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Adsorption behavior of condensed phosphate on aluminum hydroxide
Authors:GUAN Xiao-hong  LI Ding-long  CHEN Guang-hao  SHANG Chii
Affiliation:1. School of Municipal and Environmental Engineering,Harbin Institute of Technology,Harbin 150090,China
2. Department of Civil Engineering,Hong Kong University of Science and Technology,Hong Kong,China
Abstract:Sodium pyrophosphate(pyro-P,Na4P207),sodium tripolyphosphate(tripoly-P,NasP3010),and sodium hexametaphosphate(metaP,(NaP03)6)were selected as the model compounds of condensed phosphate to investigate the adsorption behavior of condensed phosphate on aluminum hydroxide.The adsorption was found to be endothermic and divisible into two stages:(1)fast adsorption within 1 h:and(2)slow adsorption between 1 and 24 h.The modified Freundlich model simulated the fast adsorption stage well;the slow adsorption stage was described well by the first-order kinetics.The activation energies of pyro-P,tripoly-P,and meta-P adsorption on aluminum hydroxide were determined to be 20.2,22.8 and 10.9 kJ/mol P adsorbed,respectively,in the fast adsorption stage and to be 66.3.53.5 and 72.5 kJ/tool P adsorbed,respectively,in the slow adsorption stage.The adsorption increased the negative charge of the aluminum hydroxide surface.Transmission electron microscopy and energy dispersive X-ray analysis analyses provided evidence that the adsorption was not uniform on the surface and that the small crystals contfibuted more to the fast adsorption than the normal sites did.The results from X-ray fluorescence spectrometry and X-ray photoelectron spectroscopy tests also revealed the uneven adsorption of condensed phosphate as a function of the penetration depth.More condensed phosphates were adsorbed on the outer surface of aluminum hydroxide than in its inner parts.
Keywords:activation energy  aluminum hydroxide  condensed phosphate  eutrophication  surface charge  aluminum hydroxide  phosphate  condensed  behavior  inner  results  fluorescence spectrometry  photoelectron  spectroscopy  uneven  function  penetration depth  Transmission  electron microscopy  energy  analysis  analyses  provided  evidence  small
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