Recent advances on the spherical metal oxides for sustainable degradation of antibiotics

Author:

Zhu Ke,Li Xin,Chen Yuwen,Huang Yizhe,Yang Zhiyu,Guan Guoqing,Yan Kai

Funder

Scientific and Technological Planning Project of Guangzhou City

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference194 articles.

1. Fecal pollution can explain antibiotic resistance gene abundances in anthropogenically impacted environments

2. C.N.-d.-R. Katariina M. M. Pärnänen, David Kneis, Thomas U. Berendonk, Damiano Cacace, Thi Thuy Do, Christian Elpers, Despo Fatta-Kassinos6, Isabel Henriques, Thomas Jaeger, Antti Karkman, Jose Luis Martinez, Stella G. Michael, Irene Michael-Kordatou, Kristin O’Sullivan, Sara Rodriguez-Mozaz, Thomas Schwartz, Hongjie Sheng, Henning Sørum, Robert D. Stedtfeld, James M. Tiedje, Saulo Varela Della Giustina, Fiona Walsh, Ivone Vaz-Moreira, Marko Virta, Célia M. Manaia, Sci. Adv. 5 (2019) 1-10.

3. Removal of antibiotics from wastewaters by membrane technology: Limitations, successes, and future improvements

4. Insights into the Fate and Removal of Antibiotics in Engineered Biological Treatment Systems: A Critical Review

5. Amino-functionalized biomass-derived porous carbons with enhanced aqueous adsorption affinity and sensitivity of sulfonamide antibiotics

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