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Adsorption of Azo Dye Methyl Orange from Aqueous Solutions Using Alkali-Activated Polypyrrole-Based Graphene Oxide

机译:碱活化的聚吡咯基氧化石墨烯从水溶液中吸附偶氮染料甲基橙

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摘要

The adsorption of methyl orange (MO) from aqueous solutions onto a KOH-activated polypyrrole-based adsorbent (PACK) was investigated using batch and fixed-bed column techniques. The structural, thermal, and morphological properties of the PACK, analyzed by various methods, support its applicability as an adsorbent. An adsorption kinetic study revealed a preferably pseudo-second-order ( = 0.9996) and rate-limiting step controlled by both film and intra-particle diffusions. The thermodynamic adsorption tests resulted in negative ΔG°, ΔH°, and ΔS° values, which decreased as the temperature and concentration increased, indicating the spontaneous and exothermic adsorption over 25–45 °C. The adsorption isotherms fit the experimental data in the order of Langmuir ≈ Freundlich > Temkin, with evidence of adsorption operating well via the monolayer physical adsorption process, and maximum monolayer adsorption ranging from 520.8 to 497.5 mg/g. The breakthrough curve of the fixed-bed column experiment was modeled using the Thomas, Yoon–Nelson, and Hill models, resulting in an equilibrium capacity of 57.21 mg/g. A 73% MO recovery was achieved, indicating the possibility of column regeneration. Compared to other adsorbents reported, PACK had comparable or even superior capacity toward MO. For cost-effectiveness, similar nitrogen-containing polymeric wastes could be exploited to obtain such excellent materials for various applications.
机译:使用分批和固定床色谱柱技术研究了甲基橙(MO)从水溶液到KOH活化的聚吡咯基吸附剂(PACK)的吸附。通过各种方法分析,PACK的结构,热学和形态学特性支持其作为吸附剂的适用性。吸附动力学研究表明,最好由膜扩散和颗粒内扩散控制伪二级(= 0.9996)和限速步骤。热力学吸附测试得出负ΔG°,ΔH°和ΔS°值,它们随温度和浓度的增加而降低,表明在25-45°C范围内自发和放热吸附。吸附等温线按Langmuir≈Freundlich> Temkin的顺序拟合实验数据,并通过单层物理吸附过程证明吸附效果良好,最大单层吸附范围为520.8至497.5 mg / g。使用Thomas,Yoon–Nelson和Hill模型对固定床色谱柱的穿透曲线进行建模,得出的平衡容量为57.21 mg / g。达到了73%的MO回收率,表明有可能进行色谱柱再生。与报道的其他吸附剂相比,PACK具有相当甚至更高的MO吸附能力。为了节省成本,可以利用类似的含氮聚合物废物来获得用于各种应用的优异材料。

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