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Original Articles

Extraction of clarithromycin and atenolol by cuttlefish bone powder

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Pages 2662-2668 | Received 07 May 2017, Accepted 31 Jul 2017, Published online: 16 Aug 2017

References

  • Jonas M, Kienle C, Magnet A, et al. Treatment of micropollutants in municipal wastewater: ozone or powdered activated carbon. Sci Total Environ. 2013;461–462:480–498. doi: 10.1016/j.scitotenv.2013.05.034
  • Halling-Sørensen B, Nors Nielsen S, Lanzky, PF, et al. Occurrence, fate and effects of pharmaceutical substances in the environment – a review. Chemosphere. 1998;36:357–393. doi: 10.1016/S0045-6535(97)00354-8
  • Heberer T. Occurrence, fate, and removal of pharmaceutical residues in the aquatic environment: a review of recent research data. Toxicol Lett. 2002;131(1):5–17. doi: 10.1016/S0378-4274(02)00041-3
  • Kümmerer K. Drugs in the environment: emission of drugs, diagnostic aids and disinfectants into wastewater by hospitals in relation to other sources a review. Chemosphere. 2001;45:957–969. doi: 10.1016/S0045-6535(01)00144-8
  • Watkinson AJ, Murby EJ, Costanzo SC. Removal of antibiotics in conventional and advanced wastewater treatment: implications for environmental discharge and wastewater recycling. Water Res. 2007;41:4164–4176. doi: 10.1016/j.watres.2007.04.005
  • Jones OAH, Voulvoulis N, Lester JN. Potential ecological and human health risks associated with the presence of pharmaceutically active compounds in the aquatic environment. Crit Rev Toxicol. 2004;34(4):335–350. doi: 10.1080/10408440490464697
  • Çalışkan Salihi E, Mahramanlıoğlu M. Equilibrium and kinetic adsorption of drugs on bentonite: presence of surface active agents effect. Appl Clay Sci. 2014;101:381–389. doi: 10.1016/j.clay.2014.06.015
  • Khazri H, Ghorbel-Abid I, Kalfat R, et al. Removal of ibuprofen, naproxen and carbamazepine in aqueous solution onto natural clay: equilibrium, kinetics, and thermodynamic study. Appl Water Sci. 2016. doi:10.1007/s13201-016-0414-3.
  • Yoldas S, Yurdakoc K. Equilibrium, kinetics and thermodynamic aspects of promethazine hydrochloride sorption by iron rich smectite. Colloids Surfaces A Physicochem Eng. 2014;340(2009):143–148.
  • Alaaeddin A. Rapid removal of organic micropollutants from water by a porous β-cyclodextrin polymer. Letter. 2015;529:190–194.
  • Sandesh K, Suresh Kumar R, JagadeeshBabu PE. Rapid removal of cobalt (II) from aqueous solution using cuttlefish bones; equilibrium, kinetics, and thermodynamic study. Asia Pacific J Chem Eng. 2013;8(1):144–153. doi: 10.1002/apj.1639
  • Ghaneian MT, Momtaz M, Dehvari M. An investigation of the efficacy of cuttlefish bone powder in the removal of reactive blue 19 dye from aqueous solutions: equilibrium and isotherm studies. J Health Res. 2012;1:1–11.
  • Ben Nasr A, Walha K, Charcosset C, et al. Removal of fluoride ions using cuttlefish bones. J Fluorine Chem. 2011;132:57–62.
  • Khazri H, Ghorbel-Abid I, Kalfat R, et al. Removal of carbamazépine (CBZ) from aqueous solution using cuttlefish bones. Int J Chem Pharmaceutical. 2014;11:1032–1043.
  • Langmuir I. The constitution and fundamental properties of solids and liquids. Part I. solids. J Am Chem Soc. 1916;38:2221–2295. doi: 10.1021/ja02268a002
  • Ho YS, McKay G. A two-stage batch sorption optimized design for dye removal to minimize contact time. Process Saf Environ Prot. 1998;76(4):313–318. doi: 10.1205/095758298529678
  • Moore DM, Reynolds RC. X-ray diffraction and the identification and analysis of cuttlefish bone powder minerals. 2nd ed. Oxford University Press; 1997; Interface Sci. 293(2):303–311.
  • Stipp SLS. Toward a conceptual model of the calcite surface: hydration, hydrolysis, and surface potential. Geochim Cosmochim Acta. 1999;63(19):3121–3131. doi: 10.1016/S0016-7037(99)00239-2
  • Giles CH, MacEwan TH, Nakhwa SN, et al. 786. Studies in adsorption. part XI. A system of classification of solution adsorption isotherms, and its use in diagnosis of adsorption mechanisms and in measurement of specific surface areas of solids. J Chem Soc (Resumed). 1960;93:3973. doi: 10.1039/jr9600003973
  • Rivera-Jiménez SM, Méndez-González S, Hernández-Maldonado A. Metal (M=Co2+, Ni2+, and Cu2+) grafted mesoporous SBA-15: effect of transition metal incorporation and pH conditions on the adsorption of Naproxen from water. Microporous Mesoporous Mater. 2010;132(3):470–479. doi: 10.1016/j.micromeso.2010.03.029
  • Bui TX, Choi H. Adsorptive removal of selected pharmaceuticals by mesoporous silica SBA-15. J Hazard Mater. 2009;168(2):602–608. doi: 10.1016/j.jhazmat.2009.02.072
  • Levent Altas x, Balkaya N, Cesur H. Pb(II) removal from aqueous solution and industrial wastewater by Raw and lime-conditioned phosphogypsum. Int J Environ Res. 2017. doi10.1007/s41742-017-0012-8.

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