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Article; Agriculture and Environmental Biotechnology

Use of diatomite for the removal of lead ions from water: thermodynamics and kinetics

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Pages 696-704 | Received 23 Dec 2014, Accepted 06 Apr 2015, Published online: 01 May 2015

References

  • Amuda OS, Giwa AA, Bello LA. Removal of heavy metal from industrial wastewater using modified activated coconut shell carbon. Biochem Eng J. 2007;36:174–181.
  • Kadirvelu K, Namasivayam C. Activated carbon from coconut coirpith as metal adsorbent: adsorption of Cd(II) from aqueous solution. Adv Environ Res. 2003;7:471–478.
  • Kailas L. Wasewar. Adsorption of metals onto tea factory waste: a review. Int J Rec Res App Stu. 2010;3(3):303–322.
  • Rahmani A, Zavvar Mousavi H, Fazli M. Effect of nanostructure alumina on adsorption of heavy metals. Desalination. 2010;253:94–100.
  • Alawa B, Srivastava A, Srivastava JK, Palsaniya J. Adsorption of heavy metals from industrial downstream using polypyrrole as a polycomposite material. Novus Int J Eng Tech. 2014;3(1):35–46.
  • Vinodhini R, Narayanan M. The impact of toxic heavy metals on the hematological parameters in common carp (Cyprinus carpio L.). Iranian J Environ Health Sci Eng. 2009;6(1):23–28.
  • Yang H, Rose NL. Distribution of Hg in the lake sediments across the UK. Sci Total Environ. 2003;304:391–404.
  • Khorasgani FC. Removal of Cd (II) and Cr (VI) from electroplating wastewater by coconut shell. Int J Env Eng Man. 2013;4(4):273–280.
  • Gaikwad RW. Removal of Cd (II) from aqueous solution by activated charcoal derived from coconut shell. Elec J Env Agricult Food Chem. 2004;3(4):702–709
  • Padilla OE, Leyva RR, Flores CJV. Binary adsorption of heavy metals from aqueous solution onto natural clays. Chem Eng J. 2013;225:535–546.
  • Shi W, Shao H, Li H, Shao M, Du S. Progress in the remediation of hazardous heavy metal-polluted soils by natural zeolite. J Hazard Mater. 2009;170:1–6.
  • Dursun S, Pala A, Argun ME. Lead pollution removal from water via clinoptilolite fixed bed column. Poster session presented at: Blacksea international environmental symposium; 2008 Aug 25–29; Giresun, Turkey.
  • Argun ME, Dursun S. Activation of pine bark surface with NaOH for lead removal. J Int Env App Sci. 2007;2(1,2):5–10.
  • Oliver MA. Soil and human health: a review. Eur J Soil Sci. 1997;48:573–592.
  • Cechinel MAP, Souza SMAGU, Souza AAU. Study of lead (II) adsorption onto activated carbon originating from cow bone. J Clean Prod. 2014;65:342–349.
  • Sag Y, Ozer D, Kutsal TA. Comparative study of the biosorption of lead (II) ions to Z. ramigera and R. arrhizus. Process Biochem. 1995;30:169–174.
  • Darvishi CSR, Shams KG, Khataee AR, Jorfi S. Silica nanopowders/alginate composite for adsorption of lead (II) ions in aqueous solutions. J Taiwan Inst Chem Eng. 2014;45:973–980.
  • Dong L, Zhu Z, Ma H, Qiu Y, Zhao J. Simultaneous adsorption of lead and cadmium on MnO2-loaded resin. J Environ Eng Sci. 2010;22:225–229.
  • Wang Y, Wang X, Wang X, Liu M, Wu Z, Yang L, Xia S, Zhao J. Adsorption of Pb(II) from aqueous solution to Ni-doped bamboo charcoal. J Ind Eng Chem. 2013;19:353–359.
  • Kousha M, Daneshvar E, Sohrabi MS, Koutahzadeh N, Khataee AR. Optimization of C.I. Acid black 1 biosorption by Cystoseira indica and Gracilaria persica biomasses from aqueous solutions. Int Biodeterior Biodegradation. 2012;67:56–63.
  • Kousha M, Daneshvar E, Esmaeli AR, Jokar M, Khataee AR. Optimization of Acid Blue 25 removal from aqueous solutions by raw, esterified and protonated Jania adhaerens biomass. Int Biodeterior Biodegradation. 2012;69:97–105.
  • Torab-Mostaedi M, Asadollahzadeh M, Hemmati A, Khosravi A. Equilibrium, kinetic, and thermodynamic studies for biosorption of cadmium and nickel on grapefruit peel. J Taiwan Inst Chem Eng. 2013;44:295–302.
  • Zhuravlev LT. The surface chemistry of amorphous silica. Zhuravlev model. Colloids Surf A Physicochem Eng Asp. 2000;173:1–38.
  • Šlivic M, Smičiklas PS, Plećaš I. Comparative study Cu2+ adsorption on a zeolite, clay and a diatomite from Serbia. Appl Clay Sci. 2009;43:33–40.
  • Caliskan N, Kul RA, Alkan S, Sogut GE, Alacabey İ. Adsorption of zinc (II) on diatomite and manganese-oxide-modified diatomite: a kinetic and equilibrium study. J Hazard Mater. 2011;193:27–36.
  • Haerifar M, Azizizan S. An exponential kinetic model for adsorption at solid/solution interface. Chem Eng J. 2013;215–216:65–71.
  • Azizian S. Kinetic models of sorption: a theoretical analysis. J Colloid Interface Sci. 2004; 276:47–52.
  • Praus P, Turicovă MA. Physico-chemical study of the cationic surfactants adsorption on montmorillonite. J Braz Chem Soc. 2007;18:378–383.
  • Hamdaoui O, Naffrechoux E. Modeling of adsorption isotherms of phenol and clorophenols onto granular activated carbon: Part I. Two-parameter models and equations allowing determination of thermodynamic parameters. J Hazard Mater. 2007;147:381–394.
  • Şengil İA, Özacar M, Türkmenler H. Kinetic and isotherm studies of Cu (II) sorption onto valonia tannin resin. J Hazard Mater. 2009;162:1046–1052.
  • Shahzad BK, Doan HD, Wu J. Multicomponent isotherms for biosorption of Ni+2 and Zn+2. Desalination. 2009;249:429–439.
  • Redlich O, Peterson DL. A useful adsorption isotherm. J Phys Chem. 1959;63:1024.
  • El-Latif MMA, Ibrahim AM, El-Kady MF. Adsorption equilibrium, kinetics and thermodynamics of methylene blue from aqueous solutions using biopolymer oak sawdust composite. J Amer Sci. 2010;6(6):267–283.
  • Soni M, Yadav JS, Sharma AK, Srivastava JK. Parametric optimization for adsorption of reactive orange 16 on water hyacinth root powder. Int J Cur Res Chem Phar Sci. 2014;1(6):140–147.
  • Gupta SS, Bhattacharyya KG. Adsorption of Ni (II) on clays. J Colloid Interface Sci. 2006; 295:21–32.
  • Gaballah I, Kilbertus G. Recovery of heavy metal ions through decontamination of synthetic solutions and industrial effluents using modified barks. J Geochem Explor. 1998;62:241–286.
  • Taty-Costodes VC, Fauduet H, Porte C, Delacroix A. Removal of Cd(II) and Pb(II) ions, from aqueous solutions, by adsorption onto sawdust of Pinus sylvestris. J Hazard Mater. 2003;105:121–142.
  • Jain CK, Ram D. Adsorption of lead and zinc on bed sediments of the river Kali. Water Res. 1997;31:154–162.
  • Karatas M. Removal of Pb (II) from water by natural zeolitic tuff: kinetics and thermodynamics. J Hazard Mater. 2012;199–200:383–389.
  • Belaid T, Aitali S, Benamor M, Belhamel K. Synthesis and characterization of new chelating resin functionalized with pyrocatechol violet and its application as extractant for zinc (II). Mat Sci Eng. 2009;609:75–80.
  • Sari A, Tuzen M, Citak D, Soylak M. Equilibrium, kinetic and thermodynamic studies of adsorption of Pb(II) from aqueous solution onto Turkish kaolinite clay. J Hazard Mater. 2007;149:283–291.
  • Meroufel B, Benali O, Benyahia M, Zenasni MA, Merlin A, George B. Removal of Zn (II) from aqueous solution onto kaolin by batch design. J Wat Res Pro. 2013;5:669–680.
  • Li Y, Du Q, Wang X, Zhang P, Wang D, Wang Z, Xia Y. Removal of lead from aqueous solution by activated carbon prepared from Enteromorpha prolifera by zinc chloride activation. J Hazard Mater. 2010;183:583–589.
  • Wang L, Zhang J, Zhao R, Li Y, Li C, Zhang C. Adsorption of Pb (II) on activated carbon prepared from Polygonum orientale Linn.: kinetics, isotherms, pH, and ionic strength studies. Bioresour Technol. 2010;101:5808–5814.
  • Pehlivan E, Altun T, Parlayıcı S. Utilization of barley straws as biosorbents for Cu2+ and Pb2+ ions. J Hazard Mater. 2009;164:982–986.
  • Mondal MKJ. Removal of Pb (II) ions from aqueous solution using activated tea waste: adsorption on a fixed-bed column. J Environ Manage. 2009;90:3266–3271.
  • Boudrahem F, Aissani BF, Ait A.H. Batch sorption dynamics and equilibrium for the removal of lead ions from aqueous phase using activated carbon developed from coffee residue activated with zinc chloride. J Environ Manage. 2009;90:3031–3039.
  • Depci T, Kul AR, Onal Y. Competitive adsorption of lead and zinc from aqueous solution on activated carbon prepared from Van apple pulp: study in single- and multi-solute systems. Chem Eng J. 2012;200:224–236.
  • Sreejalekshmi KG, Krishnan KA, Anirudhan TS. Adsorption of Pb(II) and Pb(II)-citric acid on sawdust activated carbon: kinetic and equilibrium isotherm studies. J Hazard Mater. 2009;161:1506–1513.
  • Momcilovic M, Purenovic M, Bojic A, Zarubica A, Ranpelovic M. Removal of lead (II) ions from aqueous solutions by adsorption onto pine cone activated carbon. Desalination. 2011;276:53–59.