. Efstathiou: Applied Catalysis B: Environmental, Vol. 72 (2007), p.240.

Google Scholar

[7] X.L. Tang, J.M. Hao, H.H. Yi: China Environmental Science, Vol. 27 (2007), p.845 (In Chinese).

Google Scholar

[8] C. Seo, B. Choi, H. Kim: Chemical Engineering Journal, Vol. 191 (2012), p.331.

Google Scholar

[9] Z. Schay, L. Guczi, A. Beck: Catalysis Today, Vol. 75 (2002), p.393.

Google Scholar

[10] C. He, M. Paulus, W. Chu: Catalysis Today, Vol. 131 (2008), p.305.

Google Scholar

[11] M. Kantcheva, M. Milanova: Catalysis Today, Vol. 191 (2012), p.12.

Google Scholar

[12] M. Koebel, M. Elsener: Catalysis Today, Vol. 59 (2000), p.335.

Google Scholar

[13] M. Devadas, O. Krocher: Catalysis Today, Vol. 119 (2007), p.137.

Google Scholar

[14] S.M. Jung, P. Grange: Applied Catalysis B: Environmental, Vol. 32 (2001), p.123.

Google Scholar

[15] R.Q. Long, R.T. Yang: Applied Catalysis B: Environmental, Vol. 24 (2000), p.13.

Google Scholar

[16] Q. Xu, Z.J. Zheng, C.M. Ling: Environment Pollution and Control, Vol. 33(2011), p.81.

Google Scholar

[17] Z.X. Zhang, M.X. Chen: Catalysis Communications, Vol. 10 (2009), p.1330.

Google Scholar

[18] Z.X. Zhang, M.X. Chen: Journal of Environmental Sciences, Vol. 22 (2010), p.1441.

Google Scholar

[19] J.M. Cortés, J. Ramırez, M. Gómez: Applied Catalysis B: Environmental, Vol. 30 (2001), p.399.

Google Scholar

[20] W. An, K.T. Chuang, A. R. Sanger: Journal of Catalysis, Vol. 211, (2002), p.308.

Google Scholar

[21] S.M. Park, M. Kim, E.S. Kim: Applied Catalysis A: General, Vol. 395 (2011), p.120.

Google Scholar

[22] J. Yang, H. Jung: Chemical Engineering Journal, Vol. 146 (2009), p.11.

Google Scholar

[23] G. G. Olympiou, A. M. Efstathiou: Chemical Engineering Journal, Vol. 170 (2011), p.424.

Google Scholar

[24] L. Valanidou, C. Theologides: Applied Catalysis B: Environmental, Vol. 107 (2011), p.164.

Google Scholar

[25] X.Y. Liu, Z. Jiang, M.X. Chen: Journal of Environmental Sciences, Vol. 25(2013), p.1023.

Google Scholar

[26] C.N. Costa, A. M. Efstathiou: Applied Catalysis B: Environmental, Vol. 72 (2007), p.240.

Google Scholar

[27] L. Li, P. Wu, Q. Yu: Applied Catalysis B: Environmental, Vol. 94 (2010), p.254.

Google Scholar

[28] D.E. Doronkin, T.S. Khan, T. Bligaard: Applied Catalysis B: Environmental, Vol. 117 (2012), p.49.

Google Scholar

[29] B. Greenhalgh, J.P. Charland: Catalysis Today, Vol. 151 (2010), p.285.

Google Scholar

[30] S.S. Kim, S.C. Hong: Journal of Industrial and Engineering Chemistry, Vol. 16 (2010), p.992.

Google Scholar

[31] C.N. Costa, P.G. Savva: Applied Catalysis B: Environmental, Vol. 75 (2007), p.147.

Google Scholar

[32] Z.X. Zhang, M.X. Chen, Z. Jiang: Journal of Hazardous Materials, Vol. 193 (2011), p.330.

Google Scholar

[33] M. Huuhtanen, K.T. Tolonen, T. Maunula: Catalysis Today, Vol. 100 (2005), p.321.

Google Scholar

[34] W.L. Johnson, G. B. Fisher, T.J. Toops: Catalysis Today, Vol. 184 (2012), p.166.

Google Scholar

[35] S. Tamm, N. Vallim, M. Skoglundh: Journal of Catalysis, Vol. 307 (2013), p.153.

Google Scholar

[36] J.M. Cortés, J.P. Ramírez, J.N. Rouzaud: Journal of Catalysis, Vol. 218 (2003), p.111.

Google Scholar