324
C. Bhagat et al.
Watkinson AJ, Murby EJ, Costanzo SD (2007) Removal of antibiotics in conventional and advanced
wastewater treatment: implications for environmental discharge and wastewater recycling. Water
Res 41(18):4164–4176
Watkinson AJ, Murby EJ, Kolpin DW, Costanzo SD (2009) The occurrence of antibiotics in an
urban watershed: from wastewater to drinking water. Sci Total Environ 407(8):2711–2723
Xie H, Liu W, Zhang J, Zhang C, Ren L (2011) Sorption of norfloxacin from aqueous solutions by
activated carbon developed from Trapa natans husk. Sci China Chem 54(5):835–843
Xiong W, Zeng Z, Li X, Zeng G, Xiao R, Yang Z, Xu H, Chen H, Cao J, Zhou C, Qin L (2019) Nidoped MIL-53 (Fe) nanoparticles for optimized doxycycline removal by using response surface
methodology from aqueous solution. Chemosphere 232:186–194
Xiong W, Zeng G, Yang Z, Zhou Y, Zhang C, Cheng M, Liu Y, Hu L, Wan J, Zhou C, Xu R (2018)
Adsorption of tetracycline antibiotics from aqueous solutions on nanocomposite multi-walled
carbon nanotube functionalized MIL-53 (Fe) as new adsorbent. Sci Total Environ 627:235–244
Xu W, Zhang G, Zou S, Ling Z, Wang G, Yan W (2009) A preliminary investigation on the occurrence
and distribution of antibiotics in the Yellow River and its tributaries, China. Water Environ Res
81(3):248–254
Yang X, Xu G, Yu H, Zhang Z (2016) Preparation of ferric-activated sludge-based adsorbent from
biological sludge for tetracycline removal. Biores Technol 211:566–573
Zhan X, Chen J, Yang YQ, Wu SJ, Chen FR, Ying GG, Zhang CJ, Zhang LL, Zhang Q, Sun
XW (2019) Removal of antibiotics and antibiotic resistance genes from domestic sewage by a
subsurface wastewater infiltration system with long-term operations. Environ Eng Sci 36(8):863–
872
Zhang CL, Qiao GL, Zhao F, Wang Y (2011) Thermodynamic and kinetic parameters of
ciprofloxacin adsorption onto modified coal fly ash from aqueous solution. J Mol Liq 163(1):53–
56
Zhang L, Wang Y, Jin S, Lu Q, Ji J (2017) Adsorption isotherm, kinetic and mechanism of
expanded graphite for sulfadiazine antibiotics removal from aqueous solutions. Environ Technol
38(20):2629–2638
Zheng Y, Huang MH, Chen L, Zheng W, Xie PK, Xu Q (2015) Comparison of tetracycline rejection
in reclaimed water by three kinds of forward osmosis membranes. Desalination 359:113–122
Zhou Y, Liu X, Xiang Y, Wang P, Zhang J, Zhang F, Wei J, Luo L, Lei M, Tang L (2017) Modification
of biochar derived from sawdust and its application in removal of tetracycline and copper from
aqueous solution: adsorption mechanism and modelling. Biores Technol 245:266–273
Précédent

- 339/447

Suivant