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首页> 外文期刊>Journal of Thermal Spray Technology >Manufacturing of Photoactive beta-Bismuth Oxide by Flame Spray Oxidation
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Manufacturing of Photoactive beta-Bismuth Oxide by Flame Spray Oxidation

机译:火焰喷涂氧化光活性β-铋的制造

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Photoactive tetragonal bismuth oxide powder with different semiconducting characteristics was synthesized from Bi-pellets by flame spray oxidation. The effect of feedstock particle size and standoff distance (SOD) on the physical properties of beta-Bi2O3 keeping constant the fuel/oxygen ratio is here reported. The flame spray oxidized powder was collected either from evaporated or in-flight particles quenched in water. The combination of flame spray processing parameters led to different beta-Bi2O3 phase contents, oxidation characteristics, size distribution (nanometric and micrometric sized), morphology, and optical properties of the sprayed powder. The highest micrometric beta-Bi2O3 content quenched in water was obtained at a SOD of 30 cm using a particle size distribution of 12-60 mu m of Bi-feedstock. The obtained powder from in-flight particles collected in water allowed us to analyze the oxidation characteristics of bismuth. Micrometric powder shows the synthesis of snowman-like Bi/beta-Bi2O3 Janus particles. The nanometric sized Bi2O3 powder was continuously obtained by spray oxidation, where its collection efficiency depends on processing parameters and showed spherical morphology and a highly pure tetragonal phase with narrow visible light absorbance (E-g = 2.26 eV). These optical characteristics indicate that the obtained beta-Bi2O3 powder is suitable for high-performance visible-light photocatalyst.
机译:以铋球团为原料,采用火焰喷涂氧化法合成了具有不同半导体特性的光活性四方氧化铋粉末。本文报道了在保持燃料/氧气比不变的情况下,原料粒度和间隔距离(SOD)对β-Bi2O3物理性能的影响。火焰喷雾氧化粉末是从蒸发的或在水中淬火的飞行颗粒中收集的。火焰喷涂工艺参数的组合导致喷涂粉末的β-Bi2O3相含量、氧化特性、粒度分布(纳米和微米尺寸)、形貌和光学性质不同。使用12-60μm铋原料的粒度分布,在30 cm的草皮上获得在水中淬火的最高微米β-Bi2O3含量。从水中收集的飞行颗粒中获得的粉末使我们能够分析铋的氧化特性。测微粉末显示了类似雪人的Bi/beta-Bi2O3 Janus粒子的合成。通过喷雾氧化连续获得纳米尺寸的Bi2O3粉末,其收集效率取决于工艺参数,并显示出球形形貌和具有窄可见光吸收率(E-g=2.26 eV)的高纯度四方相。这些光学特性表明,所制备的β-Bi2O3粉末适用于高性能可见光光催化剂。

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