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Articles

Polyvinyl pyrrolidone-modified Pd/Fe nanoparticles for enhanced dechlorination of 2,4-dichlorophenal

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Pages 7925-7936 | Received 25 Mar 2013, Accepted 16 Jul 2013, Published online: 16 Sep 2013

References

  • USEPA, The inventory of sources of dioxin in the United States, EPA/600/P98/00A2, 1998.
  • L.Q. Xing, J. Sun, H.L. Liu, Combined toxicity of three chlorophenols 2,4-dichlorophenol, 2,4,6-trichlorophenol and pentachlorophenol to daphnia magna. J. Environ. Monit. 14 (2012) 1677–1683.
  • X.W. Jin, J.M. Zha, Y.P. Xu, Z.J. Wang, S.S. Kumaran, Derivation of aquatic predicted no-effect concentration (PNEC) for 2,4-dichlorophenol: Comparing native species data with non-native species data. Chemosphere 84 (2011) 1506–1511.
  • R.W. Gillham, S.F. O’Hannesin, Development of zero-valent iron as an in situ reactant for remediation of VOC-contaminated groundwater. Groundwater remediation: Existing technology and future directions. Association of Groundwater Scientist and Engineers, 9–12 October 1994, Las Vegas, NV.
  • R.W. Gillham, S.F. O’Hannesin, Enhanced degradation of halogenated aliphatics by zero-valent iron. Ground Water 32 (1994) 958–967.
  • F. Fagerlund, T.H. Illangasekare, T. Phenrat, H.J. Kim, G.V. Lowry, PCE dissolution and simultaneous dechlorination by nanoscale zero-valent iron particles in a DNAPL source zone. J. Contam. Hydrol. 131 (2012) 9–28.
  • X.H. Xu, H.Y. Zhou, D.H. Wang, Catalytic dechlorination of chlorobenzene in water by Pd/Fe system. Chin. Chem. Lett. 14 (2003) 700–703.
  • V. Janda, P. Vasek, J. Bizova, Z. Belohlav, Kinetic models for volatile chlorinated hydrocarbons removal by zero-valent iron. Chemosphere 54 (2004) 917–925.
  • Y. Han, W. Li, M.H. Zhang, Catalytic dechlorination of monochlorobenzene with a new type of nanoscale Ni(B)/Fe(B) bimetallic catalytic reductant. Chemosphere 72 (2008) 53–58.
  • C.L. Chun, D.R. Baer, D.W. Matson, J.E. Amonette, R.L. Penn, Characterization and reactivity of iron nanoparticles prepared with added Cu, Pd, and Ni. Environ. Sci. Technol. 44 (2010) 5079–5085.
  • T. Phenrat, N. Saleh, K. Sirk, R.D. Tilton, G.V. Lowry, Aggregation and sedimentation of aqueous nanoscale zerovalent iron dispersions. Environ. Sci. Technol. 41 (2007) 284–290.
  • J. Su, S. Lin, Z.L. Chen, M. Megharaj, R. Naidu, Dechlorination of p-chlorophenol from aqueous solution using bentonite supported Fe/Pd nanoparticles: Synthesis, characterization and kinetics. Desalination 280 (2011) 167–173.
  • N.S. Babu, N. Lingaiah, J.V. Kumar, P.S.S. Prasad, Studies on alumina supported Pd-Fe bimetallic catalysts prepared by deposition-precipitation method for hydrodechlorination of chlorobenzene. Appl. Catal., A 367 (2009) 70–76.
  • Z.H. Meng, H.L. Liu, Y. Liu, J. Zhang, S.L. Yu, F.Y. Cui, N.Q. Ren, J. Ma, Preparation and characterization of Pd/Fe bimetallic nanoparticles immobilized in PVDF·Al2O3 membrane for dechlorination of monochloroacetic acid. J. Membr. Sci. 372 (2011) 165–171.
  • X.Y. Wang, C. Chen, H.L. Liu, J. Ma, Preparation and characterization of PAA/PVDF membrane-immobilized Pd/Fe nanoparticles for dechlorination of trichloroacetic acid. Water Res. 42 (2008) 4656–4664.
  • E.H. Lee, Mk Lee, C.K. Rhee, Preparation of stable dispersions of Ni nanoparticles using a polymeric dispersant in water. Mat. Sci. Eng.: A 449–451 (2007) 765–768.
  • K. Peng, X.J. Yin, L.P. Zhou, J.J. Zhu, A.P. Hu, H. Jin, Y.W. Du, Influence of dispersant on the morphology of silica-coated cobalt nanoparticles synthesized by a wet based method. Mater. Chem. Phys. 119 (2010) 351–354.
  • H.S. Wang, X.L. Qiao, J.G. Chen, X.J. Wang, S.Y. Ding, Mechanisms of PVP in the preparation of silver nanoparticles. Mater. Chem. Phys. 94 (2005) 449–453.
  • B.W. Zhu, T.T. Lim, J. Feng, Influences of amphiphiles on dechlorination of a trichlorobenzene by nanoscale Pd/Fe: Adsorption, reaction kinetics, and interfacial interactions. Environ. Sci. Technol. 42 (2008) 4513–4519.
  • F. He, D. Zhao, Manipulating the size and dispersibility of zerovalent iron nanoparticles by use of carboxymethyl cellulose stabilizers. Environ. Sci. Technol. 41 (2007) 6216–6622.
  • F. He, D. Zhao, Preparation and characterization of a new class of starch-stabilized bimetallic nanoparticles for degradation of chlorinated hydrocarbons in water. Environ. Sci. Technol. 39 (2005) 3314–3320.
  • F. He, D. Zhao, J. Liu, C.B. Roberts, Stabilization of Fe-Pd nanoparticles with sodium carboxymethyl cellulose for enhanced transport and dechlorination of trichloroethylene in soil and groundwater. Ind. Eng. Chem. Res. 46 (2007) 29–34.
  • A. Tiraferri, K.L. Chen, R. Sethi, M. Elimelech, Reduced aggregation and sedimentation of zero-valent iron nanoparticles in the presence of guar gum. J. Colloid Interface Sci. 324 (2008) 71–79.
  • F. He, D.Y. Zhao, Preparation and characterization of a new class of starch-stabilized bimetallic nanoparticles for degradation of chlorinated hydrocarbons in water. Environ. Sci. Technol. 39 (2005) 3314–3320.
  • P.R. Chang, P.W. Zheng, B.X. Liu, D.P. Anderson, J.G. Yu, X.F. Ma, Characterization of magnetic soluble starch-functionalized carbon nanotubes and its application for the adsorption of the dyes. J. Hazard. Mater. 186 (2011) 2144–2150.
  • A. Tiraferri, K.L. Chen, R. Sethi, M. Elimelech, Reduced aggregation and sedimentation of zero-valent iron nanoparticles in the presence of guar gum. J. Colloid Interface Sci. 324 (2008) 71–79.
  • L. Guo, Q.J. Huang, X.Y. Li, S.H. Yang, PVP-coated iron nanocrystals: Anhydrous synthesis, characterization, and electrocatalysis for two species. Langmuir 22 (2006) 7867–7872.
  • H. Chen, H.J. Luo, Y.C. Lan, T.T. Dong, B.J. Hu, Y.P. Wang, Removal of tetracycline from aqueous solutions using polyvinylpyrrolidone (PVP-K30) modified nanoscale zero valent iron. J. Hazard. Mater. 192 (2011) 44–53.
  • J. Gotpagar, E. Grulke, T. Tsang, D. Bhattacharyya, Reductive dehalogenation of trichloroethylene using zero-valent iron. Environ. Prog. 16 (1997) 37–143.
  • C. Chen, X.Y. Wang, Y. Chang, H.L. Liu, Dechlorination of disinfection by-product monochloroacetic acid in drinking water by nanoscale palladized iron bimetallic particle. J. Environ. Sci. 20 (2008) 945–951.
  • Z. Xia, H.L. Liu, S. Wang, Z.H. Meng, N.Q. Ren, Preparation and dechlorination of a poly(vinylidene difluoride)-grafted acrylic acid film immobilized with Pd/Fe bimetallic nanoparticles for monochloroacetic acid. Chem. Eng. J. 200–202 (2012) 214–223.

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