| Literature DB >> 32092644 |
Baihui Xia1, Fang Deng2, Shuqu Zhang1, Li Hua1, Xubiao Luo3, Meiying Ao4.
Abstract
Petal-like ZnS-SnS2 heterojunctions with Z-scheme band alignment were prepared by one-pot solvothermal strategy. The optimal (1:1) ZnS-SnS2 can degrade 93.46 % of tetracycline and remove 73.9 % COD of pharmaceutical wastewater under visible-light irradiation due to the efficient production of H, O2-, h+ and OH. The toxicity evaluation by ECOSAR prediction and the growth of E. coli indicates efficient toxicity reduction of tetracycline by photocatalysis and the non-toxicity of ZnS-SnS2. The attacked sites on tetracycline by reactive species were analyzed according to Fukui index, and two degradation pathways of tetracycline were inferred via the identification of intermediate products. Tetracycline degradation efficiency and the energy consumption in different water bodies were compared, and it was found that the electrical energy per order (EE/O) was the lowest in Ganjiang River. The valence band offset (ΔEVBO) and conduction band offset (ΔECBO) of ZnS-SnS2 were 1.02 eV and 0.22 eV, respectively. The probable photocatalytic mechanism of ZnS/SnS2 heterojunctions with Z-scheme band alignment based on ΔEVBO and ΔECBO was first presented.Entities:
Keywords: Pharmaceutical pollutant; Photocatalytic activity; Valence/conduction band offset; Z-scheme band alignment; ZnS-SnS(2) heterojunction
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Year: 2020 PMID: 32092644 DOI: 10.1016/j.jhazmat.2020.122345
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588