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Methods to delay deactivation of zeolites on furan acylation: continuous liquid-phase technology and solvent effects

机译:延迟呋喃酰化反应中沸石失活的方法:连续液相技术和溶剂作用

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The continuous liquid-phase Friedel-Crafts acylation of furan with acetic anhydride was first carried out in a fixed-bed reactor over an H-beta zeolite. A three-level, four-variable Box-Behnken design combined with response surface methodology was employed to determine the optimal acylation conditions, and the accuracy of the model was verified by validation experiments. In this study, it was found that lower liquid velocity and stronger polarity of the solvent were conducive to enhancing the catalytic activity and stability of the H-beta zeolite. The reaction was limited by the acid sites being poisoned due to the adsorption of the by-product and pore blockage. Moreover, the carbon deposit was proved to be the main reason for the deactivation of the H-beta zeolite by using GC-MS, C-13 NMR MAS, Al-27 NMR MAS, TG/DTG and NH3-TPD.
机译:首先在固定床反应器中的H-β沸石上进行呋喃与乙酸酐的连续液相Friedel-Crafts酰化反应。采用三级四变量Box-Behnken设计结合响应面法确定最佳的酰化条件,并通过验证实验验证了模型的准确性。在这项研究中,发现较低的液体速度和较强的溶剂极性有利于增强H-β沸石的催化活性和稳定性。由于副产物的吸附和孔堵塞,酸位被中毒限制了反应。此外,通过使用GC-MS,C-13 NMR MAS,Al-27 NMR MAS,TG / DTG和NH3-TPD,证明了碳沉积物是导致H-β沸石失活的主要原因。

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