Hemavibool Khuanjit, Sansenya Theepakorn, Nanan Suwat
Department of Chemistry, Faculty of Science, Naresuan University, Phitsanulok 65000, Thailand.
Materials Chemistry Research Center, Center of Excellence for Innovation in Chemistry (PERCH-CIC), Department of Chemistry, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.
Antibiotics (Basel). 2022 Jun 2;11(6):761. doi: 10.3390/antibiotics11060761.
The efficient degradation of a toxic antibiotic from an aqueous solution is essential for environmental protection. Our research aimed to fabricate a bismuth vanadate (BiVO) catalyst via a facile hydrothermal method. The prepared catalyst exhibited a monoclinic phase with a band gap energy of 2.33 eV, indicating the excellent visible-light-active properties of a semiconductor. The photocatalytic performance of the synthesized BiVO catalyst was studied by determining the removal of tetracycline (TC) and oxytetracycline (OTC) antibiotics. After 240 min, under sunlight conditions, a high performance of 72% and 83% degradation of TC and OTC, respectively, was achieved. The photocatalytic degradation of the antibiotics correlates well with a first-order reaction, with a high rate constant of 0.0102 min. Photogenerated electrons and holes played an important role in the removal of the pollutant. After photocatalytic study, the structural stability of the prepared bismuth vanadate photocatalyst was confirmed. The photocatalyst provided a promising performance even after five successive runs. The result indicates the excellent cycling ability of the sample. The present work demonstrates a promising route for the preparation of a BiVO catalyst for the complete removal of toxic antibiotics in aqueous solutions.
从水溶液中有效降解有毒抗生素对于环境保护至关重要。我们的研究旨在通过简便的水热法制备钒酸铋(BiVO)催化剂。所制备的催化剂呈现单斜相,带隙能量为2.33 eV,表明该半导体具有优异的可见光活性。通过测定四环素(TC)和土霉素(OTC)抗生素的去除情况来研究合成的BiVO催化剂的光催化性能。在阳光条件下,240分钟后,TC和OTC的降解率分别高达72%和83%。抗生素的光催化降解与一级反应相关性良好,速率常数高达0.0102 min⁻¹。光生电子和空穴在污染物去除中起重要作用。经过光催化研究,证实了所制备的钒酸铋光催化剂的结构稳定性。即使经过连续五次运行,该光催化剂仍具有良好的性能。结果表明样品具有优异的循环能力。目前的工作展示了一条制备BiVO催化剂以完全去除水溶液中有毒抗生素的有前景的途径。