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The role of graphene oxide and graphene oxide-based nanomaterials in the removal of pharmaceuticals from aqueous media: a review

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Abstract

In this review paper, the ill effects of pharmaceuticals (PhAs) on the environment and their adsorption on graphene oxide (GO) and graphene oxide-based (GO-based) nanomaterials have been summarised and discussed. The adsorption of prominent PhAs discussed herein includes beta-blockers (atenolol and propranolol), antibiotics (tetracycline, ciprofloxacin and sulfamethoxazole), pharmaceutically active compounds (carbamazepine) and analgesics such as diclofenac. The adsorption of PhAs strictly depends upon the experimental conditions such as pH, adsorbent and adsorbate concentrations, temperature, ionic strength, etc. To understand the adsorption mechanism and feasibility of the adsorption process, the adsorption isotherms, thermodynamics and kinetic studies were also considered. Except for some cases, GO and its derivatives show excellent adsorption capacities for PhAs, which is crucial for their applications in the environmental pollution cleanup.

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Abbreviations

AA:

Amoxicillin

AC:

Activated carbon

AOPs:

Advanced oxidation processes

APAP:

Acetaminophen

ASA:

Aspirin

ATL:

Atenolol

BFs:

Biomass fibres

BOD:

Biological oxygen demand

BSA:

Bovine serum albumin

CA:

Calcium alginate

CAF:

Caffeine

CBZ:

Carbamazepine

CIP:

Ciprofloxacin

CNTs:

Carbon nanotubes

CPC:

Chemically prepared carbon

CSC:

China Scholarship Council

CTC:

Chlortetracycline

CVD:

Chemical vapour deposition

CX:

Carbon xerogel

DOC:

Doxycycline

DOM:

Dissolved organic matter

Dorzo:

Dorzolamide

DOX:

Doxorubicin hydrochloride

D-R:

Dubinin–Radushkevich

EDCs:

Endocrine disrupting compounds

GO/CSA:

GO/poly(acrylic acid) grafted with chitosan

GO:

Graphene oxide

GO-MPs:

Graphene oxide functionalized magnetic nanoparticles

GONPs:

Graphene oxide nanoplatelets

HA:

Humic acid

IBU:

Ibuprofen

IHM:

Improved Hummer’s method

KEP:

Ketoprofen

MCGO:

Magnetic chitosan-grafted graphene oxide nanocomposite

MHM:

Modified Hummer’s method

MMCC:

Magnetic mesoporous carbon composite

Mont:

Montmorillonite

NOR:

Norfloxacin

OCFGs:

Oxygen-containing functional groups

OTC:

Oxytetracycline

PhAs:

Pharmaceuticals

PRO:

Propranolol

SAs:

Sulfonamides

SDBS:

Sodium dodecyl benzene sulfonate

SMX:

Sulfamethoxazole

SPY:

Sulfapyridine

SSA:

Specific surface area

STZ:

Sulfathiazole

TC:

Tetracycline

WWTPs:

Wastewater treatment plants

References

  • Adriano WS, Veredas V, Santana CC, Gonçalves LRB (2005) Adsorption of amoxicillin on chitosan beads: kinetics, equilibrium and validation of finite bath models. Biochem Eng J 27:132–137

    Article  CAS  Google Scholar 

  • Aksu Z (2005) Application of biosorption for the removal of organic pollutants: a review. Process Biochem 40:997–1026

    Article  CAS  Google Scholar 

  • Al-Bayati RA (2010) Adsorption-desorption isotherm of one of antidiabetic drug from aqueous solutions on some pharmaceutical adsorbents. Eur J Sci Res 137:111–120

    Google Scholar 

  • Al-Khateeb LA, Almotiry S, Salam MA (2014) Adsorption of pharmaceutical pollutants onto graphene nanoplatelets. Chem Eng J 248:191–199

    Article  CAS  Google Scholar 

  • Amarnath CA, Hong CE, Kim NH, Ku B-C, Kuila T, Lee JH (2011) Efficient synthesis of graphene sheets using pyrrole as a reducing agent. Carbon 49:3497–3502

    Article  CAS  Google Scholar 

  • Ambrosi A, Chua CK, Bonanni A, Pumera M (2012) Lithium aluminum hydride as reducing agent for chemically reduced graphene oxides. Chem Mater 24:2292–2298

    Article  CAS  Google Scholar 

  • Arami M, Limaee NY, Mahmoodi NM (2006) Investigation on the adsorption capability of egg shell membrane towards model textile dyes. Chemosphere 65:1999–2008

    Article  CAS  Google Scholar 

  • Aristov VY, Urbanik G, Kummer K, Vyalikh DV, Molodtsova OV, Preobrajenski AB, Zakharov AA, Hess C, Hänke T, Buchner B (2010) Graphene synthesis on cubic SiC/Si wafers. Perspectives for mass production of graphene-based electronic devices. Nano Lett 10:992–995

    Article  CAS  Google Scholar 

  • Arvidsson R, Kushnir D, Sandén BA, Molander S (2014) Prospective life cycle assessment of graphene production by ultrasonication and chemical reduction. Environ Sci Technol 48:4529–4536

    Article  CAS  Google Scholar 

  • Banerjee P, Das P, Zaman A, Das P (2016) Application of graphene oxide nanoplatelets for adsorption of ibuprofen from aqueous solutions: evaluation of process kinetics and thermodynamics. Process Safety Environ Protect 101:45–53

    Article  CAS  Google Scholar 

  • Berger C, Song Z, Li X, Wu X, Brown N, Naud C, Mayou D, Li T, Hass J, Marchenkov AN (2006) Electronic confinement and coherence in patterned epitaxial graphene. Science 312:1191–1196

    Article  CAS  Google Scholar 

  • Berresheim AJ, Müller M, Müllen K (1999) Polyphenylene nanostructures. Chem Rev 99:1747–1786

    Article  CAS  Google Scholar 

  • Biziuk M, Przyjazny A, Czerwinski J, Wiergowski M (1996) Occurrence and determination of pesticides in natural and treated waters. J Chromatogr A 754:103–123

    Article  CAS  Google Scholar 

  • Brain RA, Hanson ML, Solomon KR, Brooks BW (2008) Aquatic plants exposed to pharmaceuticals: effects and risks. Reviews of environmental contamination and toxicology. Springer, pp. 67–115

  • Brodin T, Fick J, Jonsson M, Klaminder J (2013) Dilute concentrations of a psychiatric drug alter behavior of fish from natural populations. Science 339:814–815

    Article  CAS  Google Scholar 

  • Bruno J, De Pablo J, Duro L, Figuerola E (1995) Experimental study and modeling of the U (VI)-Fe (OH)3 surface precipitation/coprecipitation equilibria. Geochim Cosmochim Acta 59:4113–4123

    Article  CAS  Google Scholar 

  • Buser H-R, Müller MD, Theobald N (1998a) Occurrence of the pharmaceutical drug clofibric acid and the herbicide mecoprop in various Swiss lakes and in the North Sea. Environ Sci Technol 32:188–192

    Article  CAS  Google Scholar 

  • Buser H-R, Poiger T, Müller MD (1998b) Occurrence and fate of the pharmaceutical drug diclofenac in surface waters: rapid photodegradation in a lake. Environ Sci Technol 32:3449–3456

    Article  CAS  Google Scholar 

  • Buser H-R, Poiger T, Müller MD (1999) Occurrence and environmental behavior of the chiral pharmaceutical drug ibuprofen in surface waters and in wastewater. Environ Sci Technol 33:2529–2535

    Article  CAS  Google Scholar 

  • Cai N, Larese-Casanova P (2014) Sorption of carbamazepine by commercial graphene oxides: a comparative study with granular activated carbon and multiwalled carbon nanotubes. J Colloid Interf Sci 426:152–161

    Article  CAS  Google Scholar 

  • Campos B, Piña B, Barata CC (2012) Mechanisms of action of selective serotonin reuptake inhibitors in Daphnia magna. Environ Sci Technol 46:2943–2950

    Article  CAS  Google Scholar 

  • Carabineiro S, Thavorn-Amornsri T, Pereira M, Figueiredo J (2011) Adsorption of ciprofloxacin on surface-modified carbon materials. Water Res 45:4583–4591

    Article  CAS  Google Scholar 

  • Carabineiro S, Thavorn-Amornsri T, Pereira M, Serp P, Figueiredo J (2012) Comparison between activated carbon, carbon xerogel and carbon nanotubes for the adsorption of the antibiotic ciprofloxacin. Catal Today 186:29–34

    Article  CAS  Google Scholar 

  • Carbajo JB, Petre AL, Rosal R, Berná A, Letón P, García-Calvo E, Perdigón-Melón JA (2016) Ozonation as pre-treatment of activated sludge process of a wastewater containing benzalkonium chloride and NiO nanoparticles. Chem Eng J 283:740–749

    Article  CAS  Google Scholar 

  • Carmalin Sophia A, Lima EC, Allaudeen N, Rajan S (2016) Application of graphene based materials for adsorption of pharmaceutical traces from water and wastewater—a review. Desal Water Treat 57:27573–27586

    CAS  Google Scholar 

  • Chamjangali MA, Bagherian G, Javid A, Boroumand S, Farzaneh N (2015) Synthesis of Ag-ZnO with multiple rods (multipods) morphology and its application in the simultaneous photo-catalytic degradation of methyl orange and methylene blue. Spectrochim Acta Part A: Mol Biomol Spect 150:230–237

    Article  CAS  Google Scholar 

  • Chang P-H, Li Z, Jiang W-T, Jean J-S (2009a) Adsorption and intercalation of tetracycline by swelling clay minerals. Appl Clay Sci 46:27–36

    Article  CAS  Google Scholar 

  • Chang P-H, Li Z, Yu T-L, Munkhbayer S, Kuo T-H, Hung Y-C, Jean J-S, Lin K-H (2009b) Sorptive removal of tetracycline from water by palygorskite. J Hazard Mater 165:148–155

    Article  CAS  Google Scholar 

  • Chang X, Meyer MT, Liu X, Zhao Q, Chen H, Chen J-A, Qiu Z, Yang L, Cao J, Shu W (2010) Determination of antibiotics in sewage from hospitals, nursery and slaughter house, wastewater treatment plant and source water in Chongqing region of Three Gorge Reservoir in China. Environ Pollut 158:1444–1450

    Article  CAS  Google Scholar 

  • Chen H, Gao B, Li H (2015) Removal of sulfamethoxazole and ciprofloxacin from aqueous solutions by graphene oxide. J Hazard Mater 282:201–207

    Article  CAS  Google Scholar 

  • Chowdhury S, Balasubramanian R (2014) Recent advances in the use of graphene-family nanoadsorbents for removal of toxic pollutants from wastewater. Adv Colloid Interf Sci 204:35–56

    Article  CAS  Google Scholar 

  • Cox CE, Marbury TC, Pittman WG, Brown GL, Auerbach SM, Fox BC, Yang JY (2002) A randomized, double-blind, multicenter comparison of gatifloxacin versus ciprofloxacin in the treatment of complicated urinary tract infection and pyelonephritis. Clin Ther 24:223–236

    Article  CAS  Google Scholar 

  • del Rosario Brunetto M, Clavijo S, Delgado Y, Orozco W, Gallignani M, Ayala C, Cerdà V (2015) Development of a MSFIA sample treatment system as front end of GC–MS for atenolol and propranolol determination in human plasma. Talanta 132:15–22

    Article  CAS  Google Scholar 

  • Deng D, Pan X, Zhang H, Fu Q, Tan D, Bao X (2010) Freestanding graphene by thermal splitting of silicon carbide granules. Adv Mater 22:2168–2171

    Article  CAS  Google Scholar 

  • Di Poi C, Bidel F, Dickel L, Bellanger C (2014) Cryptic and biochemical responses of young cuttlefish Sepia officinalis exposed to environmentally relevant concentrations of fluoxetine. Aquat Toxicol 151:36–45

    Article  CAS  Google Scholar 

  • Díaz-Cruz MS, MAJ L d A, Barceló D (2003) Environmental behavior and analysis of veterinary and human drugs in soils, sediments and sludge. TrAC-Trends Anal Chem 22:340–351

    Article  CAS  Google Scholar 

  • Diwan V, Tamhankar AJ, Khandal RK, Sen S, Aggarwal M, Marothi Y, Iyer RV, Sundblad-Tonderski K, Stålsby-Lundborg C (2010) Antibiotics and antibiotic-resistant bacteria in waters associated with a hospital in Ujjain, India. BMC Public Health 10:1–8

    Article  CAS  Google Scholar 

  • Dong S, Sun Y, Wu J, Wu B, Creamer AE, Gao B (2015) Graphene oxide as filter media to remove levofloxacin and lead from aqueous solution. Chemosphere 150:759–764

    Article  CAS  Google Scholar 

  • Dreyer DR, Park S, Bielawski CW, Ruoff RS (2010) The chemistry of graphene oxide. Chem Soc Rev 39:228–240

    Article  CAS  Google Scholar 

  • Drillia P, Dokianakis SN, Fountoulakis MS, Kornaros M, Stamatelatou K, Lyberatos G (2005) On the occasional biodegradation of pharmaceuticals in the activated sludge process: the example of the antibiotic sulfamethoxazole. J Hazard Mater 122:259–265

    Article  CAS  Google Scholar 

  • El-Shafey E-SI, Al-Lawati H, Al-Sumri AS (2012) Ciprofloxacin adsorption from aqueous solution onto chemically prepared carbon from date palm leaflets. J Environ Sci 24:1579–1586

    Article  CAS  Google Scholar 

  • Fatta-Kassinos D, Meric S, Nikolaou A (2011) Pharmaceutical residues in environmental waters and wastewater: current state of knowledge and future research. Anal Bioanal Chem 399:251–275

    Article  CAS  Google Scholar 

  • Fernandez-Merino M, Guardia L, Paredes J, Villar-Rodil S, Solis-Fernandez P, Martinez-Alonso A, Tascon J (2010) Vitamin C is an ideal substitute for hydrazine in the reduction of graphene oxide suspensions. J Phys Chem C 114:6426–6432

    Article  CAS  Google Scholar 

  • Figueroa RA, Leonard A, MacKay AA (2004) Modeling tetracycline antibiotic sorption to clays. Environ Sci Technol 38:476–483

    Article  CAS  Google Scholar 

  • Gao W, Alemany LB, Ci L, Ajayan PM (2009) New insights into the structure and reduction of graphite oxide. Nature Chem 1:403–408

    Article  CAS  Google Scholar 

  • Gao Y, Li Y, Zhang L, Huang H, Hu J, Shah SM, Su X (2012) Adsorption and removal of tetracycline antibiotics from aqueous solution by graphene oxide. J Colloid Interface Sci 368:540–546

    Article  CAS  Google Scholar 

  • Gao Y, Yue Q, Gao B, Sun Y (2015) Optimization preparation of activated carbon from Enteromorpha prolifra using response surface methodology and its adsorption studies of fluoroquinolone antibiotics. Desalination Water Treat 55:624–636

    Article  CAS  Google Scholar 

  • García-Galán MJ, González Blanco S, López Roldán R, Díaz-Cruz S, Barceló D (2012) Ecotoxicity evaluation and removal of sulfonamides and their acetylated metabolites during conventional wastewater treatment. Sci Total Environ 437:403–412

    Article  CAS  Google Scholar 

  • Geiser L, Henchoz Y, Galland A, Carrupt PA, Veuthey JL (2005) Determination of pKa values by capillary zone electrophoresis with a dynamic coating procedure. J Sep Sci 28:2374–2380

    Article  CAS  Google Scholar 

  • Genç N, Dogan EC (2015) Adsorption kinetics of the antibiotic ciprofloxacin on bentonite, activated carbon, zeolite, and pumice. Desalination Water Treat 53:785–793

    Article  CAS  Google Scholar 

  • Ghadim EE, Manouchehri F, Soleimani G, Hosseini H, Kimiagar S, Nafisi S (2013) Adsorption properties of tetracycline onto graphene oxide: equilibrium, kinetic and thermodynamic studies. PLoS One 8:1–9

    Article  CAS  Google Scholar 

  • Göbel A, McArdell CS, Joss A, Siegrist H, Giger W (2007) Fate of sulfonamides, macrolides, and trimethoprim in different wastewater treatment technologies. Sci Total Environ 372:361–371

    Article  CAS  Google Scholar 

  • Godoy AA, Kummrow F, Pamplin PAZ (2015) Occurrence, ecotoxicological effects and risk assessment of antihypertensive pharmaceutical residues in the aquatic environment—a review. Chemosphere 138:281–291

    Article  CAS  Google Scholar 

  • Grobert N (2007) Carbon nanotubes—becoming clean. Mater Today 10:28–35

    Article  CAS  Google Scholar 

  • Guo H-L, Wang X-F, Qian Q-Y, Wang F-B, Xia X-H (2009) A green approach to the synthesis of graphene nanosheets. ACS Nano 3:2653–2659

    Article  CAS  Google Scholar 

  • Halling-Sørensen B, Nielsen SN, Lanzky P, Ingerslev F, Lützhøft HH, Jørgensen S (1998) Occurrence, fate and effects of pharmaceutical substances in the environment—a review. Chemosphere 36:357–393

    Article  Google Scholar 

  • Hampel M, Bron JE, Taggart JB, Leaver MJ (2014) The antidepressant drug carbamazepine induces differential transcriptome expression in the brain of Atlantic salmon, Salmo salar. Aquat Toxicol 151:114–123

    Article  CAS  Google Scholar 

  • Hartmann A, Alder AC, Koller T, Widmer RM (1998) Identification of fluoroquinolone antibiotics as the main source of umuC genotoxicity in native hospital wastewater. Environ Toxicol Chem 17:377–382

    Article  CAS  Google Scholar 

  • Hirsch A (2009) Unzipping carbon nanotubes: a peeling method for the formation of graphene nanoribbons. Angew Chem Int Ed 48:6594–6596

    Article  CAS  Google Scholar 

  • Hirsch R, Ternes T, Haberer K, Kratz K-L (1999) Occurrence of antibiotics in the aquatic environment. Sci Total Environ 225:109–118

    Article  CAS  Google Scholar 

  • Hu R, Shao D, Wang X (2014) Graphene oxide/polypyrrole composites for highly selective enrichment of U(VI) from aqueous solutions. Polym Chem 5:6207–6215

    Article  CAS  Google Scholar 

  • Hu X, Zhou Q (2013) Health and ecosystem risks of graphene. Chem Rev 113:3815–3835

    Article  CAS  Google Scholar 

  • Huang L, Wang M, Shi C, Huang J, Zhang B (2014) Adsorption of tetracycline and ciprofloxacin on activated carbon prepared from lignin with H3PO4 activation. Desalination Water Treat 52:2678–2687

    Article  CAS  Google Scholar 

  • Hughes SR, Kay P, Brown LE (2012) Global synthesis and critical evaluation of pharmaceutical data sets collected from river systems. Environ Sci Technol 47:661–677

    Article  CAS  Google Scholar 

  • Islam MS, Zhang Y, McPhedran KN, Liu Y, Gamal El-Din M (2015) Granular activated carbon for simultaneous adsorption and biodegradation of toxic oil sands process-affected water organic compounds. J Environ Manag 152:49–57

    Article  CAS  Google Scholar 

  • Jauris I, Matos C, Saucier C, Lima E, Zarbin A, Fagan S, Machado F, Zanella I (2016) Adsorption of sodium diclofenac on graphene: a combined experimental and theoretical study. Phys Chem Chem Phys 18:1526–1536

    Article  CAS  Google Scholar 

  • Jelic A, Gros M, Ginebreda A, Cespedes-Sánchez R, Ventura F, Petrovic M, Barcelo D (2011) Occurrence, partition and removal of pharmaceuticals in sewage water and sludge during wastewater treatment. Water Res 45:1165–1176

    Article  CAS  Google Scholar 

  • Jiang L-H, Liu Y-G, Zeng G-M, Xiao F-Y, Hu X-J, Hu X, Wang H, Li T-T, Zhou L, Tan X-F (2016) Removal of 17β-estradiol by few-layered graphene oxide nanosheets from aqueous solutions: external influence and adsorption mechanism. Chem Eng J 284:93–102

    Article  CAS  Google Scholar 

  • Jiang W-T, Chang P-H, Wang Y-S, Tsai Y, Jean J-S, Li Z, Krukowski K (2013) Removal of ciprofloxacin from water by birnessite. J Hazard Mater 250:362–369

    Article  CAS  Google Scholar 

  • Jiao L, Zhang L, Wang X, Diankov G, Dai H (2009) Narrow graphene nanoribbons from carbon nanotubes. Nature 458:877–880

    Article  CAS  Google Scholar 

  • Jin Z, Wang X, Sun Y, Ai Y, Wang X (2015) Adsorption of 4-n-nonylphenol and bisphenol-A on magnetic reduced graphene oxides: a combined experimental and theoretical studies. Environ Sci Technol 49:9168–9175

    Article  CAS  Google Scholar 

  • Jobling S, Williams R, Johnson A, Taylor A, Gross-Sorokin M, Nolan M, Tyler CR, van Aerle R, Santos E, Brighty G (2005) Predicted exposures to steroid estrogens in UK rivers correlate with widespread sexual disruption in wild fish populations. Environ Health Perspect 114:32–39

    Article  Google Scholar 

  • Kaniyoor A, Baby TT, Ramaprabhu S (2010) Graphene synthesis via hydrogen induced low temperature exfoliation of graphite oxide. J Mater Chem 20:8467–8469

    Article  CAS  Google Scholar 

  • Kemper N (2008) Veterinary antibiotics in the aquatic and terrestrial environment. Ecolog Indicat 8:1–13

    Article  CAS  Google Scholar 

  • Kerkez-Kuyumcu Ö, Bayazit ŞS, Salam MA (2016) Antibiotic amoxicillin removal from aqueous solution using magnetically modified graphene nanoplatelets. J Ind Eng Chem 36:198–205

    Article  CAS  Google Scholar 

  • Khataee A, Gholami P, Sheydaei M (2016) Heterogeneous Fenton process by natural pyrite for removal of a textile dye from water: effect of parameters and intermediate identification. J Taiwan Inst Chem Eng 58:366–373

    Article  CAS  Google Scholar 

  • Khetan SK, Collins TJ (2007) Human pharmaceuticals in the aquatic environment: a challenge to green chemistry. Chem Rev 107:2319–2364

    Article  CAS  Google Scholar 

  • Kidd KA, Blanchfield PJ, Mills KH, Palace VP, Evans RE, Lazorchak JM, Flick RW (2007) Collapse of a fish population after exposure to a synthetic estrogen. Proc Nat Acad Sci 104:8897–8901

    Article  CAS  Google Scholar 

  • Kim JM, Hong WG, Lee SM, Chang SJ, Jun Y, Kim BH, Kim HJ (2014) Energy storage of thermally reduced graphene oxide. Int J Hydrog Energy 39:3799–3804

    Article  CAS  Google Scholar 

  • Kim SD, Cho J, Kim IS, Vanderford BJ, Snyder SA (2007) Occurrence and removal of pharmaceuticals and endocrine disruptors in South Korean surface, drinking, and waste waters. Water Res 41:1013–1021

    Article  CAS  Google Scholar 

  • Kinney CA, Furlong ET, Werner SL, Cahill JD (2006) Presence and distribution of wastewater-derived pharmaceuticals in soil irrigated with reclaimed water. Environ Toxicol Chem 25:317–326

    Article  CAS  Google Scholar 

  • Kümmerer K, Steger-Hartmann T, Meyer M (1997) Biodegradability of the anti-tumour agent ifosfamide and its occurrence in hospital effluents and communal sewage. Water Res 31:2705–2710

    Article  Google Scholar 

  • Kümmerer K, Al-Ahmad A, Mersch-Sundermann V (2000a) Biodegradability of some antibiotics, elimination of the genotoxicity and affection of wastewater bacteria in a simple test. Chemosphere 40:701–710

    Article  Google Scholar 

  • Kümmerer K, Al-Ahmad A, Wiethan J, Hertle W, Henninger A (2000b) Effects and fate of antibiotics in sewage treatment plants. Proceedings of the Third SETAC World Congress, May, pp. 21–25

  • Kümmerer K (2001) Drugs in the environment: emission of drugs, diagnostic aids and disinfectants into wastewater by hospitals in relation to other sources—a review. Chemosphere 45:957–969

    Article  Google Scholar 

  • Kümmerer K (2004) Resistance in the environment. J Antimicrob Chemother 54:311–320

    Article  CAS  Google Scholar 

  • Kwon J, Lee B (2015) Bisphenol A adsorption using reduced graphene oxide prepared by physical and chemical reduction methods. Chem Eng Res Design 104:519–529

    Article  CAS  Google Scholar 

  • Kyzas GZ, Bikiaris DN, Seredych M, Bandosz TJ, Deliyanni EA (2014) Removal of dorzolamide from biomedical wastewaters with adsorption onto graphite oxide/poly(acrylic acid) grafted chitosan nanocomposite. Bioresour Technol 152:399–406

    Article  CAS  Google Scholar 

  • Kyzas GZ, Fu J, Lazaridis NK, Bikiaris DN, Matis KA (2015a) New approaches on the removal of pharmaceuticals from wastewaters with adsorbent materials. J Mol Liq 209:87–93

    Article  CAS  Google Scholar 

  • Kyzas GZ, Koltsakidou A, Nanaki SG, Bikiaris DN, Lambropoulou DA (2015b) Removal of beta-blockers from aqueous media by adsorption onto graphene oxide. Sci Total Environ 537:411–420

    Article  CAS  Google Scholar 

  • Larsson D, Adolfsson-Erici M, Parkkonen J, Pettersson M, Berg A, Olsson P-E, Förlin L (1999) Ethinyloestradiol—an undesired fish contraceptive? Aquat Toxicol 45:91–97

    Article  CAS  Google Scholar 

  • Li J, Zhang S, Chen C, Zhao G, Yang X, Li J, Wang X (2012) Removal of Cu(II) and fulvic acid by graphene oxide nanosheets decorated with Fe3O4 nanoparticles. ACS Appl Mater Interf 4:4991–5000

    Article  CAS  Google Scholar 

  • Lin AY-C, Yu T-H, Lin C-F (2008) Pharmaceutical contamination in residential, industrial, and agricultural waste streams: risk to aqueous environments in Taiwan. Chemosphere 74:131–141

    Article  CAS  Google Scholar 

  • Lin B, Liaw S-L (2015) Simultaneous removal of volatile organic compounds from cooking oil fumes by using gas-phase ozonation over Fe(OH)3 nanoparticles. J Environ Chem Eng 3:1530–1538

    Article  CAS  Google Scholar 

  • Lin Y, Xu S, Li J (2013) Fast and highly efficient tetracyclines removal from environmental waters by graphene oxide functionalized magnetic particles. Chem Eng J 225:679–685

    Article  CAS  Google Scholar 

  • Liu FF, Zhao J, Wang S, Du P, Xing B (2014) Effects of solution chemistry on adsorption of selected pharmaceuticals and personal care products (PPCPs) by graphenes and carbon nanotubes. Environ Sci Technol 48:13197–13206

    Article  CAS  Google Scholar 

  • Liu FF, Zhao J, Wang S, Xing B (2015) Adsorption of sulfonamides on reduced graphene oxides as affected by pH and dissolved organic matter. Environ Pollut 210:85–93

    Article  CAS  Google Scholar 

  • Liu J, Tang J, Gooding JJ (2012a) Strategies for chemical modification of graphene and applications of chemically modified graphene. J Mater Chem 22:12435–12452

    Article  CAS  Google Scholar 

  • Liu M, Chen C, Hu J, Wu X, Wang X (2011) Synthesis of magnetite/graphene oxide composite and application for cobalt(II) removal. J Phys Chem C 115:25234–25240

    Article  CAS  Google Scholar 

  • Liu M, Wen T, Wu X, Chen C, Hu J, Li J, Wang X (2013a) Synthesis of porous Fe3O4 hollow microspheres/graphene oxide composite for Cr(vi) removal. Dalton Trans 42:14710–14717

    Article  CAS  Google Scholar 

  • Liu S, Chen K, Fu Y, Yu S, Bao Z (2012b) Reduced graphene oxide paper by supercritical ethanol treatment and its electrochemical properties. Appl Surf Sci 258:5299–5303

    Article  CAS  Google Scholar 

  • Liu Y, Zhang Y, Ma G, Wang Z, Liu K, Liu H (2013b) Ethylene glycol reduced graphene oxide/polypyrrole composite for supercapacitor. Electrochim Acta 88:519–525

    Article  CAS  Google Scholar 

  • Luo D, Zhang G, Liu J, Sun X (2011a) Evaluation criteria for reduced graphene oxide. J Phys Chem C 115:11327–11335

    Article  CAS  Google Scholar 

  • Luo YB, Shi ZG, Gao Q, Feng YQ (2011b) Magnetic retrieval of graphene: extraction of sulfonamide antibiotics from environmental water samples. J Chromatogr A 1218:1353–1358

    Article  CAS  Google Scholar 

  • Lyons G (2015) Pharmaceuticals in the environment: a growing threat to our tap water and wildlife. A CHEM Trust Report 11:1–36

    Google Scholar 

  • Ma J, Yang M, Yu F, Zheng J (2015) Water-enhanced removal of ciprofloxacin from water by porous graphene hydrogel. Sci Rep 5:13578

    Article  Google Scholar 

  • Mao S, Pu H, Chen J (2012) Graphene oxide and its reduction: modeling and experimental progress. RSC Adv 2:2643–2662

    Article  CAS  Google Scholar 

  • Marcano DC, Kosynkin DV, Berlin JM, Sinitskii A, Sun Z, Slesarev A, Alemany LB, Lu W, Tour JM (2010) Improved synthesis of graphene oxide. ACS Nano 4:4806–4814

    Article  CAS  Google Scholar 

  • Martinez JL (2009) Environmental pollution by antibiotics and by antibiotic resistance determinants. Environ Pollut 157:2893–2902

    Article  CAS  Google Scholar 

  • Martins AF, Vasconcelos TG, Henriques DM, Frank CS, König A, Kümmerer K (2008) Concentration of ciprofloxacin in Brazilian hospital effluent and preliminary risk assessment: a case study. Clean–Soil, Air, Water 36:264–269

    Article  CAS  Google Scholar 

  • Martucci A, Pasti L, Marchetti N, Cavazzini A, Dondi F, Alberti A (2012) Adsorption of pharmaceuticals from aqueous solutions on synthetic zeolites. Micropor Mesopor Mater 148:174–183

    Article  CAS  Google Scholar 

  • McAllister MJ, Li J-L, Adamson DH, Schniepp HC, Abdala AA, Liu J, Herrera-Alonso M, Milius DL, Car R, Prud’homme RK (2007) Single sheet functionalized graphene by oxidation and thermal expansion of graphite. Chem Mater 19:4396–4404

    Article  CAS  Google Scholar 

  • Michael I, Rizzo L, McArdell C, Manaia C, Merlin C, Schwartz T, Dagot C, Fatta-Kassinos D (2013) Urban wastewater treatment plants as hotspots for the release of antibiotics in the environment: a review. Water Res 47:957–995

    Article  CAS  Google Scholar 

  • Mohle E, Kempter C, Kern A, Metzger J (1999) Examination of the degradation of drugs in municipal sewage plants using liquid chromatography-electrospray mass spectrometry. Acta Hydrochim Hydrobiol 27:430–436

    Article  CAS  Google Scholar 

  • Moussavi G, Alahabadi A, Yaghmaeian K, Eskandari M (2013) Preparation, characterization and adsorption potential of the NH4Cl-induced activated carbon for the removal of amoxicillin antibiotic from water. Chem Eng J 217:119–128

    Article  CAS  Google Scholar 

  • Moussavi G, Hossaini Z, Pourakbar M (2016) High-rate adsorption of acetaminophen from the contaminated water onto double-oxidized graphene oxide. Chem Eng J 287:665–673

    Article  CAS  Google Scholar 

  • Msagati TA, Nindi MM (2004) Multiresidue determination of sulfonamides in a variety of biological matrices by supported liquid membrane with high pressure liquid chromatography-electrospray mass spectrometry detection. Talanta 64:87–100

    Article  CAS  Google Scholar 

  • Nam SW, Jung C, Li H, Yu M, Flora JR, Boateng LK, Her N, Zoh KD, Yoon Y (2015) Adsorption characteristics of diclofenac and sulfamethoxazole to graphene oxide in aqueous solution. Chemosphere 136:20–26

    Article  CAS  Google Scholar 

  • Ni X, Zhao Y, Song Q (2015) Electrochemical reduction and in-situ electrochemiluminescence detection of nitroaromatic compounds. Electrochim Acta 164:31–37

    Article  CAS  Google Scholar 

  • Oleszczuk P, Pan B, Xing B (2009) Adsorption and desorption of oxytetracycline and carbamazepine by multiwalled carbon nanotubes. Environ Sci Technol 43:9167–9173

    Article  CAS  Google Scholar 

  • Pei S, Cheng H-M (2012) The reduction of graphene oxide. Carbon 50:3210–3228

    Article  CAS  Google Scholar 

  • Prado N, Ochoa J, Amrane A (2009) Biodegradation and biosorption of tetracycline and tylosin antibiotics in activated sludge system. Process Biochem 44:1302–1306

    Article  CAS  Google Scholar 

  • Ramesha G, Kumara AV, Muralidhara H, Sampath S (2011) Graphene and graphene oxide as effective adsorbents toward anionic and cationic dyes. J Colloid Interface Sci 361:270–277

    Article  CAS  Google Scholar 

  • Ren X, Li J, Tan X, Wang X (2013) Comparative study of graphene oxide, activated carbon and carbon nanotubes as adsorbents for copper decontamination. Dalton Trans 42:5266–5274

    Article  CAS  Google Scholar 

  • Richardson ML, Bowron JM (1985) The fate of pharmaceutical chemicals in the aquatic environment. J Pharm Pharmacol 37:1–12

    Article  CAS  Google Scholar 

  • Rivera-Utrilla J, Sánchez-Polo M, Ferro-García MÁ, Prados-Joya G, Ocampo-Pérez R (2013) Pharmaceuticals as emerging contaminants and their removal from water. A review. Chemosphere 93:1268–1287

    Article  CAS  Google Scholar 

  • Rostamian R, Behnejad H (2016) A comparative adsorption study of sulfamethoxazole onto graphene and graphene oxide nanosheets through equilibrium, kinetic and thermodynamic modeling. Proc Safe Environ Prot 102:20–29

    Article  CAS  Google Scholar 

  • Sakamoto J, van Heijst J, Lukin O, Schlüter AD (2009) Two-dimensional polymers: just a dream of synthetic chemists? Angew Chem Int Ed 48:1030–1069

    Article  CAS  Google Scholar 

  • Särkkä H, Vepsäläinen M, Sillanpää M (2015) Natural organic matter (NOM) removal by electrochemical methods—a review. J Electroanal Chem 755:100–108

    Article  CAS  Google Scholar 

  • Sarmah AK, Meyer MT, Boxall ABA (2006) A global perspective on the use, sales, exposure pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment. Chemosphere 65:725–759

    Article  CAS  Google Scholar 

  • Schiavon M, Scapinello M, Tosi P, Ragazzi M, Torretta V, Rada EC (2015) Potential of non-thermal plasmas for helping the biodegradation of volatile organic compounds (VOCs) released by waste management plants. J Cleaner Product 104:211–219

    Article  CAS  Google Scholar 

  • Schniepp HC, Li J-L, McAllister MJ, Sai H, Herrera-Alonso M, Adamson DH, Prud’homme RK, Car R, Saville DA, Aksay IA (2006) Functionalized single graphene sheets derived from splitting graphite oxide. J Phys Chem B 110:8535–8539

    Article  CAS  Google Scholar 

  • Shao B, Dong D, Wu Y, Hu J, Meng J, Tu X, Xu S (2005) Simultaneous determination of 17 sulfonamide residues in porcine meat, kidney and liver by solid-phase extraction and liquid chromatography–tandem mass spectrometry. Analy Chim Acta 546:174–181

    Article  CAS  Google Scholar 

  • Shao Y, Wang J, Engelhard M, Wang C, Lin Y (2010) Facile and controllable electrochemical reduction of graphene oxide and its applications. J Mater Chem 20:743–748

    Article  CAS  Google Scholar 

  • Shi S, Fan Y, Huang Y (2013) Facile low temperature hydrothermal synthesis of magnetic mesoporous carbon nanocomposite for adsorption removal of ciprofloxacin antibiotics. Ind Eng Chem Res 52:2604–2612

    Article  CAS  Google Scholar 

  • Shin HJ, Kim KK, Benayad A, Yoon SM, Park HK, Jung IS, Jin MH, Jeong HK, Kim JM, Choi JY (2009) Efficient reduction of graphite oxide by sodium borohydride and its effect on electrical conductance. Adv Funct Mater 19:1987–1992

    Article  CAS  Google Scholar 

  • Sillanpää ME, Kurniawan TA, W-h L (2011) Degradation of chelating agents in aqueous solution using advanced oxidation process (AOP). Chemosphere 83:1443–1460

    Article  CAS  Google Scholar 

  • Silva EJ, Rocha e Silva NMP, Rufino RD, Luna JM, Silva RO, Sarubbo LA (2014) Characterization of a biosurfactant produced by Pseudomonas cepacia CCT6659 in the presence of industrial wastes and its application in the biodegradation of hydrophobic compounds in soil. Colloid Surf B: Biointerfaces 117:36–41

    Article  CAS  Google Scholar 

  • Simpson CD, Brand JD, Berresheim AJ, Przybilla L, Räder HJ, Müllen K (2002) Synthesis of a giant 222 carbon graphite sheet. Chem–Eur J 8:1424–1429

    Article  CAS  Google Scholar 

  • Sirés I, Brillas E (2012) Remediation of water pollution caused by pharmaceutical residues based on electrochemical separation and degradation technologies: a review. Environ Int 40:212–229

    Article  CAS  Google Scholar 

  • Stackelberg PE, Furlong ET, Meyer MT, Zaugg SD, Henderson AK, Reissman DB (2004) Persistence of pharmaceutical compounds and other organic wastewater contaminants in a conventional drinking-water-treatment plant. Sci Total Environ 329:99–113

    Article  CAS  Google Scholar 

  • Stamatelatou K, Frouda C, Fountoulakis M, Drillia P, Kornaros M, Lyberatos G (2003) Pharmaceuticals and health care products in wastewater effluents: the example of carbamazepine. Water Sci Technol Water Supply 3:131–137

    CAS  Google Scholar 

  • Stankovich S, Dikin DA, Piner RD, Kohlhaas KA, Kleinhammes A, Jia Y, Wu Y, Nguyen ST, Ruoff RS (2007) Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon 45:1558–1565

    Article  CAS  Google Scholar 

  • Stumpf M, Ternes TA, Wilken R-D, Rodrigues SV, Baumann W (1999) Polar drug residues in sewage and natural waters in the state of Rio de Janeiro, Brazil. Sci Total Environ 225:135–141

    Article  Google Scholar 

  • Subrahmanyam K, Panchakarla L, Govindaraj A, Rao C (2009) Simple method of preparing graphene flakes by an arc-discharge method. J Phys Chem C 113:4257–4259

    Article  CAS  Google Scholar 

  • Sun Y, Wang Q, Chen C, Tan X, Wang X (2012) Interaction between Eu (III) and graphene oxide nanosheets investigated by batch and extended X-ray absorption fine structure spectroscopy and by modeling techniques. Environ Sci Technol 46:6020–6027

    Article  CAS  Google Scholar 

  • Sun Y, Shao D, Chen C, Yang S, Wang X (2013a) Highly efficient enrichment of radionuclides on graphene oxide-supported polyaniline. Environ Sci Technol 47:9904–9910

    Article  CAS  Google Scholar 

  • Sun Y, Yang S, Zhao G, Wang Q, Wang X (2013b) Adsorption of polycyclic aromatic hydrocarbons on graphene oxides and reduced graphene oxides. Chem Asian J 8:2755–2761

    Article  CAS  Google Scholar 

  • Sun Y, Yang S, Chen Y, Ding C, Cheng W, Wang X (2015) Adsorption and desorption of U (VI) on functionalized graphene oxides: a combined experimental and theoretical study. Environ Sci Technol 49:4255–4262

    Article  CAS  Google Scholar 

  • Swan GE, Cuthbert R, Quevedo M, Green RE, Pain DJ, Bartels P, Cunningham AA, Duncan N, Meharg AA, Oaks JL (2006) Toxicity of diclofenac to Gyps vultures. Biology Lett 2:279–282

    Article  CAS  Google Scholar 

  • Tan X, Ren X, Chen C, Wang X (2014) Analytical approaches to the speciation of lanthanides at solid-water interfaces. TrAC-Trends Anal Chem 61:107–132

    Article  CAS  Google Scholar 

  • Tang Y, Reeder RJ (2009) Uranyl and arsenate cosorption on aluminum oxide surface. Geochim Cosmochim Acta 73:2727–2743

    Article  CAS  Google Scholar 

  • Tang Y, Guo H, Xiao L, Yu S, Gao N, Wang Y (2013) Synthesis of reduced graphene oxide/magnetite composites and investigation of their adsorption performance of fluoroquinolone antibiotics. Colloid Surf A: Physicochem Eng Aspects 424:74–80

    Article  CAS  Google Scholar 

  • Ternes TA (1998) Occurrence of drugs in German sewage treatment plants and rivers. Water Res 32:3245–3260

    Article  CAS  Google Scholar 

  • Ternes TA, Joss A, Siegrist H (2004) Peer reviewed: scrutinizing pharmaceuticals and personal care products in wastewater treatment. Environ Sci Technol 38:392A–399A

    Article  CAS  Google Scholar 

  • Usca GT, Gómez CV, Fiallos DC, Tavolaro P, Martino G, Caputi LS, Tavolaro A (2015) Preparation of graphene oxide as biomaterials for drug adsorption. AIP Conference Proceedings 1646:79–86

    Article  CAS  Google Scholar 

  • Vörösmarty CJ, McIntyre PB, Gessner MO, Dudgeon D, Prusevich A, Green P, Glidden S, Bunn SE, Sullivan CA, Liermann CR (2010) Global threats to human water security and river biodiversity. Nature 467:555–561

    Article  CAS  Google Scholar 

  • Wang C-J, Li Z, Jiang W-T, Jean J-S, Liu C-C (2010) Cation exchange interaction between antibiotic ciprofloxacin and montmorillonite. J Hazard Mater 183:309–314

    Article  CAS  Google Scholar 

  • Wang C-J, Li Z, Jiang W-T (2011) Adsorption of ciprofloxacin on 2:1 dioctahedral clay minerals. Appl Clay Sci 53:723–728

    Article  CAS  Google Scholar 

  • Wang C, Li H, Liao S, Zheng H, Wang Z, Pan B, Xing B (2013) Coadsorption, desorption hysteresis and sorption thermodynamics of sulfamethoxazole and carbamazepine on graphene oxide and graphite. Carbon 65:243–251

    Article  CAS  Google Scholar 

  • Wang F, Yang B, Wang H, Song Q, Tan F, Cao Y (2016a) Removal of ciprofloxacin from aqueous solution by a magnetic chitosan grafted graphene oxide composite. J Mol Liq 222:188–194

    Article  CAS  Google Scholar 

  • Wang X, Chen Z, Wang X (2015) Graphene oxides for simultaneous highly efficient removal of trace level radionuclides from aqueous solutions. Sci China Chem 58:1766–1773

    Article  CAS  Google Scholar 

  • Wang X, Bi W, Zhai P, Wang X, Li H, Mailhot G, Dong W (2016b) Adsorption and photocatalytic degradation of pharmaceuticals by BiOClxIy nanospheres in aqueous solution. Appl Surf Sci 360:240–251

    Article  CAS  Google Scholar 

  • Wang X, Fan Q, Yu S, Chen Z, Ai Y, Sun Y, Hobiny A, Alsaedi A, Wang X (2016c) High sorption of U (VI) on graphene oxides studied by batch experimental and theoretical calculations. Chem Eng J 287:448–455

    Article  CAS  Google Scholar 

  • Weber FA, Bergmann A, Hickmann S, Ebert I, Hein A, Küster A (2015) Pharmaceuticals in the environment—global occurrences and perspectives. Environ Toxicol Chem 35:823–835

    Google Scholar 

  • Weinberger J, Klaper R (2014) Environmental concentrations of the selective serotonin reuptake inhibitor fluoxetine impact specific behaviors involved in reproduction, feeding and predator avoidance in the fish Pimephales promelas (fathead minnow). Aquat Toxicol 151:77–83

    Article  CAS  Google Scholar 

  • William S, Hummers J, Offeman RE (1958) Preparation of graphitic oxide. J Am Chem Soc 80:1339

    Article  Google Scholar 

  • Wise R (2002) Antimicrobial resistance: priorities for action. J Antimicrob Chemother 49:585–586

    Article  CAS  Google Scholar 

  • Wu J, Gherghel L, Watson MD, Li J, Wang Z, Simpson CD, Kolb U, Müllen K (2003) From branched polyphenylenes to graphite ribbons. Macromolecules 36:7082–7089

    Article  CAS  Google Scholar 

  • Wu Q, Li Z, Hong H, Yin K, Tie L (2010) Adsorption and intercalation of ciprofloxacin on montmorillonite. Appl Clay Sci 50:204–211

    Article  CAS  Google Scholar 

  • Wu S, Zhao X, Li Y, Zhao C, Du Q, Sun J, Wang Y, Peng X, Xia Y, Wang Z, Xia L (2013) Adsorption of ciprofloxacin onto biocomposite fibers of graphene oxide/calcium alginate. Chem Eng J 230:389–395

    Article  CAS  Google Scholar 

  • Wu Z-S, Ren W, Gao L, Zhao J, Chen Z, Liu B, Tang D, Yu B, Jiang C, Cheng H-M (2009) Synthesis of graphene sheets with high electrical conductivity and good thermal stability by hydrogen arc discharge exfoliation. ACS Nano 3:411–417

    Article  CAS  Google Scholar 

  • Yang X, Chen C, Li J, Zhao G, Ren X, Wang X (2012) Graphene oxide-iron oxide and reduced graphene oxide-iron oxide hybrid materials for the removal of organic and inorganic pollutants. RSC Adv 2:8821

    Article  CAS  Google Scholar 

  • Yu F, Ma J, Bi D (2015a) Enhanced adsorptive removal of selected pharmaceutical antibiotics from aqueous solution by activated graphene. Environ Sci Pollut Res Int 22:4715–4724

    Article  CAS  Google Scholar 

  • Yu JG, Yu LY, Yang H, Liu Q, Chen XH, Jiang XY, Chen XQ, Jiao FP (2015b) Graphene nanosheets as novel adsorbents in adsorption, preconcentration and removal of gases, organic compounds and metal ions. Sci Total Environ 502:70–79

    Article  CAS  Google Scholar 

  • Yu S, Wang X, Tan X, Wang X (2015c) Sorption of radionuclides from aqueous systems onto graphene oxide-based materials: a review. Inorg Chem Front 2:593–612

    Article  CAS  Google Scholar 

  • Yu F, Sun S, Han S, Zheng J, Ma J (2016a) Adsorption removal of ciprofloxacin by multi-walled carbon nanotubes with different oxygen contents from aqueous solutions. Chem Eng J 285:588–595

    Article  CAS  Google Scholar 

  • Yu SJ, Wang XX, Ai YJ, Tan XL, Hayat T, Wang XK (2016b) Experimental and theoretical study on competitive adsorption of aromatic compounds on reduced graphene oxides. J Mater Chem A 4:5654–5662

    Article  CAS  Google Scholar 

  • Yu Z, Peldszus S, Huck P, Anderson W (2005) Adsorption of selected pharmaceuticals and endocrine disrupting substances by GAC at low concentration levels. Proceedings of AWWA Water Quality and Technology Conference 2005. Pp 1–16

  • Yuan F, Hu C, Hu X, Qu J, Yang M (2009) Degradation of selected pharmaceuticals in aqueous solution with UV and UV/H2O2. Water Res 43:1766–1774

    Article  CAS  Google Scholar 

  • Yuan Y, Lai B, Tang Y-Y (2016) Combined Fe0/air and Fenton process for the treatment of dinitrodiazophenol (DDNP) industry wastewater. Chem Eng J 283:1514–1521

    Article  CAS  Google Scholar 

  • Zhang Y, Chen B, Zhang L, Huang J, Chen F, Yang Z, Yao J, Zhang Z (2011) Controlled assembly of Fe3O4 magnetic nanoparticles on graphene oxide. Nanoscale 3:1446–1450

    Article  CAS  Google Scholar 

  • Zhao C, Deng H, Li Y, Liu Z (2010) Photodegradation of oxytetracycline in aqueous by 5A and 13X loaded with TiO2 under UV irradiation. J Hazard Mater 176:884–892

    Article  CAS  Google Scholar 

  • Zhao D, Sheng G, Chen C, Wang X (2012a) Enhanced photocatalytic degradation of methylene blue under visible irradiation on graphene@TiO2 dyade structure. Appl Catal B Environ 111-112:303–308

    Article  CAS  Google Scholar 

  • Zhao G, Jiang L, He Y, Li J, Dong H, Wang X, Hu W (2011a) Sulfonated graphene for persistent aromatic pollutant management. Adv Mater 23:3959–3963

    Article  CAS  Google Scholar 

  • Zhao G, Li J, Ren X, Chen C, Wang X (2011b) Few-layered graphene oxide nanosheets as superior sorbents for heavy metal ion pollution management. Environ Sci Technol 45:10454–10462

    Article  CAS  Google Scholar 

  • Zhao G, Ren X, Gao X, Tan X, Li J, Chen C, Huang Y, Wang X (2011c) Removal of Pb(II) ions from aqueous solutions on few-layered graphene oxide nanosheets. Dalton Trans 40:10945–10952

    Article  CAS  Google Scholar 

  • Zhao G, Wen T, Yang X, Yang S, Liao J, Hu J, Shao D, Wang X (2012b) Preconcentration of U(VI) ions on few-layered graphene oxide nanosheets from aqueous solutions. Dalton Trans 41:6182–6188

    Article  CAS  Google Scholar 

  • Zhong Z, Li G, Luo Z, Liu Z, Shao Y, He W, Deng J, Luo X (2015) Carboxylated graphene oxide/polyvinyl chloride as solid-phase extraction sorbent combined with ion chromatography for the determination of sulfonamides in cosmetics. Anal Chim Acta 888:75–84

    Article  CAS  Google Scholar 

  • Zhou M, Wang Y, Zhai Y, Zhai J, Ren W, Wang F, Dong S (2009) Controlled synthesis of large-area and patterned electrochemically reduced graphene oxide films. Chem Eur J 15:6116–6120

    Article  CAS  Google Scholar 

  • Zou YD, Wang XX, Chen ZS, Yao W, Ai YJ, Liu YH, Hayat T, Alsaedi A, Alharbi NS, Wang XK (2016a) Superior coagulation of graphene oxides on nanoscale layered double hydroxides and layered double oxides. Environ Poll 219:107–117

    Article  CAS  Google Scholar 

  • Zou YD, Wang XX, Ai YJ, Liu YH, Li JX, Ji YF, Wang XK (2016b) Coagulation behavior of graphene oxide on nanocrystallined Mg/Al layered double hydroxides: batch experimental and theoretical calculation study. Environ Sci Technol 50:3658–3667

    Article  CAS  Google Scholar 

  • Zwiener C, Frimmel F (2003) Short-term tests with a pilot sewage plant and biofilm reactors for the biological degradation of the pharmaceutical compounds clofibric acid, ibuprofen, and diclofenac. Sci Total Environ 309:201–211

    Article  CAS  Google Scholar 

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Acknowledgements

The support from the Chinese government under China Scholarship Council (CSC) for foreign postgraduate students, NSFC (21225730, 91326202, 21577032), the Fundamental Research Funds for the Central Universities (JB2015001), the Kunlun Scholarship of Qinghai province, the Jiangsu Provincial Key Laboratory of Radiation Medicine and Protection and the Priority Academic Program Development of Jiangsu Higher Education Institutions is acknowledged.

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Khan, A., Wang, J., Li, J. et al. The role of graphene oxide and graphene oxide-based nanomaterials in the removal of pharmaceuticals from aqueous media: a review. Environ Sci Pollut Res 24, 7938–7958 (2017). https://doi.org/10.1007/s11356-017-8388-8

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