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首页> 外文期刊>Journal of Materials Science >Thermodynamics of dye adsorption on electrochemically exfoliated graphene
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Thermodynamics of dye adsorption on electrochemically exfoliated graphene

机译:染料在电化学剥离石墨烯上的吸附热力学

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Graphene sheets prepared by electrochemical exfoliation have been used for the adsorption of methylene blue (MB), a cationic dye from aqueous solution. The maximum adsorbed amount of MB on exfoliated graphene (EG) reaches 511.7 mg g(-1) when the initial concentration of MB is 500 mg L-1, with EG whose dosage is 10 mg. Further study on the adsorption mechanism of EG includes isothermal adsorption equilibrium, thermodynamics, and kinetics. The study on isothermal adsorption equilibrium shows that the adsorption follows the Langmuir isotherm. Various thermodynamic parameters such as Gibbs free energy (Delta G(0)), enthalpy (Delta H-0), and entropy (Delta S-0) change were also evaluated. It indicates that the adsorption is a spontaneous, endothermic, and physical adsorption process. The kinetic data reveals that the adsorption process of MB fits well with the pseudo second-order model. The Weber's intra-particle diffusion model demonstrates that the adsorption rate is controlled by both external diffusion and intra-particle diffusion. EG as a cationic dye scavenger displays high speed and efficiency.
机译:通过电化学剥离制备的石墨烯片材已用于从水溶液中吸附亚甲基蓝(MB),一种阳离子染料。当MB的初始浓度为500 mg L-1且剂量为10 mg的EG时,MB在脱落的石墨烯(EG)上的最大吸附量达到511.7 mg g(-1)。 EG吸附机理的进一步研究包括等温吸附平衡,热力学和动力学。等温吸附平衡研究表明,吸附遵循朗缪尔等温线。还评估了各种热力学参数,例如吉布斯自由能(Delta G(0)),焓(Delta H-0)和熵(Delta S-0)变化。这表明吸附是自发的,吸热的和物理的吸附过程。动力学数据表明,MB的吸附过程非常适合拟二阶模型。 Weber的粒子内扩散模型表明,吸附速率受外部扩散和粒子内扩散控制。 EG作为阳离子染料清除剂具有很高的速度和效率。

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