Department of Chemistry, Graduate School of Engineering, Mie University, Mie Japan.
Global Environment Center for Education & Research, Mie University, Mie Japan.
J Air Waste Manag Assoc. 2022 Oct;72(10):1137-1152. doi: 10.1080/10962247.2022.2071358. Epub 2022 Aug 25.
The photocatalyst Ag/AgO-modified ZnO, fabricated by a simple one-step calcination method, was applied into the degradation of organic pollutant dibutyl phthalate (DBP). Ag/ZnO and AgO/ZnO were prepared as a reference comparison. The prepared catalysts were evaluated by scanning electron microscope (SEM), transmission electron microscope (TEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), BET surface area measurement, and photoluminescence spectra (PL) and UV-Vis diffuse reflectance spectroscopy (DRS) and electrochemical measurements. After the irradiation with ultraviolet light (352 nm), the solution was sampled and subjected to HPLC to evaluate the degradation efficiency of DBP. Ag/AgO/ZnO showed the best results with the excellent degradation of DBP. Ag/AgO/ZnO was four times more efficient, relative to zinc oxide alone. According to photocatalyst characterization, the total pore volume of photocatalyst was improved by loading Ag and AgO, suggesting an increase in the active sites. Also, the efficient electron transfer of Ag/AgO/ZnO was mainly responsible for the enhanced activity. The reaction mechanism for Ag/AgO/ZnO was determined to become a Z-scheme. From the radical scavenger tests, the main active species was identified as superoxide radicals. The stability of Ag/AgO/ZnO could be confirmed after five cycling reutilization. It was found from the radical scavenger test that •O play an important role as the main reactive species in the photocatalytic degradation of DBP. Consequently, Ag/AgO/ZnO with a simple fabrication method seems to become one of the powerful photocatalyst for the photocatalytic degradation of organic pollutant in water.: This study discusses the usefulness of Ag/AgO/ZnO composites. This photocatalyst could be an approach to solve the environmental pollution caused by organic pollutants, which is a growing problem all over the world. In addition, the highly efficient photocatalyst Ag/AgO/ZnO is an inexpensive and reusable catalyst with great practical potential.Furthermore, to the best of our knowledge, there are very few reports that have examined the combination of Ag, AgO and ZnO. In addition, the photocatalytic mechanism has not been understood. Here, we introduce Ag into AgO/ZnO to improve the photocatalytic performance and photostability, enhance the activity, and elucidate the mechanism of Ag/AgO/ZnO.
通过简单的一步煅烧法制备的光催化剂 Ag/AgO-改性 ZnO 被应用于有机污染物邻苯二甲酸二丁酯 (DBP) 的降解。Ag/ZnO 和 AgO/ZnO 被制备作为参考比较。通过扫描电子显微镜 (SEM)、透射电子显微镜 (TEM)、X 射线衍射 (XRD)、X 射线光电子能谱 (XPS)、BET 比表面积测量和光致发光光谱 (PL) 和紫外可见漫反射光谱 (DRS) 和电化学测量来评估制备的催化剂。在紫外光 (352nm) 照射后,取样溶液并进行 HPLC 分析以评估 DBP 的降解效率。Ag/AgO/ZnO 表现出最好的结果,对 DBP 具有优异的降解效果。Ag/AgO/ZnO 的效率是单独氧化锌的四倍。根据光催化剂的表征,负载 Ag 和 AgO 提高了光催化剂的总孔体积,表明活性位点增加。此外,Ag/AgO/ZnO 的高效电子转移主要负责提高活性。Ag/AgO/ZnO 的反应机制被确定为 Z 型方案。通过自由基清除剂测试,确定主要的活性物质是超氧自由基。Ag/AgO/ZnO 的稳定性可以在五次循环再利用后得到确认。通过自由基清除剂测试发现,•O 在 DBP 的光催化降解中作为主要反应性物质发挥重要作用。因此,具有简单制备方法的 Ag/AgO/ZnO 似乎成为水中有机污染物光催化降解的有力光催化剂之一。: 本研究讨论了 Ag/AgO/ZnO 复合材料的有用性。这种光催化剂可能是解决由有机污染物引起的环境污染的一种方法,这是一个在全球范围内日益严重的问题。此外,高效光催化剂 Ag/AgO/ZnO 是一种廉价且可重复使用的催化剂,具有巨大的实际潜力。此外,据我们所知,很少有报道研究 Ag、AgO 和 ZnO 的组合。此外,光催化机制尚未被理解。在这里,我们将 Ag 引入 AgO/ZnO 中以提高光催化性能和光稳定性,提高活性,并阐明 Ag/AgO/ZnO 的机制。