Antibiotics in water have recently caused increasing concerns for public health and ecological environments. In this work, we demonstrated polydopamine-coated graphene oxide/FeO (PDA@GO/FeO) imprinted nanoparticles coupled with magnetic separation for fast and selective removal of fluoroquinolone antibiotics in water. The nanoparticles were prepared by the self-polymerization of dopamine using sarafloxacin as a template. The imprinted PDA film of 10~20 nm uniformly covered the surface of GO/FeO providing selective binding sites. The nanoparticles showed rapid binding and a large capacity (70.9 mg/g). The adsorption data fitted well the Langmuir and pseudo-second order kinetic equations. The nanoparticles could be easily separated by a magnet following the adsorption and then regenerated by simple washing for repetitive adsorptions. The nanoparticles were successfully used for the removal of fluoroquinolone antibiotics in seawater, with removal efficiencies of more than 95%. The proposed strategy has potentials for efficient removal of antibiotics in environmental water.
Chemosphere. 2010 Nov;81(7):954-60
[PMID:
20797761]
Chemosphere. 2010 Sep;80(11):1353-9
[PMID:
20609462]
ACS Appl Mater Interfaces. 2012 Nov;4(11):5749-60
[PMID:
23062571]
Environ Sci Technol. 2010 Oct 1;44(19):7220-5
[PMID:
20509603]
Chem Soc Rev. 2016 Apr 21;45(8):2137-211
[PMID:
26936282]
ACS Appl Mater Interfaces. 2015 Apr 1;7(12):6690-7
[PMID:
25764972]
Anal Chem. 2001 Jul 1;73(13):3140-5
[PMID:
11467565]
Anal Chem. 2016 Jan 5;88(1):250-61
[PMID:
26539750]
Chemosphere. 2016 Jun;153:365-85
[PMID:
27031800]
Water Res. 2007 Oct;41(18):4164-76
[PMID:
17524445]
Br J Pharmacol. 1976 Aug;57(4):501-16
[PMID:
963339]
Talanta. 2014 Mar;120:76-83
[PMID:
24468345]
Environ Sci Technol. 2014 Nov 18;48(22):13188-96
[PMID:
25343749]
Science. 2007 Oct 19;318(5849):426-30
[PMID:
17947576]
Environ Sci Technol. 2010 Apr 1;44(7):2400-5
[PMID:
20205456]
Sci Rep. 2016 Jul 04;6:29230
[PMID:
27374974]
ACS Appl Mater Interfaces. 2016 Mar;8(10):6431-8
[PMID:
26907977]
Nanoscale. 2012 May 21;4(10):3141-7
[PMID:
22535306]
Anal Chem. 2011 Mar 15;83(6):2046-55
[PMID:
21338057]
Food Chem. 2015 Jul 15;179:206-12
[PMID:
25722156]
J Sep Sci. 2011 Mar;34(6):707-15
[PMID:
21312332]
Water Res. 2012 Sep 1;46(13):4081-90
[PMID:
22673337]
Environ Sci Technol. 2016 Mar 1;50(5):2692-9
[PMID:
26849047]
Environ Pollut. 2013 Apr;175:22-9
[PMID:
23313734]
Analyst. 2013 Jan 21;138(2):651-8
[PMID:
23175702]
Chem Commun (Camb). 2008 Nov 30;(44):5761-3
[PMID:
19009073]
Environ Sci Technol. 2010 Apr 15;44(8):3116-22
[PMID:
20201519]
Environ Sci Technol. 2006 Dec 1;40(23):7445-50
[PMID:
17181002]
Environ Sci Technol. 2012 Sep 4;46(17):9716-26
[PMID:
22846103]
Sci Total Environ. 2014 Dec 1;500-501:250-69
[PMID:
25226071]
Environ Sci Technol. 2010 May 1;44(9):3468-73
[PMID:
20384353]
Sci Total Environ. 2017 Oct 1;595:521-527
[PMID:
28395267]
Biosens Bioelectron. 2013 Sep 15;47:120-6
[PMID:
23567631]
J Hazard Mater. 2013 Jan 15;244-245:750-7
[PMID:
23177246]