Photocatalytic performance and interaction mechanism of reverse micelle synthesized Cu-TiO2 nanomaterials towards levofloxacin under visible LED light
Author:
Funder
gujarat pollution control board gandhinagar gujarat india
Publisher
Springer Science and Business Media LLC
Subject
Physical and Theoretical Chemistry
Link
https://link.springer.com/content/pdf/10.1007/s43630-021-00141-8.pdf
Reference70 articles.
1. Bilal, M., Mehmood, S., Rasheed, T., & Iqbal, H. M. N. (2020). Antibiotics traces in the aquatic environment: Persistence and adverse environmental impact. Current Opinion Environment Science Health, 13, 68–74.
2. Werida, R. H., El-Okaby, A. M., & El-Khodary, N. M. (2020). Correction to: Evaluation of levofloxacin utilization in intensive care units of tertiary care hospital: A retrospective observational study. Drugs & Therapy Perspectives, 36, 40.
3. S. J. Mohammed, M. J. M-Ridha, K. M. Abed and A. A. M. Elgharbawy, Removal of levofloxacin and ciprofloxacin from aqueous solutions and an economic evaluation using the electrocoagulation process, Interantional Journal of Environmental. Analytical Chemistry,, 2021, 1–19.
4. Hao, L., Okano, K., Zhang, C., Zhang, Z., Lei, Z., Feng, C., Utsumi, M., Ihara, I., Maseda, H., & Shimizu, K. (2019). Effects of levofloxacin exposure on sequencing batch reactor (SBR) behavior and microbial community changes. Science of the Total Environment, 672, 227–238.
5. Zhou, Z., Zhang, Z., Feng, L., Zhang, J., Li, Y., Lu, T., & Qian, H. (2020). Adverse effects of levofloxacin and oxytetracycline on aquatic microbial communities. Science of the Total Environment, 734, 139499.
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