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首页> 外文期刊>Journal of porous materials >Adsorption of CO2 and CO on H-zeolites with different framework topologies and chemical compositions and a correlation to probing protonic sites using NH3 adsorption
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Adsorption of CO2 and CO on H-zeolites with different framework topologies and chemical compositions and a correlation to probing protonic sites using NH3 adsorption

机译:具有不同骨架拓扑结构和化学组成的H沸石对CO2和CO的吸附以及与使用NH3吸附探测质子位的相关性

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摘要

Adsorption of CO2 and CO at 25 A degrees C has been conducted using commercially-available (Y, ZSM-5) and laboratory-synthesized (SSZ-13, SAPO-34) H-zeolites with different framework topologies and chemical compositions, and their textual and surface properties have been characterized by N-2 sorption and NH3 adsorption techniques. All the zeolites were microporous, although ZSM-5 and SSZ-13 apparently showed a mesoporous sorption behavior due to the interparticle spaces. The zeolites had Si/Al values in the order of SSZ-13 (16.44) > ZSM-5 (16.08) a parts per thousand Y (2.82) a parts per thousand SAPO-34 (0.19). Regardless, high CO2 adsorption capacity was obtained for SSZ-13 and SAPO-34 with a CHA framework. The FAU zeolite Y with the highest micropore volume showed less CO2 adsorption than the CHA zeolites and the MFI-type ZSM-5 yielded the poorest performance. Probing acid sites in the H-form zeolites using NH3 disclosed that these all contain both weak and strong acid sites with significant dependence of their strengths and amounts on the topology. The acid strength of the weak acid sites in the CHA zeolites was the weakest, which might allow a stronger interaction with CO2. The H-zeolites gave CO2/CO selectivity factors that were in the range of 4.61-11.0, depending on the framework topology.
机译:已使用市售(Y,ZSM-5)和实验室合成的(SSZ-13,SAPO-34)具有不同骨架拓扑结构和化学组成的H型沸石在25 A摄氏度下吸附CO2和CO文本和表面性质已通过N-2吸附和NH3吸附技术进行了表征。所有的沸石都是微孔的,尽管由于颗粒间的空间,ZSM-5和SSZ-13显然表现出中孔吸附行为。沸石的Si / Al值的顺序为SSZ-13(16.44)> ZSM-5(16.08)千分之一 Y(2.82)千分之一 SAPO-34(0.19)。无论如何,对于具有CHA框架的SSZ-13和SAPO-34,都具有很高的CO2吸附容量。具有最大微孔体积的FAU沸石Y与CHA沸石相比,对CO2的吸附较少,而MFI型ZSM-5的性能最差。使用NH3探测H型沸石中的酸性位点表明,它们都同时包含弱酸性位点和强酸性位点,并且它们的强度和含量在很大程度上取决于拓扑。 CHA沸石中弱酸位的酸强度最弱,这可能使与CO2的相互作用更强。 H沸石给出的CO2 / CO选择性因子在4.61-11.0范围内,具体取决于构架拓扑。

著录项

  • 来源
    《Journal of porous materials》 |2016年第2期|291-299|共9页
  • 作者单位

    Daegu Univ, Dept Environm Engn, 201 Daegudae Ro, Jillyang 712714, Gyeongsan, South Korea;

    Daegu Univ, Dept Environm Engn, 201 Daegudae Ro, Jillyang 712714, Gyeongsan, South Korea;

    Daegu Univ, Dept Environm Engn, 201 Daegudae Ro, Jillyang 712714, Gyeongsan, South Korea;

    Samsung BP Chem Co Ltd, Expt & Res Team, 63-15 Sanggae Ro, Ulsan 689860, South Korea;

    Samsung BP Chem Co Ltd, Expt & Res Team, 63-15 Sanggae Ro, Ulsan 689860, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO2 adsorption; Framework topology; Chemical compositions; Acidity; NH3 adsorption;

    机译:CO2吸附;骨架拓扑;化学成分;酸度;NH3吸附;

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