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Factors Affect on the Reaction Performance of the Oxidative Dehydrogenation of n-Butene to 1,3-Butadiene Over Zn-Ferrite Catalysts

机译:锌铁氧体催化剂上正丁烯氧化脱氢制1,3-丁二烯反应性能的影响因素

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摘要

Two types of zinc ferrite catalysts have been prepared by physical mixing or coprecipitation and applied to the oxidative dehydrogenation of n-butene to 1,3-buta-diene. It is observed that the catalytic activity is significantly dependent upon not only the crystallinity but also the composition of a ferrite catalyst. If crystallinity of a catalyst is too high, the oxygen spillover through the lattice is severely suppressed and results in low catalytic activity. On the other hand, the presence of α-Fe2O3 in ferrite structure may lead to decrease of the reaction performance. Coprecipitation with strong base such as NaOH is found to be one of the efficient methods to form a catalytically active ferrite structure in that it is advantageous to obtain pure ferrite composition with appropriate crystallinity. During catalyst preparation, complete removal of sodium is essential because the residual sodium in catalyst considerably reduces the reaction performance. Although the use of mild base such as NH4OH is advantageous to prevent the exhaustive washing, the formation of mixed phase both α-Fe2O3 and ZnFe2O4 may reduce n-butene conversion as well as 1,3-butadiene selectivity.
机译:通过物理混合或共沉淀制备了两种类型的锌铁氧体催化剂,并将其用于正丁烯氧化脱氢为1,3-丁二烯。观察到催化活性不仅显着取决于结晶度,而且还取决于铁氧体催化剂的组成。如果催化剂的结晶度太高,则通过晶格的氧溢出被严重抑制并且导致低催化活性。另一方面,在铁素体结构中存在α-Fe2 O 3可能导致反应性能降低。发现与强碱例如NaOH共沉淀是形成催化活性铁氧体结构的有效方法之一,因为有利的是获得具有适当结晶度的纯铁氧体组合物。在催化剂制备期间,必须完全除去钠,因为催化剂中残留的钠会大大降低反应性能。尽管使用温和的碱(例如NH4OH)有利于防止彻底洗涤,但形成α-Fe2O3和ZnFe2O4混合相可能会降低正丁烯转化率以及1,3-丁二烯选择性。

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