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Molybdenum-vanadium-antimony mixed oxide catalyst for isobutane partial oxidation synthesized using magneto hydrodynamic forces

机译:磁流体动力合成异丁烷部分氧化钼钒锑混合氧化物催化剂

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摘要

A peculiar effect was observed that the oxidation behavior of antimony oxide prepared in presence of a weak permanent magnetic field is changed. Reactivity of alpha-Sb2O3 (senarmontite) towards oxidation is significantly enhanced after recirculating its suspension in a magneto hydrodynamic (MHD) system. This inspired the MHD synthesis of a molybdenum-vanadiumantimony mixed oxide with superior catalytic activity for selective partial oxidation of isobutane. Traditionally these mixed oxides are synthesized via sol-gel processes involving complexing agents and/or costly alkoxides. Here a new convenient way is presented to synthesize Mo-V-Sb mixed oxide catalysts departing from senarmontite (alpha-Sb2O3), ammonium heptamolybdate and ammonium vanadate. The MHD treated mixed oxide prepared from suspensions of Sb2O3 with Mo and V salts was evaluated in isobutane partial oxidation and compared with conventionally prepared catalysts. Improved performance was observed for MHD catalysts, with a peak methacrolein selectivity of 40 % and decreased COx selectivity as compared to a reference „slurry-type‟ catalyst. Although the MHD synthesis mechanism cannot yet be explained on a molecular level, it represents significant scientific and economical potential. This report is intended as an invitation to assist in formulating a molecular mechanism capable of explaining these observations.
机译:观察到一个奇特的效果,即在弱磁场下制备的氧化锑的氧化行为发生了变化。在将其悬浮液在磁流体动力学(MHD)系统中循环使用后,α-Sb2O3(锂锰矿)对氧化的反应性显着增强。这激发了MHD合成钼-钒-锑混合氧化物的能力,该氧化物具有优异的催化活性,可选择性地部分氧化异丁烷。传统上,这些混合氧化物是通过涉及络合剂和/或昂贵的醇盐的溶胶-凝胶法合成的。在这里提出了一种新的简便方法来合成Mo-V-Sb混合氧化物催化剂,该催化剂不同于硒矿(α-Sb2O3),七钼酸铵和钒酸铵。由Sb2O3与Mo和V盐的悬浮液制得的MHD处理过的混合氧化物在异丁烷部分氧化中进行了评估,并与常规制备的催化剂进行了比较。与参考“浆料型”催化剂相比,MHD催化剂的性能得到改善,甲基丙烯醛的峰值选择性为40%,COx选择性降低。尽管尚不能从分子水平上解释MHD合成机理,但它代表了巨大的科学和经济潜力。本报告旨在邀请您协助制定能够解释这些发现的分子机制。

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