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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Creating the adsorptive sites with high performance toward nitrosamines in mesoporous silica MCM-41 by alumina modifier
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Creating the adsorptive sites with high performance toward nitrosamines in mesoporous silica MCM-41 by alumina modifier

机译:通过氧化铝改性剂在介孔二氧化硅MCM-41中创建对亚硝胺的高性能吸附位点

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摘要

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, N2 adsorp-tion-desorption, ~(27)A1 MAS NMR, FT1R and NH3-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 A12O3/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.
机译:为了在环境中吸附小的污染物分子(如挥发性亚硝胺)中与沸石匹配的目的,选择MCM-41(孔径相对较小的介孔二氧化硅)通过一锅法合成用氧化铝改性,无溶剂固态研磨和凝胶混合方法,以优化介孔复合材料的吸附能力。为了详细研究制备方法如何影响改性MCM-41的结构和功能,采用XRD,N2吸附-脱附,〜(27)A1 MAS NMR,FT1R和NH3-TPD技术表征所得复合材料,并利用NPYR(N-亚硝基吡咯烷)和NNN(N-亚硝基松香碱)的吸附来评估含铝MCM-41的吸附能力。用氧化铝改性显着提高了MCM-41捕集NPYR的能力,并且在各种制剂中,无溶剂固体研磨方法能够以较高的可及性分散氧化铝客体并在MCM-41上保留表面硅烷醇基团。通常,通过无溶剂方法与12 wt。%的氧化铝合成的Al2O3 / MCM-41复合材料显示出与沸石NaY相当的捕集气流中NPYR的能力,但比NaY吸收溶液中大体积亚硝胺NNN的能力高出四倍。最后,提出了如何在介孔二氧化硅中建立高吸附性能的建议。

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