[1] Abbas Afkhami, Hasan Bagheri, Tayyebeh Madrakian, Alumina nanoparticles grafted with functional groups as a new adsorbent in efficient removal of formaldehyde from water samples, Desalination 281 (2011) 151–158.
[2] Haibao Huang,Dennis Y. C. Leung and Daiqi Ye,Effect of reduction treatment on structural properties of TiO2 supported Pt nanoparticles and their catalytic activity for formaldehyde oxidation, Journal of Materials Chemistry J. Mater. Chem. 2011 /21/ 9647.
[3] YOSHIO NAKANOM, KENJI TAKESHITA and TOSHIRO TSUTSUMI,ADSORPTION MECHANISMOF HEXAVALENT CHROMIUMBY REDOX WITHIN CONDENSED-TANNIN GEL,Wat. Res. Vol. 35, No. 2, pp. 496±500, 2001.
[3] A. Hayashi ,Y. Fujimoto, Y. Ogawa, H. Nakayama, M. Tsuhako,Adsorption of gaseous formaldehyde and carboxylic acids by ammonium-ion-exchanged α-zirconium phosphate , Journal of Colloid and Interface Science 283 (2005) 57–63.
[4]Kyung Jin Lee a, Nanako Shiratorib, Gang Ho Lee b, Jin Miyawakib, Isao Mochida b,Seong-Ho Yoon b, Jyongsik Jang a,Activated carbon nanofiber produced from electrospun polyacrylonitrile nanofiber as a highly efficient formaldehyde adsorbent, CARBON 48 (2010) 4248 – 4255.
[5] Wang Xiaoyan, Wang Huixiang*, Wang Shaoli,Ambient formaldehyde and its contr and OH radical in a rural area, Atmospheric Environment 44 (2010) 2074e2078.
[6] Adrian M. T. Silvaa Isabel M. Castelo-Brancoa, Rosa M. Quinta-Ferreiraa, Jan
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