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Preparation of Chitosan/Polyacrylamide/Graphene Oxide Composite Membranes and Study of Their Methylene Blue Adsorption Properties

机译:壳聚糖/聚丙烯酰胺/石墨烯氧化物复合膜的制备及其亚甲基蓝吸附性能研究

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摘要

This thesis reports the preparation of chitosan/polyacrylamide/graphene oxide nanocomposites (CAGs) and a study of its adsorption properties of methylene blue (MB) solution. Initially, we synthesized CAGs by blending and freeze-drying methods. Then, we conducted a series experiments by removing MB from aqueous solution to test its adsorption properties and adsorption mechanism. We used UV-Vis spectrophotometry to determine the concentration of residual methylene blue accurately and efficiently, which has a specific absorption peak at 662 nm in the UV-Vis spectrum, in aqueous solution. When the graphene oxide content in the composite was 20 wt%, the adsorption capacity reached maximum values. The chemical properties and surface structure of the nanomaterials were analyzed using FT-IR, TGA, SEM, and BET. Also, we carried out experiments to measure the adsorption properties of the CAGs by varying several factors, such as initial concentration, adsorption time, and pH, etc. The outcomes revealed that the adsorption equilibrium was developed after 2800 min at 20 °C (room temperature) with an adsorbent dosage of 0.01 g mL−1. The ion adsorption equilibrium data were well-fitted by the Langmuir isotherm with a maximum monolayer capacity of 510.2 mg/g. Kinetic researches disclosed that the adsorption procedure was defined by a pseudo-second-order model. Thermodynamic researches revealed that the enthalpy change (ΔH0) as well as Gibbs free energy change (ΔG0) of the adsorption procedure was negative, indicating that the adsorption procedure was spontaneous and exothermic. After three cycles, the removal efficiency was still 90.18%. Therefore, in conclusion, we believe that the CAGs is a good adsorption material for organic dyes due to its good adsorption and recyclable properties.
机译:本文报道了壳聚糖/聚丙烯酰胺/石墨烯氧化物纳米复合材料(CAG)的制备及其吸附性能的亚甲基蓝(MB)溶液的研究。最初,我们通过混合和冷冻干燥方法合成CAG。然后,我们通过从水溶液中除去Mb来进行串联实验以测试其吸附性能和吸附机制。我们使用UV-Vis分光光度法精确且有效地测定残留亚甲基蓝色的浓度,其在水溶液中在UV-Vis光谱中具有662nm的特定吸收峰。当复合材料中的石墨烯含量为20wt%时,吸附能力达到最大值。使用FT-IR,TGA,SEM和BET分析纳米材料的化学性质和表面结构。此外,我们通过改变若干因素,例如初始浓度,吸附时间和pH等来进行实验来测量CAG的吸附性能。结果表明,在20°C时2800分钟后开发吸附平衡(房间温度)吸附剂剂量为0.01g ml-1。离子吸附平衡数据由Langmuir等温线充分拟合,最大单层容量为510.2mg / g。公开了动力学研究,吸附过程由伪二阶模型定义。热力学研究表明,焓变(ΔH0)以及GIBBS自由能量变化(ΔG0)吸附过程为阴性,表明吸附程序是自发性和放热的。三个循环后,去除效率仍为90.18%。因此,总之,我们认为,由于其良好的吸附和可回收性能,CAG是有机染料的良好吸附材料。

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