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Preparation Of Zno Nanopowders By Thermal Plasma And Characterization Of Photo-catalytic Property

机译:热等离子体制备Zno纳米粉及其光催化性能表征

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Nano-sized zinc oxide (ZnO) powders were prepared via a thermal plasma process from micro-sized zinc powder while oxygen was employed as a reaction gas. Two different carrier gases, oxygen and argon, were evaluated and the flow rate of the reaction gas was controlled. The photo-catalytic activities of ZnO powders were evaluated by measuring the degradation of methylene blue (MB) in water under the UV and visible region. The prevailing goal of this study is to improve the photo-catalytic activity of nano-sized ZnO powders for the removal of environmental pollutants. The ZnO nanopowders were characterized by XRD, SEM, BET, and UV-vis spectrometry. Their mean crystallites sizes ranged from 26.5 nm to 48.6 nm. It was confirmed by a XRD analysis that the ZnO nanopowders had a high quality wurtzite structure. SEM and XRD results show that the size of the particles synthesized increased with an increase of the flow rate of the oxygen reaction gas. The powder obtained using the argon carrier gas with higher oxygen reaction gas flow rate was more rod-shape. The MB decomposition rates of the obtained ZnO nanopowders were studied under the UV and visible region. In the UV region, synthesized ZnO could decompose MB as well as commercial ZnO. However, in the visible region, the MB decomposition rate obtained using ZnO was much higher than that by commercial ZnO.
机译:在将氧气用作反应气体的同时,通过热等离子体工艺从微米尺寸的锌粉制备纳米尺寸的氧化锌(ZnO)粉。评价了两种不同的载气,氧气和氩气,并控制了反应气体的流速。通过在紫外和可见光区域内测量水中亚甲基蓝(MB)的降解来评估ZnO粉末的光催化活性。这项研究的主要目标是提高纳米级ZnO粉末的光催化活性,以去除环境污染物。 ZnO纳米粉通过XRD,SEM,BET和UV-vis光谱进行了表征。它们的平均微晶尺寸为26.5 nm至48.6 nm。通过XRD分析证实了ZnO纳米粉具有高质量的纤锌矿结构。 SEM和XRD结果表明,所合成的颗粒的尺寸随着氧气反应气体流速的增加而增加。使用具有较高氧气反应气体流速的氩气载气获得的粉末更呈棒状。在紫外和可见光区域研究了所得ZnO纳米粉的MB分解速率。在紫外区,合成的ZnO可以分解MB以及商用ZnO。但是,在可见光区域,使用ZnO所获得的MB分解速率远高于使用商用ZnO所获得的MB分解速率。

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