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

Article Preview

Abstract:

The method of selective catalytic reduction (SCR) is now one of the mature applications of NOx removal technology, which has the higher denitration rate, less secondary pollution and lower cost. However, the active temperature of traditional SCR catalyst is usually in the temperature range of 300-400°C. This kind of installation leads to the reduction of catalyst activity, and the shortage of working life. The development of efficient and stable performance of catalyst at low temperature has become a key point in the research of SCR.This paper reviews the research progress of carbon catalyst of low temperature SCR. In addition, the future research work is discussed.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

868-873

Citation:

Online since:

October 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

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

Google Scholar

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

Google Scholar

[3] A. Shi, X.Q. Wang, T. Yu: Applied Catalysis B: Environmental, Vol. 106 (2011), p.359.

Google Scholar

[4] P. Forzatti, I. Nova, E. Tronconi: Catalysis Today, Vol. 184 (2012), p.153.

Google Scholar

[5] C.Z. Wang, S.J. Yang, H.Z. Chang: Chemical Engineering Journal, Vol. 225 (2013), p.520.

Google Scholar

[6] I. Giakoumelou, C. Fountzoula, C. Kordulis, S. Boghosian: Journal of Catalysis, Vol. 239 (2006), p.1.

Google Scholar

[7] Y.J. Zheng, A.D. Jensen, J. E. Johnsson, J.R. Thøgersen: Applied Catalysis B: Environmental, Vol. 83 (2008), p.186.

Google Scholar

[8] C. Chen, D. Weng, Z.C. Si: Progress in Natural Science: Materials International, Vol. 22(2012), p.265.

Google Scholar

[9] Y.J. Zheng, A.D. Jensen, J.E. Johnsson: Applied Catalysis B: Environmental, Vol. 60 (2005), p.253.

Google Scholar

[10] D.W. Kwon, K.H. Park, S.C. Hong: Applied Catalysis A: General, Vol. 451 (2013) p.227.

Google Scholar

[11] X.S. Du, X. Gao, Y.C. Fu: Journal of Colloid and Interface Science, Vol. 368 (2012), p.406.

Google Scholar

[12] A. Boyano, M.J. Lázaro, C. Cristiani: Chemical Engineering Journal, Vol. 149 (2009), p.173.

Google Scholar

[13] X. Gao, S.J. Liu, Y. Zhang: Catalysis Today, Vol. 175 (2011), p.164.

Google Scholar

[14] G.S. Szymanski, T. Grzybek, H. Papp: Catalysis Today, Vol. 90 (2004), p.51.

Google Scholar

[15] L. Hsu, H. Teng: Applied Catalysis B: Environmental, Vol. 35 (2001), p.21.

Google Scholar

[16] Y.L. Wang, Z.Y. Liu, L. Zhan: Chemical Engineering Science, Vol. 59 (2004), p.5283.

Google Scholar

[17] Z.P. Zhu, Z.Y. Liu, S.J. Liu: Applied Catalysis B: Environmental, Vol. 30 (2001), p.267.

Google Scholar

[18] L. Zhu, B.C. Huang, W.H. Wang: Catalysis Communications, Vol. 12 (2011), p.394.

Google Scholar

[19] B.X. Shen, Z.L. Shi, B.B. Guo: Clean Coal Technology, Vol. 13 (2007), p.32.

Google Scholar

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

Google Scholar

[21] X.L. Tang, J.M. Hao, H.H. Yi: Catalysis Today, Vol. 126 (2007), p.406.

Google Scholar

[22] G. Marban, A.B. Fuertes: Applied Catalysis B: Environmental, Vol. 34 (2001), p.43.

Google Scholar

[23] M. Yoshikawa, A. Yasutake, I. Mochida: Applied Catalysis A: General, Vol. 173 (1998), p.239.

Google Scholar

[24] L.S. Wang, B.C. Huang, Y.X. Su: Chemical Engineering Journal, Vol. 192 (2012), p.232.

Google Scholar

[25] X.Y. Fan, F.M. Qiu, H.S. Yang: Catalysis Communications, Vol. 12 (2011), p.1298.

Google Scholar

[26] X. Ji, B.C. Huang: Environment Pollution and Control, Vol. 32 (2010), p.36 (In Chinese).

Google Scholar

[27] B.C. Huang, R. Huang, D.J. Jin: Catalysis Today, Vol. 126 (2007), p.279.

Google Scholar

[28] Q. Li, H.S. Yang, F.M. Qiu: Journal of Hazardous Materials, Vol. 192(2011), p.915.

Google Scholar

[29] S.L. Bai, J.H. Zhao, L. Wang: Journal of Fuel Chemistry and Technology, Vol. 37 (2009), p.583 (In Chinese).

Google Scholar

[30] S.L. Bai, J.H. Zhao, Z.P. Zhu: New Chemical Materials, Vol. 37 (2009), p.23 (In Chinese).

Google Scholar

[31] J. Pasel, P. KaÈûner, B. Montanari: Applied Catalysis B: Environmental, Vol. 18 (1998), p.199.

Google Scholar

[32] Q. Li, X. Hou, H.S. Yang: Journal of Molecular Catalysis A: Chemical, Vol. 356 (2012), p.121.

Google Scholar