Study on the Formaldehyde Adsorption Kinetics of Dry Waters

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Abstract:

Dry waters with an average diameter of 82 μm were prepared by a high speed mixed route. The formaldehyde absorption kinetics of dry waters was investigated by simulating indoor formaldehyde pollution in glass chamber. The results showed that pseudo-second order model could be used to simulate the adsorption process; the adsorption rate was highest in the initial 60 minutes; when the adsorption lasted for 180 minutes, the adsorption reached equilibrium.

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Materials Science Forum (Volumes 809-810)

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907-911

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December 2014

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] P. Wolkoff. International Journal of Hygiene and Environmental Health, Vol. 216 (2013) No. 4, p.371.

Google Scholar

[2] L.Q. Guo and Y.Q. Guo. Procedia Engineering, Vol. 21 (2011) p.789.

Google Scholar

[3] X.J. Tang, Y. Bai and A. Duong, M.T. Smith. L.Y. Li and L.P. Zhang. Environment International, Vol. 35 (2009) p.1210.

Google Scholar

[4] Q.B. Wen, C.T. Li, Z.H. Cai, W. Zhang, H.L. Gao, L.J. Chen, G.M. Zeng, X. Shu and Y.P. Zhao. Bioresource Technology, Vol. 102 (2011) p.942.

Google Scholar

[5] V. Boonamnuayvitaya, S. Sae-ung, W. Separation and Purification Technology, Vol. 42(2005) p.159.

Google Scholar

[6] J.J. Pei, J.S.S. Zhang. Chemical Engineering Journal, Vol. 167, (2011) p.59.

Google Scholar

[7] S. Mirdamadi, A. Rajabi, P. Khalilzadeh, D. Norozian, A. Akbarzade and F.A. Mohseni. World Journal of Microbiology & Biotechnology, Vol. 21 (2005) p.1299.

DOI: 10.1007/s11274-005-2443-1

Google Scholar

[8] H.X. Ding, A.M. Zhu, X.F. Yang, G.H. Li, and Y. Xu. Institute of Physics Publishing, Vol. 38 (2005) p.4160.

Google Scholar

[9] J.H. Park, J.H. Byeon, K.Y. Yoon, and J. Hwang. Blackwell Munksgaard, Vol. 18 (2007) p.44.

Google Scholar

[10] Z.J. Xu, L. Wang and H.P. Hou. Journal of Hazardous Materials, Vol. 192 (2011) p.314.

Google Scholar

[11] N. A. Oladoja, C. O. Aboluwoye and A.O. Akinkugbe. American Chemical Society, Vol. 48 (2009) p.2786.

Google Scholar

[12] J.D. Fernandez Bayo, R. Nogales and E. Romero. Agricultural and Food Chemistry, Vol. 56 (2008) p.5266.

Google Scholar