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首页> 外文期刊>ChemCatChem >On the Role of Acidity in Bulk and Nanosheet [T]MFI (T=Al-,(3+) Ga3+, Fe3+, B3+) Zeolites in the Methanol-to-Hydrocarbons Reaction
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On the Role of Acidity in Bulk and Nanosheet [T]MFI (T=Al-,(3+) Ga3+, Fe3+, B3+) Zeolites in the Methanol-to-Hydrocarbons Reaction

机译:关于酸度在甲醇与烃中的批量和纳米液[T] MFI(T = Al - ,(3+)Ga3 +,Fe3 +,B3 +,B3 +,B3 +)沸石中的作用

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摘要

The influence of framework substituents (Al3+, Ga3+, Fe3+ and B3+) and morphology (bulk vs. nanometer-sized sheets) of MFI zeolites on the acidity and catalytic performance in the methanol-to-hydrocarbons (MTH) reaction was investigated. The BrOnsted acid density and strength decreased in the order Al(OH)Si>Ga(OH)Si>Fe(OH)Si B(OH)Si. Pyridine (NNMR)-N-15 spectra confirmed the differences in the BrOnsted and Lewis acid strengths but also provided evidence for site heterogeneity in the BrOnsted acid sites. Owing to the lower efficiency with which tervalent ions can be inserted into the zeolite framework, sheet-like zeolites exhibited lower acidity than bulk zeolites. The sheet-like Al-containing MFI zeolite exhibited the greatest longevity as a MTH catalyst, outperforming its bulk [Al]MFI counterpart. Although the lower acidity of bulk [Ga]MFI led to a better catalytic performance than bulk [Al]MFI, the sheet-like [Ga]MFI sample was found to be nearly inactive owing to lower and heterogeneous BrOnsted acidity. All Fe- and B-substituted zeolite samples displayed very low catalytic performance owing to their weak acidity. Based on the product distribution, the MTH reaction was found to be dominated by the olefins-based catalytic cycle. The small contribution of the aromatics-based catalytic cycle was larger for bulk zeolite than for sheet-like zeolite, indicating that shorter residence time of aromatics can explain the lower tendency toward coking and enhanced catalyst longevity.
机译:研究了骨架取代基(Al3 +,Ga3 +,Fe3 +和B3 +)和形态学(散壳与纳米尺寸片材)的影响MFI沸石对甲醇 - 烃(MTH)反应中的酸度和催化性能的影响。顺序(OH)Si> Si> Fe(OH)Si B(OH)Si,刚性酸密度和强度下降。吡啶(NNMR)-N-15光谱证实了伪造和路易斯酸强度的差异,但还提供了伪造酸位点的位点异质性的证据。由于效率下降,其中龙头离子可以插入沸石框架中,片状沸石表现出比散装沸石更低的酸度。含有片状的铝的MFI沸石作为MTH催化剂表现出最大的寿命,优于其体积[Al] MFI对应物。尽管体积[Ga] MFI的较低酸度导致更好的催化性能而不是体积[Al] MFI,但由于较低和非均相的富棱醇酸度,发现片状[Ga] MFI样品几乎无惰性。所有Fe和B取代的沸石样品由于其弱酸性而显示出非常低的催化性能。基于产物分布,发现MTH反应由基于烯烃的催化循环为主。芳烃的催化循环的小贡献对于大量沸石的巨大贡献比片状沸石更大,表明芳烃的较短停留时间可以解释焦化和增强催化剂寿命的较低趋势。

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