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  4. p-Nitrophenol, phenol and aniline sorption by organo-clays
 
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p-Nitrophenol, phenol and aniline sorption by organo-clays

Journal
Journal of Hazardous Materials
Journal Volume
149
Journal Issue
2
Start Page
275
End Page
282
Date Issued
2007-10-22
Author(s)
Chun Han Ko  
Chihhao Fan  
Po Neng Chiang  
Ming Kuang Wang
Kuo Chuan Lin
DOI
10.1016/j.jhazmat.2007.03.075
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-34548837221&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/724404
Abstract
The aims of this study were to make use of organo-clays (i.e., Cloisite-10A, Cloisite-15A, Cloisite-30B and Cloisite-93A), to remove p-nitrophenol, phenol and aniline of organic pollutants. The organo-clays were characterized by X-ray diffraction (XRD). Sorption isotherm, kinetic and pH effect of p-nitrophenol, phenol and aniline sorbed by four organo-clays were evaluated. The d-spacings (0 0 1) of the XRD peak of Cloisite-10A, Cloisite-15A, Cloisite-30B and Cloisite-93A are 1.98, 2.76, 1.93 and 2.64 nm, respectively. The d(0 0 1)-spacings of XRD indicated that these p-nitropheno, phenol and aniline could penetrate into the interlayer of clays and expand the d(0 0 1)-spacings. The linear sorption isotherm of constant partition was employed to describe the sorption isotherms of phenols sorbed by organo-clays through hydrophobic-hydrophobic chemical reactions. The parabolic diffusion and power-function of kinetic models were employed to describe properly the kinetic experiments. The rate limiting step of the p-nitrophenol sorption reactions on organo-clays were diffusion-controlled processes (i.e., 15A, 30B, 93A) and chemical-controlled process for 10A organo-clays. The pre-exponential factor of the p-nitrophenol sorbed by four organo-clays showed the trend as follows: 10A > 30B > 93A > 15A. The efficiency of these organo-clays in removing phenol compounds in water treatments merit further study.
Subjects
Aniline
Arrhenius equation
Kinetic models
Organo-clays
p-Nitrophenol
Phenol
Sorption isotherms
Type
journal article

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