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首页> 外文期刊>Quimica nova >Basic properties of potassium oxide supported on zeolite y studied by pyrrole-TPD and catalytic conversion of methylbutynol
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Basic properties of potassium oxide supported on zeolite y studied by pyrrole-TPD and catalytic conversion of methylbutynol

机译:吡咯-TPD研究沸石Y上负载的氧化钾的基本性质和甲基丁炔醇的催化转化

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We report on the basic properties of zeolite NaY and potassium supported on NaY (K/NaY) assessed by pyrrole-TPD and MBOH transformation. Pyrrole-TPD revealed that impregnation of zeolite NaY with potassium promoted additional adsorption sites for pyrrole compared to parent zeolite. For zeolite with various potassium loadings, pyrrole adsorbed on K/NaY decreased with increased potassium loading. Reduction in pyrrole adsorption could be due to potassium hindering intrinsic basic sites (lattice oxygen), to oxide of potassium occluding in zeolite cavities restricting access for pyrrole, or to K2O reacting with pyrrole to form nondesorbed pyrrolate anions. On MBOH transformation, potassium almost completely suppressed NaY acid sites while K/NaY basicity increased with potassium loading.
机译:我们报告了通过吡咯-TPD和MBOH转化评估的NaY沸石和NaY负载的钾的基本性质(K / NaY)。吡咯-TPD显示,与母体沸石相比,用钾浸渍NaY沸石可促进吡咯的额外吸附位点。对于具有不同钾含量的沸石,吸附在K / NaY上的吡咯随着钾含量的增加而降低。吡咯吸附的减少可能是由于钾阻碍了固有的碱性位点(晶格氧),沸石分子腔中的钾氧化物被吸留而限制了吡咯的进入或K2O与吡咯反应形成了未解吸的吡咯酸盐阴离子。在MBOH转化中,钾几乎完全抑制了NaY酸位,而K / NaY碱度随钾含量的增加而增加。

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