Bonora Renato, Boaretti Carlo, Campea Laura, Roso Martina, Martucci Alessandro, Modesti Michele, Lorenzetti Alessandra
Department of Industrial Engineering, University of Padova, Via Marzolo 9, 35131 Padova, Italy.
Nanomaterials (Basel). 2020 Jan 14;10(1):148. doi: 10.3390/nano10010148.
In this paper we studied the combination of advanced oxidation processes (AOPs), i.e., TiO-based photocatalysis and photo-Fenton process, on the degradation of aqueous solutions containing a low (90 ppm) concentration of formaldehyde. Heterogeneous nanostructured catalysts, supported on polymeric nanofibers, were used; for comparison, some homogeneous or partly heterogeneous systems were also analyzed. Furthermore, to make the process more sustainable (in terms of costs and safety) no hydrogen peroxide was added to the system. The results showed that the combination of AOPs gave a synergy since the presence of iron was beneficial in promoting the photocatalytic activity of TiO while TiO was beneficial in promoting the photo-Fenton reaction. Moreover, very good results were obtained using fully heterogeneous nanostructured catalysts (based on TiO and FeSO), without the need to add HO.
在本文中,我们研究了高级氧化过程(AOPs)的组合,即基于TiO的光催化和光芬顿过程,对含有低浓度(90 ppm)甲醛的水溶液的降解作用。使用了负载在聚合物纳米纤维上的多相纳米结构催化剂;为作比较,还分析了一些均相或部分多相体系。此外,为使该过程更具可持续性(在成本和安全性方面),未向体系中添加过氧化氢。结果表明,AOPs的组合产生了协同作用,因为铁的存在有利于促进TiO的光催化活性,而TiO有利于促进光芬顿反应。此外,使用完全多相的纳米结构催化剂(基于TiO和FeSO)获得了非常好的结果,无需添加HO。