Shuang Chendong, Wang Jun, Li Haibo, Li Aimin, Zhou Qing
State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210023, PR China.
State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210023, PR China.
J Colloid Interface Sci. 2015 Jan 1;437:163-169. doi: 10.1016/j.jcis.2014.09.011. Epub 2014 Sep 16.
Polystyrenic (PS) anion-exchange resin and polyacrylic (PA) anion-exchange resin were used to investigate the effect of resin chemical structure on the adsorption of humic acid (HA). Due to the rearrangement of HA to form layers that function as barricades to further HA diffusion, PS resin exhibited 12.4 times slower kinetics for the initial adsorption rate and 8.4 times for the diffusion constant in comparison to that of the PA resin. An HA layer and a spherical cluster of HA can be observed on the surface of the PS and PA resins after adsorption, respectively. The considerable difference in HA adsorption between the PS and PA resins was due to the difference in molecule shape for interaction with different resin structures, which can essentially be explained by the hydrophobicity and various interactions of the PS resin. A given amount of HA occupies more positively charged sites and hydrophobic sites on the PS resin than were occupied by the same amount of HA on the PA resin. Increased pH resulted in an increase of HA adsorption onto the PA resin but a decrease in adsorption onto PS resin, as the non-electrostatic adsorption led to electrostatic repulsion between the HA attached to the resin and the HA dissolved in solution. These results suggest higher rates of adsorption and higher regeneration efficiency for interaction of HA with more hydrophilic anion exchange materials.
采用聚苯乙烯(PS)阴离子交换树脂和聚丙烯酸(PA)阴离子交换树脂研究树脂化学结构对腐殖酸(HA)吸附的影响。由于HA重排形成了阻碍HA进一步扩散的层,与PA树脂相比,PS树脂的初始吸附速率动力学慢12.4倍,扩散常数慢8.4倍。吸附后,分别在PS和PA树脂表面观察到HA层和HA球形聚集体。PS和PA树脂对HA吸附的显著差异是由于与不同树脂结构相互作用的分子形状不同,这本质上可以用PS树脂的疏水性和各种相互作用来解释。一定量的HA在PS树脂上占据的带正电位点和疏水位点比相同量的HA在PA树脂上占据的更多。pH升高导致HA在PA树脂上的吸附增加,但在PS树脂上的吸附减少,因为非静电吸附导致附着在树脂上的HA与溶解在溶液中的HA之间产生静电排斥。这些结果表明,HA与更亲水的阴离子交换材料相互作用时具有更高的吸附速率和更高的再生效率。