Zhang Wei-Ming, Chen Jin-Long, Pan Bing-Cai, Zhang Quan-Xing
State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210093, China.
J Environ Sci (China). 2005;17(4):529-34.
The adsorption behaviors of phenol and aniline on nonpolar macroreticular adsorbents (NDA100 and Amberlite XAD4) were investigated in single or binary batch system at 293K and 313K respectively in this study. The results indicated that the adsorption isotherms of phenol and aniline on both adsorbents in both systems fitted well Langmuir equation, which indicated a favourable and exothermic process. At the lower equilibrium concentrations, the individual amount adsorbed of phenol or aniline on macroreticular adsorbents in single-component systems was higher than those in binary-component systems because of the competition between phenol and aniline towards the adsorption sites. It is noteworthy, on the contrast, that at higher concentrations, the total uptake amounts of phenol and aniline in binary-component systems were obviously larger than that in single-component systems, and a large excess was noted on the adsorbent surface at saturation, which is presumably due to the cooperative effect primarily arisen from the hydrogen bonding or weak acid-base interaction between phenol and aniline.
本研究分别在293K和313K下,于单一组分或二元体系中,研究了苯酚和苯胺在非极性大孔吸附剂(NDA100和Amberlite XAD4)上的吸附行为。结果表明,在两种体系中,苯酚和苯胺在两种吸附剂上的吸附等温线均很好地符合朗缪尔方程,这表明该过程是有利的且为放热过程。在较低的平衡浓度下,由于苯酚和苯胺对吸附位点的竞争,在单一组分体系中,大孔吸附剂上苯酚或苯胺的单组分吸附量高于二元组分体系中的吸附量。相比之下,值得注意的是,在较高浓度下,二元组分体系中苯酚和苯胺的总吸附量明显大于单一组分体系中的总吸附量,且在饱和时吸附剂表面出现大量过剩,这可能主要是由于苯酚和苯胺之间的氢键或弱酸-碱相互作用产生的协同效应所致。