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首页> 外文期刊>Topics in Catalysis >Cation Vacant Fe_3-x-yV_x□_yO_4 Spinel-Type Catalysts for the Oxidation of Methanol to Formaldehyde
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Cation Vacant Fe_3-x-yV_x□_yO_4 Spinel-Type Catalysts for the Oxidation of Methanol to Formaldehyde

机译:阳离子空缺Fe_3-x-yV_x□_yO_4尖晶石型甲醇氧化甲醛的催化剂

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The potential of Fe-V-oxide catalysts for use in methanol oxidation is explored. Our results show that although FeVO4 is active and selective for formaldehyde (FA) formation, it is not completely stable towards volatilization under reaction conditions. Attempts to stabilize Fe-V-oxide were made using titania, alumina and silica supports. However, we observe that although some stabilization is achieved using titania and alumina, the supported catalysts are sensitive to volatilization considering the relatively low content of active oxide. Compared with supported V-oxide, the results show that iron causes stabilization of vanadium decreasing its volatility. Considering the observation that the neat FeVO4 restructures to form a spinel-type phase under influence of the catalysis, we prepared a series of cation vacant spinel-type Fe_(3-x-y) V_x□_yO_4 catalysts with various V/Fe ratio and consequent number of cation vacancies □. Opposed to the activity, which is rather constant irrespectively of the vanadium content, the selectivity to FA passes through a maximum of about 90% for Fe/V = 14. A spinel-type phase with the composition Fe_(2.26)V_(0.19)D_(0.20)O4 was prepared and subsequently preoxidized to different degree. It is observed that the spinel-type structure is stable and that the oxidation of vanadium and iron is balanced by an increasing number of cation vacancies. Moreover, irrespectively of the original degree of preoxidation, it is found that in methanol oxidation a steady state is reached where all samples are equally active and selective and have the same composition both in the bulk and at the surface. The results clearly demonstrate that the spinel-type catalysts are phase-stable, nonvolatile and flexible in that the cations can change oxidation state retaining the same basic structure type and Fe/V ratio.
机译:探索了用于甲醇氧化的Fe-V-氧化物催化剂的潜力。我们的结果表明,尽管FeVO4对甲醛(FA)的形成具有活性和选择性,但它在反应条件下对挥发并不完全稳定。使用二氧化钛,氧化铝和二氧化硅载体试图稳定Fe-V-氧化物。但是,我们观察到,尽管使用二氧化钛和氧化铝可以实现一定程度的稳定,但考虑到活性氧化物的含量相对较低,负载型催化剂对挥发很敏感。与负载的V-氧化物相比,结果表明铁引起钒的稳定化,降低了其挥发性。考虑到观察到纯净的FeVO4在催化作用下重组形成尖晶石型相,我们制备了一系列阳离子空位尖晶石型Fe_(3-xy)V_x□_yO_4催化剂,具有不同的V / Fe比和随后的数量阳离子空位□。与钒(无论钒含量多少)相当恒定的活性相反,Fe / V = 14时,对FA的选择性最大通过约90%。组成为Fe_(2.26)V_(0.19)的尖晶石型相制备了D_(0.20)O4,随后将其预氧化至不同程度。观察到尖晶石型结构是稳定的,并且钒和铁的氧化通过增加的阳离子空位来平衡。此外,发现与原始的预氧化度无关,在甲醇氧化中,达到了一个稳定的状态,其中所有样品均具有相同的活性和选择性,并且在本体和表面上都具有相同的组成。结果清楚地表明尖晶石型催化剂是相稳定的,不挥发的和柔性的,因为阳离子可以改变氧化态,并保持相同的基本结构类型和Fe / V比。

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