Sunlight powered degradation of pentoxifylline Cs0.5Li0.5FeO2 as a green reusable photocatalyst: Mechanism, kinetics and toxicity studies

被引:23
作者
Dianey, Gallegos-Cerda Susana [1 ]
Kaur, Harpeet [2 ]
Dosanjh, H. S. [2 ]
Narayanan, Jayanthi [3 ]
Singh, Jashanpreet [2 ]
Yadav, Alpa [4 ]
Kumar, Deepak [2 ]
Luu, Son D. N. [5 ]
Sharma, Ajit [2 ]
Singh, Prabal Pratap [7 ]
Alberto, Huerta-Aguilar Carlos [6 ]
机构
[1] Inst Politecn Nacl, Escuela Nacl Ciencias Biol, Mexico City 11340, DF, Mexico
[2] Lovely Profess Univ, Sch Chem Engn & Phys Sci, Dept Chem, Phagwara 144411, India
[3] Univ Politecn Valle Mexico, Div Nanotechnol, Tultitlan 54901, Mexico
[4] Gautam Budha Univ, Sch Vocat Studies & Appl Sci, Dept Appl Chem, Greater Noida 201308, Uttar Pradesh, India
[5] Duy Tan Univ, Inst Res & Dev, Da Nang 550000, Vietnam
[6] Inst Tecnol Estudios Super Monterrey, Puebla 72453, Mexico
[7] GLA Univ, Dept Chem, Mathura 281406, UP, India
关键词
Ferrites; Sunlight photocatalysis; Magnetically recoverable nanoparticles; Drug degradation kinetics; Pentoxifylline; WASTE-WATER; ENDOCRINE DISRUPTORS; PHARMACEUTICAL CONTAMINATION; CATALYTIC-PROPERTIES; NANOPARTICLES; FERRITE; SURFACE; OXYGEN; RISK; EVOLUTION;
D O I
10.1016/j.jhazmat.2021.125762
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The degradation of Pentoxifylline (PXF) was achieved successfully by green energy in a built-in solar photocatalytic system using hybrid LiCs ferrites (Li0.5Cs0.5FeO2) as magnetically recoverable photocatalysts. Kinetics showed a first-order reaction rate with maximum PXF removal of 94.91% at mildly acidic pH; additionally, the ferromagnetic properties of catalyst allowed recovery and reuse multiple times, reducing costs and time in degradation processes. The degradation products were identified by HPLC-MS and allowed us to propose a thermodynamically feasible mechanism that was validated through DFT calculations. Additionally, toxicity studies have been performed in bacteria and yeast where high loadings of Cs showed to be harmful to Staphylococcus aureus (MIC> 4.0 mg/mL); Salmonella typhi (MIC> 8.0 mg/mL) and Candida albicans (MIC> 10.0 mg/ mL). The presented setup shows effectiveness and robustness in a degradation process using alternative energy sources for the elimination of non-biodegradable pollutants.
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页数:13
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