90
Views
8
CrossRef citations to date
0
Altmetric
Articles

Adsorption and removal of diethyl phthalate from aqueous media with poly(hydroxyethyl methacrylate) nanobeads

, &
Pages 28864-28874 | Received 21 Dec 2015, Accepted 30 Apr 2016, Published online: 17 Jun 2016

References

  • M. Kuster, M.J.L. López de Alda, M.D. Hernando, M. Petrovic, J. Martín-Alonso, D. Barceló, Analysis and occurrence of pharmaceuticals, estrogens, progestogens and polar pesticides in sewage treatment plant effluents, river water and drinking water in the Llobregat river basin (Barcelona, Spain), J. Hydrol. 358 (2008) 112–123.10.1016/j.jhydrol.2008.05.030
  • S.D. Richardson, T.A. Ternes, Water analysis: Emerging contaminants and current issues, Anal. Chem. 83 (2011) 4614–4648.10.1021/ac200915r
  • N.A. Khan, B.K. Jung, Z. Hasan, S.H. Jhung, Adsorption and removal of phthalic acid and diethyl phthalate from water with zeolitic imidazolate and metal–organic frameworks, J. Hazard. Mater. 282 (2015) 194–200.10.1016/j.jhazmat.2014.03.047
  • J. Ejlertsson, M. Alnervik, S. Jonsson, B. Svensson, Influence of water solubility, side-chain degradability, and side-chain structure on the degradation of phthalic acid esters under methanogenic conditions, Environ. Sci. Technol. 31 (1997) 2761–2764.10.1021/es961055x
  • R. Iturbe, G. Moreno, P. Elefsiniotis, Efficiency of a phthalate ester in an activated-sludge system, Environ. Technol. 12 (1991) 783–796.
  • D. Sompornpailin, S. Siripattanakul-Ratpukdi, A.S. Vangnai, Diethyl phthalate degradation by the freeze-dried, entrapped Bacillus subtilis strain 3C3, Int. Biodeterior. Biodegrad. 91 (2014) 138–147.10.1016/j.ibiod.2014.02.004
  • Z.D. Wen, D.W. Gao, W.M. Wu, Biodegradation and kinetic analysis of phthalates by an Arthrobacter strain isolated from constructed wetland soil, Appl. Microbiol. Biotechnol. 98 (2014) 4683–4690.10.1007/s00253-014-5568-z
  • D.L. Wu, B.L. Hu, P. Zheng, M. Qaisar, Anoxic biodegradation of dimethyl phthalate (DMP) by activated sludge cultures under nitrate-reducing conditions, J. Environ. Manage. 19(10) (2007) 1252–1256.10.1016/S1001-0742(07)60204-6
  • H.F. Cheng, M. Kumar, J.G. Lin, Assessment of di-(2-ethylhexyl)phthalate (DEHP) removal in a rotating biological contactor and activated sludge process treating domestic wastewater, Sep. Sci. Technol. 45(2) (2010) 221–227.10.1080/01496390903409385
  • M.M. Abdel daiem, J. Rivera-Utrilla, R. Ocampo-Pérez, J.D. Méndez-Díaz, M. Sánchez-Polo, Environmental impact of phthalic acid esters and their removal from water and sediments by different technologies—A review, J. Environ. Manage. 109 (2012) 164–178.10.1016/j.jenvman.2012.05.014
  • E. Ayranci, E. Bayram, Adsorption of phthalic acid and its esters onto high-area activated carbon-cloth studied by in situ UV–spectroscopy, J. Hazard. Mater. B. 122 (2005) 147–153.
  • W. Zhang, Z. Xu, B. Pan, C. Hong, K. Jia, P. Jiang, Q. Zhang, B. Pan, Equilibrium and heat of adsorption of diethyl phthalate on heterogeneous adsorbents, J. Colloid Interface Sci. 325 (2008) 41–47.10.1016/j.jcis.2008.05.030
  • N. Adhoum, L. Monser, Removal of phthalate on modified activated carbon: Application to the treatment of industrial wastewater, Sep. Purif. Technol. 38 (2004) 233–239.10.1016/j.seppur.2003.11.011
  • M. Julinová, R. Slavík, Removal of phthalates from aqueous solution by different adsorbents: A short review, J. Environ. Manage. 94 (2012) 13–24.10.1016/j.jenvman.2011.09.006
  • S. Venkata Mohan, S. Shailaja, M. Rama Krishna, P.N. Sarma, Adsorptive removal of phthalate ester (Di-ethyl phthalate) from aqueous phase by activated carbon: A kinetic study, Polym. Test. 146(1–2) (2007) 278–282.10.1016/j.jhazmat.2006.12.020
  • E. Tümay Özer, B. Osman, A. Kara, N. Beşirli, Ş. Gücer, H. Sözeri, Removal of diethyl phthalate from aqueous phase using magnetic poly(EGDMA–VP) beads, J. Hazard. Mater. 229–230 (2012) 20–28.10.1016/j.jhazmat.2012.05.037
  • B. Osman, E. Tümay Özer, A. Kara, Ş. Güçer, N. Beşirli, Assesment of dimethyl phthalate removal from aqueous phase using barium hexaferrite containing magnetic beads, J. Colloid Interface Sci. 378 (2012) 167–174.10.1016/j.jcis.2012.03.069
  • B. Osman, E. Tümay Özer, E. Demirbel, Ş. Güçer, N. Beşirli, Synthesis and characterization of L-tryptophan containing microbeads for removal of dimethyl phthalate from aqueous phase, Sep. Purif. Technol. 109 (2013) 40–47.10.1016/j.seppur.2013.02.025
  • B. Osman, E. Tümay Özer, N. Beşirli, Ş. Güçer, Development and application of a solid phase extraction method for the determination of phthalates in artificial saliva using new synthesised microspheres, Polym. Test. 32(4) (2013) 810–818.10.1016/j.polymertesting.2013.03.017
  • E. Tümay Özer, B. Osman, A. Kara, E. Demirbel, N. Beşirli, Ş. Güçer, Diethyl phthalate removal from aqueous phase using poly(EGDMA-MATrp) beads: Kinetic, isothermal and thermodynamic studies, Cem. Concr. Res. 36(13) (2015) 1698–1706.
  • J.P. Rao, K.E. Geckeler, Polymer nanoparticles: Preparation techniques andsize-control parameters, Prog. Polym. Sci. 36 (2011) 887–913.10.1016/j.progpolymsci.2011.01.001
  • L. Sun, J. Dai, G.L. Baker, M.L. Bruening, High-capacity, protein-binding membranes based on polymer brushes grown in porous substrates, Chem. Mater. 18 (2006) 4033–4039.10.1021/cm060554m
  • J. Dai, Z. Bao, L. Sun, S.U. Hong, G.L. Baker, M.L. Bruening, High-capacity binding of proteins by poly(acrylic acid) brushes and their derivatives, Langmuir 22 (2006) 4274–4281.10.1021/la0600550
  • X. Wu, H. Hong, X. Liu, W. Guan, L. Meng, Y. Ye, Y. Ma, Graphene dispersive solid-phase extraction of phthalate acid esters from environmental water, Sci. Total Environ. 444 (2013) 224–230.
  • L. Yin, Y. Lin, L. Jia, Graphene oxide functionalized magnetic nanoparticles as adsorbents for removal of phthalate esters, Microchim. Acta 181 (2014) 957–965.10.1007/s00604-014-1187-8
  • X. Cao, Q. Kong, R. Cai, K. Zhu, X. Ye, J. Chen, W. Mo, J. Wang, Solid-phase extraction based on chloromethylated polystyrene magnetic nanospheres followed by gas chromatography with mass spectrometry to determine phthalate esters in beverages, J. Sep. Sci. 37 (2014) 3677–3683.10.1002/jssc.v37.24
  • Y.B. Luo, Q.W. Yu, B.F. Yuan, Y.Q. Feng, Fast microextraction of phthalate acid esters from beverage, environmental water and perfume samples by magnetic multi-walled carbon nanotubes, Talanta 90 (2012) 123–131.10.1016/j.talanta.2012.01.015
  • C.Y. Chen, Y.C. Chung, Removal of phthalate esters from aqueous solutions by chitosan bead, J. Environ. Sci. Health Part A 41 (2006) 235–248.10.1080/10934520500354573
  • C.Y. Chen, Y.C. Chung, Removal of phthalate esters from aqueous solution by molybdate impregnated chitosan beads, Environ. Eng. Sci. 24 (2007) 834–841.10.1089/ees.2006.0172
  • C.Y. Chen, C.C. Chen, Y.C. Chung, Removal of phthalate esters by α-cyclodextrin-linked chitosan bead, Bioresour. Technol. 98 (2007) 2578–2583.10.1016/j.biortech.2006.09.009
  • Q. Wu, M. Liu, X. Ma, W. Wang, C. Wang, X. Zang, Z. Wang, Extraction of phthalate esters from water and beverages using a graphene-based magnetic nanocomposite prior to their determination by HPLC, Microchim. Acta. 177 (2012) 23–30.
  • Q. Xu, X. Yin, S. Wu, M. Wang, Z. Wen, Z. Gu, Determination of phthalate esters in water samples using Nylon6 nanofibers mat-based solid-phase extraction coupled to liquid chromatography, Microchim. Acta 168 (2010) 267–275.10.1007/s00604-010-0290-8
  • N.M. Agyei, C.A. Strydom, J.H. Potgieter, An investigation of phosphate ion adsorption from aqueous solution by fly ash and slag, Cem. Concr. Res. 30(5) (2000) 823–826.10.1016/S0008-8846(00)00225-8
  • Y.S. Ho, G. Mckay, Competitive sorption of copper and nickel ions from aqueous solution using peat, Adv. Colloid Interface Sci. 5(4) (1999) 409–417.10.1023/A:1008921002014
  • S. Baup, C.D. JaffreWolbert, A. Laplanche, Adsorption of pesticides onto granular activated carbon: Determination of surface diffusivities using simple batch experiments, Adsorption 6(3) (2000) 219–228.10.1023/A:1008937210953
  • K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption isotherm systems, Chem. Eng. J. 156(1) (2010) 2–10.10.1016/j.cej.2009.09.013
  • M. Ahmaruzzaman, Adsorption of phenolic compounds on low-cost adsorbents: A review, Adv. Colloid Interface Sci. 143(1–2) (2008) 48–67.10.1016/j.cis.2008.07.002
  • J. Zeldowitsch, Adsorption site energy distribution, Acta Phys. Chim. URSS. 1 (1934) 961–973.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.