| Literature DB >> 31254785 |
Ji-Chao Wang1, Ying Li2, Heng Li2, Zeng-Hui Cui2, Yuxia Hou2, Weina Shi3, Kai Jiang4, Lingbo Qu5, Yu-Ping Zhang2.
Abstract
Photocatalytic degradation by efficient and easy recyclable semiconductor-catalysts is an ideal way to solve the environmental problem. A series of Fe2O3/Polystyrene (Fe2O3/PS) composite fibers with hydrophobic property were obtained by the electrospinning and γ-Ray irradiation methods. The γ-Ray irradiation treatment not only formed steady micro-nano construction of nanoparticles and fiber, but also reduced the hydroxyl group on Fe2O3 surface. The high photocatalytic efficiencies of Fe2O3/PS fiber were discovered with the high content of 4-chlorophenol (4-CP) and 4-nitrophenol (4-NP), due to the synergetic effect of adsorption and degradation. The suitable adsorption capacity of Fe2O3/PS could promote the utilization of the generated hydroxyl radical(OH) to directly oxidize the adsorbed pollutant molecules. Additionally, the photocatalytic activities for 4-CP and 4-NP still reached 80% and 75% in the 6th cycling and the composite fiber exhibited the good recyclability, which has the application development prospect for wastewater treatment. The mechanism of 4-CP and 4-NP decomposition was verified. Hence, the gained results could provide some insights into phenol degradation over the multifunctional and efficient catalyst.Entities:
Keywords: 4-chlorophenol; 4-nitrophenol; Fe(2)O(3)/PS fiber; Photocatalytic degradation; γ-Ray
Year: 2019 PMID: 31254785 DOI: 10.1016/j.jhazmat.2019.120806
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588