4.8 Article

Insight into Highly Efficient Coremoval of Copper and p-Nitrophenol by a Newly Synthesized Polyamine Chelating Resin from Aqueous Media: Competition and Enhancement Effect upon Site Recognition

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 47, Issue 23, Pages 13652-13660

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/es4028875

Keywords

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Funding

  1. National Natural Science Foundation of P. R. China [51078178]
  2. Resources Key Subject of National High Technology Research & Development Project (863 Project) of P. R. China [2009AA06Z315, SQ2009AA06XK1482331]
  3. Discipline Crossing Foundation of Nanjing University

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Highly efficient coremoval of Cu(II) and p-nitrophenol (PNP) was accomplished using a newly synthesized polyamine chelating resin (CEAD) as compared to three other commercial resins. The mutual effects and inner mechanisms of their adsorption onto CEAD were systematically investigated by binary, preloading, thermodynamic, and dynamic adsorption procedures. PNP was adsorbed onto both hydrophobic and hydrophilic sites, while Cu(II) only interacted with hydrophilic amine group sites. In both preloading and binary systems, the adsorption of PNP was inhibited to the same degree by the presence of Cu(II) because of selective recognition and direct competition. On the other hand, the presence of PNP obviously enhanced the adsorption of Cu(II) by more than 7%, which was related to PNP loading on the hydrophobic surface. As proved by structural characterization, hydroxyl groups facing outward create new sites for coordination with Cu(II). Moreover, ionic strength exerted some positive influence on the properties of CEAD. Finally, more than 98% of PNP and 99% of Cu(II) could be sequentially recovered with dilute NaClO3 and Ha. These superior properties demonstrated with CEAD indicate that it could be applied to wastewaters containing both heavy metals and PNP, even for high saline aqueous media.

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