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A novel adsorbent based on functionalized three-dimensionally ordered macroporous cross-linked polystyrene for removal of salicylic acid from aqueous solution

机译:一种基于功能化三维有序大孔交联聚苯乙烯的新型吸附剂,用于从水溶液中去除水杨酸

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A novel polymeric adsorbent with three-dimensionally ordered macroporous (3DOM) structure was prepared. Pply(2-hydroxyethyl methacrylate) (PHEMA) was controllably grafted from the pore wall of 3DOM cross-linked polystyrene (3DOM CLPS-g-PHEMA) by surface-initiated atom-transfer radical polymerization (SI-ATRP) technique. Batch adsorption runs of salicylic acid from aqueous solution onto 3DOM CLPS-g-PHEMA were investigated as well as the relationship of the grafted amount with the adsorption capacity. When the grafted amount was 22.1%, the 3DOM CLPS-g-PHEMA exhibited the optimum adsorption capacity. Commercial macroporous resin XAD-4 was chosen as the comparison. Adsorption isotherm experimental results indicated that isotherms of salicylic acid adsorption onto 3DOM CLPS-g-PHEMA adsorbent could be represented by Langmuir and Freundlich models and the Freundlich model was shown to be the most suitable. The 3DOM CLPS-g-PHEMA exhibited a much higher adsorption capacity of salicylic acid than that of XAD-4, attributing to the special structure of 3DOM polymer and the grafted polymeric chains on the pore walls. The adsorption capacities increased with temperature increasing, and the isosteric enthalpy changes were calculated with a derivative Van't Hoff equation. Kinetics studies showed that the salicylic acid uptake onto 3DOM CLPS-g-PHEMA followed the pseudo-second order model. In addition, the spent 3DOM CLPS-g-PHEMA could be regenerated by extracted with ethanol, the regenerated 3DOM CLPS-g-PHEMA also exhibited the high adsorption capacity. We envision that the novel 3DOM polymeric adsorption will play a significant role in developing a new generation adsorbent.
机译:制备了具有三维有序大孔(3DOM)结构的新型聚合物吸附剂。通过表面引发的原子转移自由基聚合(SI-ATRP)技术,从3DOM交联聚苯乙烯(3DOM CLPS-g-PHEMA)的孔壁中可控制地接枝了Pply(甲基丙烯酸2-羟乙酯)(PHEMA)。研究了水杨酸在水溶液中对3DOM CLPS-g-PHEMA的批量吸附过程,以及接枝量与吸附量之间的关系。当接枝量为22.1%时,3DOM CLPS-g-PHEMA表现出最佳的吸附容量。选择市售大孔树脂XAD-4作为比较。吸附等温线实验结果表明,水杨酸在3DOM CLPS-g-PHEMA吸附剂上的吸附等温线可以用Langmuir和Freundlich模型来表示,而Freundlich模型是最合适的。 3DOM CLPS-g-PHEMA的水杨酸吸附能力比XAD-4高,这归因于3DOM聚合物的特殊结构和孔壁上的接枝聚合物链。吸附容量随温度的升高而增加,并利用导数Van't Hoff方程计算了等构焓的变化。动力学研究表明,水杨酸对3DOM CLPS-g-PHEMA的吸收遵循伪二级模型。另外,用乙醇萃取可以再生用过的3DOM CLPS-g-PHEMA,再生的3DOM CLPS-g-PHEMA也具有较高的吸附能力。我们设想,新型3DOM聚合物吸附将在开发新一代吸附剂中发挥重要作用。

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