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Nanostructured of Vanadium Phosphorus Oxide (Vpo) Catalyst Prepared by Sonochemical Treatment

机译:纳米结构的钒磷氧化物(VPO)催化剂由多次化学处理制备

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A series of six nanostructures vanadium phosphorus oxide catalysts were synthesized through the starting material vanadium pentoxide which subjected to high intensity ultrasound irradiation with different duration of time. XRD patterns of all nanostructure vanadium phosphorus oxide catalyst were indexed to (VO)_2P_2O_7 with one additional small peak which corresponds to the present of small amount of V~(5+) phase except for the catalyst that undergo 120 min of ultrasound irradiation time. The surface morphologies of the catalysts are uniform, well defined shapes and surface structures in nano-scale range but tend to agglomerate with each other to form larger particles. Furthermore, high amount of active oxygen species were released from V~(4+) phase (O-V~(4+) pair) for the nanostructures VPO catalyst which were synthesized with 30 min of ultrasound irradiation time and drastic increment in n-butane conversion (9%) in catalytic evaluation test, suggested that these nanostructure VPO is an active catalyst for partial oxidation of n-butane towards malefic anhydride.
机译:通过具有不同持续时间的高强度超声辐射的原料钒五氧化氧化物合成了一系列六个纳米结构钒磷氧化物催化剂。所有纳米结构钒磷氧化物催化剂的XRD图谱用一个额外的小峰分为(VO)_2P_2O_7,除了经过120分钟的超声照射时间的催化剂之外,对应于少量V〜(5+)相的目的。催化剂的表面形态是均匀的,定义的纳米级范围内的细度和表面结构,但彼此倾向于聚集以形成较大的颗粒。此外,从V〜(4+)相(OV〜(4+)对)释放大量的活性氧物质,用于纳米结构VPO催化剂,其用30分钟的超声照射时间和正丁烷转化中的急剧增量合成。 (9%)在催化评价试验中,表明这些纳米结构VPO是用于将正丁烷朝向麦菲酸酐部分氧化的活性催化剂。

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