欢迎登录材料期刊网

材料期刊网

高级检索

用不同浓度的NaOH溶液对丝光沸石进行处理制备了具有复合孔道结构的介孔丝光沸石,并采用x射线衍射、扫描电子显微镜、透射电子显微镜和N2吸附.脱附等方法对其进行了表征.结果表明,随着NaOH溶液浓度的升高.介孔丝光沸石的粒径逐渐变小,分子筛表面的介孔逐渐丰富,孔径分布逐渐变宽,介孔体积逐渐增大呈线性关系.当NaOH浓度为0.50 mol/L时,介孔丝光沸石的形貌变为空心沸石微囊或微囊壁.介孔的增加产生扩散效应,适当的NaOH溶液处理有利于提高丝光沸石对C_9和C_(10)芳烃的转化能力.

Mesoporous mordenite samples were prepared by treatment in NaOH solution with different concentrations.The samples were characterized by X-ray diffraction,scanning electron microscopy,transmission electron microscopy,and N2 adsorption-desorption methods.The NaOH concentration had a great impact on physicochemical properties of the mesoporous mordenite.With the increase in NaOH concentration,the particle size of the mesoporous mordenite became smaller,the amount of derived mesopores increased.the pore size distribu.tion became broader and the volume of mesopores increased in a linear manner.When the NaOH concentration was 0.50 mol/L,the mesoporous mordenite became zeolite microbox-like architecture and its fragments.The mordenite after alkaline treatment had much bener camlytic performance for trailsformation of C_9 and C_(10) aromatics to benzene,toluene,and xylene.

参考文献

[1] 高滋.沸石催化与分离技术[M].北京:中国石化出版社,1999
[2] 陈庆龄,孔德金,杨卫胜.对二甲苯增产技术发展趋向[J].石油化工,2004(10):909-915.
[3] 祁晓岚;刘希尧 .[J].分子催化,2002,16:3 12.
[4] 王全义,李丹东,齐越,曹祖宾,刘中民.具有二次介孔分子筛材料的制备和应用[J].工业催化,2007(07):10-16.
[5] Tao Y S;Kanoh H;Abrams L;Kaneko K .[J].Chemical Reviews,2006,106:896.
[6] Perez-Ramirez J;Christensen C H;Egeblad K;Christensen C H,Groen J C .[J].Chemical Society Reviews,2008,37:2530.
[7] Ogura M;Shinomiya S Y;Tateno J;Nara Y Kikuchi E Matsukata M .[J].Chemistry Letters,2000,29:882.
[8] 王殿中,舒兴田,何鸣元.MMM分子筛的制备与表征[J].催化学报,2003(03):208-212.
[9] Groen J C;Perez;Ramirez J;Peffer L A A .[J].Chemistry Letters,2002,31:94.
[10] Su L L;Liu L;Zhuang J Q;Wang H X Li Y G Shen W J Xu Y D Bao X H .[J].Catalysis Letters,2003,91:155.
[11] Groen J C;Bach T;Ziese U;Donk A M P V,de Jong K P,Moulijn J A Perez-Ramirez J .[J].Journal of the American Chemical Society,2005,127:10792.
[12] Li Y N;Liu S L;Zhang Z K;Xie S J Zhu X X Xu L Y .[J].Applied Catalysis A:General,2008,338:100.
[13] Mei Ch S;Wen P Y;Liu Zh Ch;Liu H X Wang Y D Yang W M Xie Z K Hua W M Gno Z .[J].Journal of Catalysis,2008,258:243.
[14] Jin L J;Zhou X J;Hu H Q;Ma B .[J].Catalysis Communications,2008,10:336.
[15] 肖强,李自运,孙昕,项寿鹤.碱处理丝光沸石的表征及其催化合成乙基叔丁基醚的性能[J].催化学报,2005(03):243-247.
[16] Groen J C;Sano T;Moulijn J A;Perez-Ramirez J .[J].Journal of Catalysis,2007,251:21.
[17] Li, X.F.;Prins, R.;van Bokhoven, J.A. .Synthesis and characterization of mesoporous mordenite[J].Journal of Catalysis,2009(2):257-265.
[18] Ogura M;Shinomiya S;Tateno J;Nara Y Nomura M Kikuchi E,Matsukata M .[J].Applied Catalysis A:General,2001,219:33.
[19] Suzuki T;Okuhara T .[J].Microporous and Mesoporous Materials,2001,43:83.
[20] Groen JC;Peffer LAA;Moulijn JA;Perez-Ramirez J .Mechanism of hierarchical porosity development in MFI zeolites by desilication: The role of aluminium as a pore-directing agent[J].Chemistry: A European journal,2005(17):4983-4994.
[21] Groen JC;Moulijn JA;Perez-Ramirez J .Desilication: on the controlled generation of mesoporosity in MFI zeolites[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2006(22):2121-2131.
[22] Tao Y S;Kanoh H;Kaneko K .[J].Adsorption-Journal of the International Adsorption Society,2006,12:309.
[23] Groen J C;Jansen J C;Moulijn 3 A;Perez-Ramirez J .[J].Journal of Physical Chemistry B,2004,108:13062.
[24] MeiCh S;Liu Zh Ch;Wen P Y;Xie Z K Hua W M Gao Z .[J].Journal of Materials Chemistry,2008,18:3496.
[25] Rouquerol J;Rouquerol F;Sing K S.Adsorption by Powders and Porous Solids:Principle,Methodology and Applications[M].New York:Academic Press,Inc,1999:440.
[26] Zheng J L;Zhai Sh R;Zhang Y;Wu D,Sun Y H,Yang YX.Chen L,Deng F .[J].Catalysis Today,2004,93-95:529.
[27] Groen J C;Peffer L A A;Perez-Ramirez J .[J].Microporous MesoporousMater,2003,60:1.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%