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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Synthesis of ZnO nanoparticles by co-precipitation method for solar driven photodegradation of Congo red dye at different pH
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Synthesis of ZnO nanoparticles by co-precipitation method for solar driven photodegradation of Congo red dye at different pH

机译:通过共沉淀法合成ZnO纳米粒子,用于不同pH的刚果红染料的太阳促进的光降解

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摘要

Solar driven photocatalytic processes to remove organic pollutants from wastewater and other aqueous solutions is very important and useful due to its environmental benefits regarding sustainability aspect. In this article, we report a study on the use of bare zinc oxide (ZnO) nanoparticles (NPs) prepared by the chemical low temperature co-precipitation method and used as a catalyst to degrade the Congo red dye from aqueous solution using solar radiation. We performed the photocatalytic experiments for degradation of Congo red dye under solar radiation at different pH values. The results showed that the ZnO NPs are effective under solar radiation for degradation of Congo red dye. Even when the pH was varied down to 4 or raised to 10, the degradation was observed to be slightly improved. This result is due to the excess of radicals species, which enhance the photocatalytic process. In general, the observed degradation efficiency of the ZnO NPs is due to the deep level defects within the band gap that were introduced during the growth process of the ZnO NPs, which enhance the absorption wavelength band towards the visible light region. Recycling of the ZnO NPs for 3 successive runs have indicated the feasibility of reusing the NPs for several times. This implies that by using bare ZnO NPs an efficient approach for degradation of toxic waste can be achieved. Radical scavengers were used to evaluate the role of the radicals in the reaction mechanism.
机译:太阳能驱动的光催化过程从废水和其他水溶液中除去有机污染物是非常重要的,并且由于其对可持续性方面的环境效益而有用。在本文中,我们报告了使用化学低温共沉淀法制备的裸氧化锌(ZnO)纳米颗粒(NPS)的研究,并用作使用太阳辐射从水溶液中降解刚果红染料的催化剂。我们在不同pH值下进行了在太阳辐射下降解了刚果红染料的光催化试验。结果表明,ZnO NPS在太阳辐射下有效,以降解刚果红染料。即使当pH变化至4或升至10时,也观察到降解以略微改善。该结果是由于多余的自由基物种,其增强了光催化过程。通常,ZnO NP的观察到的降解效率是由于在ZnO NP的生长过程中引入的带隙内的深度水平缺陷,其增强了朝向可见光区域的吸收波长带。 ZnO NPS为3个连续运行的回收表明了几次重用NPS的可行性。这意味着通过使用裸ZnO NPS,可以实现有效的毒性废物劣化的方法。激进的清除剂用于评估基团在反应机制中的作用。

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