首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Isotherms, Kinetics and Thermodynamics of 4-Nitrophenol Adsorption on Fiber-Based Activated Carbon from Coconut Husks Prepared Under Optimized Conditions
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Isotherms, Kinetics and Thermodynamics of 4-Nitrophenol Adsorption on Fiber-Based Activated Carbon from Coconut Husks Prepared Under Optimized Conditions

机译:优化条件下椰子壳纤维基活性炭吸附4-硝基苯酚的等温线,动力学和热力学

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摘要

A study was carried out to investigate the adsorption of 4-nitrophenol on activated carbon fiber prepared from coconut husk. For comparison, a commercially available granular activated carbon was also tested. The effects of initial concentration, agitation time, solution pH and temperature were examined. Adsorption isotherms were described using the Langmuir and Freundlich models. li was found that, both models fit the experimental data. Pseudo-first-order model, pseudo-second-order model and intra-particle diffusion equations were applied to examine the kinetic data. It was noted that the empirical kinetic data of the prepared activated carbon fiber was well described by the pseudo-second-order model, whereas, the pseudo-first-order model agreed well with the experimental data for the commercial granular activated carbon. Intra-particle diffusion mechanism was partially involved in the case of the commercial adsorbent. It was observed that the prepared adsorbent has both the adsorption capacity and a rate of adsorption higher than that of the commercial one. Adsorption thermodynamic parameters were also estimated. Values of ΔH0 with ΔS° and ΔG° indicate that the adsorption of 4-nitrophenol onto both adsorbents are exothermic and spontaneous processes. The ΔH° values suggest that the adsorption is by chemisorption for the prepared activated carbon fiber and physisorption for the commercial granular activated carbon.
机译:进行了研究以研究4-硝基苯酚在椰子壳制备的活性炭纤维上的吸附。为了比较,还测试了市售的颗粒状活性炭。检查了初始浓度,搅拌时间,溶液pH和温度的影响。使用Langmuir和Freundlich模型描述了吸附等温线。李发现,两个模型都符合实验数据。使用伪一阶模型,伪二阶模型和粒子内扩散方程来检查动力学数据。注意到,所制备的活性炭纤维的经验动力学数据通过拟二阶模型很好地描述,而拟一阶模型与商业颗粒状活性炭的实验数据很好地吻合。在商业吸附剂的情况下,部分地涉及颗粒内扩散机制。观察到,所制备的吸附剂具有的吸附能力和吸附速率均比市售吸附剂高。还估算了吸附热力学参数。带有ΔS°和ΔG°的ΔH0值表明4-硝基苯酚在两种吸附剂上的吸附都是放热过程和自发过程。 ΔH°值表明,吸附是通过化学吸附制备的活性炭纤维,而物理吸附是商业颗粒状活性炭。

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