Creating the adsorptive sites with high performance toward nitrosamines in mesoporous silica MCM-41 by alumina modifier

Toward the aim of matching to zeolite in adsorption of small pollutant molecules such as volatile nitrosamines in environment, MCM-41, the mesoporous silica with the relative small pore size, was chosen to be modified with alumina through one-pot synthesis, solvent-free solid grinding and gel-mixing...

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Veröffentlicht in:Microporous and mesoporous materials 2009-11, Vol.126 (1), p.143-151
Hauptverfasser: Gu, Fang Na, Zhou, Yu, Wei, Feng, Wang, Ying, Zhu, Jian Hua
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Sprache:eng
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Zusammenfassung:Toward the aim of matching to zeolite in adsorption of small pollutant molecules such as volatile nitrosamines in environment, MCM-41, the mesoporous silica with the relative small pore size, was chosen to be modified with alumina through one-pot synthesis, solvent-free solid grinding and gel-mixing methods, in order to optimize the adsorptive capability of mesoporous composite. To study how the preparative method affects the structure and function of the modified MCM-41 in detail, XRD, N 2 adsorption–desorption, 27Al MAS NMR, FTIR and NH 3-TPD techniques were employed to characterize the resulting composites, and the adsorption of NPYR ( N-nitrosopyrrolidine) and NNN ( N-nitrosonornicotine) was employed to assess the adsorptive capability of Al-containing MCM-41. Modification with alumina significantly increased the ability of MCM-41 to trap NPYR, and among various preparations the solvent-free solid grinding method was able to disperse alumina guest with high accessibility and to reserve surface silanol groups on MCM-41. Typically, the Al 2O 3/MCM-41 composite synthesized by solvent-free method with 12 wt.% alumina exhibited a capacity comparable to zeolite NaY for trapping NPYR in airflow but four times superior to NaY for adsorbing bulky nitrosamine NNN in solution. Finally, a proposal how to establish high adsorption performance in mesoporous silica was suggested.
ISSN:1387-1811
1873-3093
DOI:10.1016/j.micromeso.2009.05.030