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Bismuth molybdate catalysts prepared by mild hydrothermal synthesis: Influence of pH on the selective oxidation of propylene

机译:温和水热合成法制备钼酸铋催化剂:pH对丙烯选择性氧化的影响

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摘要

A series of bismuth molybdate catalysts with relatively high surface area was prepared via mild hydrothermal synthesis. Variation of the pH value and Bi/Mo ratio during the synthesis allowed tuning of the crystalline Bi-Mo oxide phases, as determined by X-ray diffraction (XRD) and Raman spectroscopy. The pH value during synthesis had a strong influence on the catalytic performance. Synthesis using a Bi/Mo ratio of 1/1 at pH ≥ 6 resulted in γ-Bi2MoO6, which exhibited a better catalytic performance than phase mixtures obtained at lower pH values. However, a significantly lower catalytic activity was observed at pH = 9 due to the low specific surface area. γ-Bi2MoO6synthesized with Bi/Mo = 1/1 at pH = 6 and 7 exhibited relatively high surface areas and the best catalytic performance. All samples prepared with Bi/Mo = 1/1, except samples synthesized at pH = 1 and 9, showed better catalytic performance than samples synthesized with Bi/Mo = 2/3 at pH = 4 and 9 and γ-Bi2MoO6 synthesized by co-precipitation at pH = 7. At temperatures above 440 °C, the catalytic activity of the hydrothermally synthesized bismuth molybdates started to decrease due to sintering and loss of surface area. These results support that a combination of the required bismuth molybdate phase and a high specific surface area is crucial for a good performance in the selective oxidation of propylene.
机译:通过温和的水热合成制备了一系列具有较高表面积的钼酸铋催化剂。如通过X射线衍射(XRD)和拉曼光谱法所确定的,合成过程中pH值和Bi / Mo比的变化允许调整晶体Bi-Mo氧化物相。合成过程中的pH值对催化性能有很大影响。在pH≥6时使用Bi / Mo比为1/1进行合成会生成γ-Bi2MoO6,其表现出比在较低pH值下获得的相混合物更好的催化性能。然而,由于低的比表面积,在pH = 9时观察到明显较低的催化活性。在pH = 6和7时Bi / Mo = 1/1合成的γ-Bi2MoO6具有相对较高的表面积和最佳的催化性能。用Bi / Mo = 1/1制备的所有样品(在pH = 1和9时合成的样品除外)显示出比在pH = 4和9时通过Bi / Mo = 2/3合成的样品和由Co合成的γ-Bi2MoO6更好的催化性能。在pH = 7时发生沉淀。在高于440°C的温度下,由于烧结和表面积降低,水热合成钼酸铋的催化活性开始降低。这些结果表明,所需的钼酸铋相和高比表面积的结合对于丙烯选择性氧化的良好性能至关重要。

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