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氧化锌/杏仁壳活性炭复合材料对吖啶橙的吸附:使用中心复合设计和表面建模优化操作因素、机制和性能。

Acridine orange adsorption by zinc oxide/almond shell activated carbon composite: Operational factors, mechanism and performance optimization using central composite design and surface modeling.

机构信息

Laboratoire de catalyse et corrosion des matériaux, Université Chouaib Doukkali, Faculté des Sciences El Jadida, BP. 20, El Jadida 24000, Morocco.

Laboratoire Matériaux et Environnement LME, Faculté des Sciences, Université Ibn Zohr, BP 8106, Cité Dakhla, Agadir, Morocco.

出版信息

J Environ Manage. 2018 Jan 15;206:383-397. doi: 10.1016/j.jenvman.2017.10.058. Epub 2017 Nov 2.

Abstract

Zinc Oxide/Activated Carbon Powder was used for the adsorptive removal of Acridine Orange dye (AO) from aqueous solution. The prepared composite material was characterized using XRD, XPS, SEM, EDS, FTIR, XRF, Raman, BET surface area and TGA/DTA. The adsorption isotherms, kinetics and thermodynamic studies of AO onto the ZnO-AC were thoroughly analyzed. The kinetic modeling data revealed that the adsorption of AO has a good adjustment to the pseudo-second-order model. Langmuir isotherm model is better fitted for adsorption data and the maximum adsorption capacity was found to be 909.1 mg/g at 313 K. The negative values of ΔG showed the spontaneous nature of the AO adsorption onto ZnO-AC. The results indicated the adsorption was pH dependent which is mainly governed by electrostatic attraction, hydrogen bonding and π-π interaction. Reusability test showed a low decrease in the removal performance of ZnO-AC due to the mesopore filling mechanism confirmed by BET analysis after adsorption. Also, thermal regeneration could deposit AO dye on the surface of the composite leading to the efficiency decrease. Finally, the effect of various parameters such as pH, temperature, contact time and initial dye concentration was studied using response surface methodology (RSM). The model predicted a maximum AO removal (99.42 ± 0.57%) under the optimum conditions, which was very close to the experimental value (99.32 ± 0.18%).

摘要

氧化锌/活性炭粉末用于从水溶液中吸附去除吖啶橙染料 (AO)。使用 XRD、XPS、SEM、EDS、FTIR、XRF、拉曼、BET 表面积和 TGA/DTA 对制备的复合材料进行了表征。深入分析了 AO 在 ZnO-AC 上的吸附等温线、动力学和热力学研究。动力学模型数据表明,AO 的吸附很好地符合准二级模型。Langmuir 等温线模型更适合吸附数据,在 313 K 时最大吸附容量为 909.1 mg/g。ΔG 的负值表明 AO 吸附到 ZnO-AC 上是自发的。结果表明,吸附是 pH 依赖性的,主要受静电吸引、氢键和π-π相互作用控制。重复使用测试表明,由于 BET 分析确认吸附后介孔填充机制,ZnO-AC 的去除性能下降幅度较小。此外,热再生可能会导致 AO 染料沉积在复合材料表面,从而导致效率下降。最后,使用响应面法 (RSM) 研究了各种参数(如 pH、温度、接触时间和初始染料浓度)的影响。该模型预测在最佳条件下 AO 的最大去除率(99.42 ± 0.57%)非常接近实验值(99.32 ± 0.18%)。

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