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Synthesis of Nano-Sized Zinc Oxide Photocatalyst by Combustion Method

机译:燃烧法合成纳米氧化锌光催化剂

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The objective of this research was to use combustion synthesis to create a nano-sized ZnO photo-catalyst using citric acid as the fuel and zinc nitrate as the oxidant.The starting materials were mixed in a stoichiometric ratio,and a slurry precursor with high homogeneity was formed.The precursor was ignited at room temperature,resulting in dry,loose,and voluminous ZnO powders.The powders,characterized by SEM,TEM and XRD,showed a particle size range of 40 to 80 nm with a wurtzite structure.The ZnO powders were introduced as a photocatalyst for the degradation of methyl orange,which was adopted as a model compound.UV light(6W)was used as the irradiation source to induce synthesized ZnO powders to perform catalytic activity.The photocatalytic reaction was executed in 40 mL of a 10 ppm methyl orange aqueous solution under 254 nm UV illumination.In this work,it was observed that both UV light and ZnO powders are needed for the photocatalytic reaction.In addition,it was found that increasing the amount of ZnO powder present in the MO(methyl orange-C_(14)H_(14)N3NaO3S)solution did not correlate directly with an increase in photocatalytic ability.It was found that the scattering problem of UV light also needs to be considered.The optimized photocatalytic degradation ratio in this work reached 92.7%.
机译:本研究的目的是利用燃烧合成技术,以柠檬酸为燃料,硝酸锌为氧化剂,制备出纳米ZnO光催化剂。以化学计量比混合原料,制得具有均一性的浆料前驱体。在室温下点燃该前体,得到干燥,松散和大量的ZnO粉末。通过SEM,TEM和XRD表征,该粉末的粒径范围为40至80 nm,具有纤锌矿结构。引入粉末用作降解甲基橙的光催化剂,用作模型化合物。以紫外光(6W)作为辐照源诱导合成的ZnO粉末发挥催化活性。在40mL的光催化条件下进行光催化反应。在254 nm的紫外线照射下制备10 ppm的甲基橙水溶液。在这项工作中,我们发现,光催化反应既需要UV光,也需要ZnO粉末。 MO(甲基橙-C_(14)H_(14)N3NaO3S)溶液中ZnO粉末的含量与光催化能力的增加没有直接关系,发现还需要考虑UV光的散射问题在这项工作中优化的光催化降解率达到了92.7%。

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