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Cempedak durian as a potential biosorbent for the removal of Brilliant Green dye from aqueous solution: equilibrium, thermodynamics and kinetics studies

机译:Cempedak durian作为潜在的生物吸附剂,用于从水溶液中去除亮绿色染料:平衡,热力学和动力学研究

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Cempedak durian peel (CDP) was used to remove Brilliant Green (BG) dye from aqueous solution. The adsorption of BG onto CDP was studied as functions of contact time, pH, temperature, ionic strength and initial concentration. In order to understand the adsorption process and its mechanisms, adsorption isotherm and kinetics models were used. The experiments were done under optimized 2-h contact time and ambient pH. Adsorption study showed that the Langmuir model best fitted with experimental data, and the maximum adsorption capacity was determined as 0.203 mmol g(-1) (97.995 mg g(-1)). Adsorption kinetics followed the pseudo 2nd order model, and intraparticle diffusion is involved but not as the rate-limiting step while Boyd model suggests that film diffusion might be in control of the adsorption process. Fourier transform infrared (FTIR) analysis showed that OH, C=O, C=C and NH functional groups might be involved in the adsorption of BG onto CDP. Thermodynamic study suggested that the adsorption of BG onto CDP is endothermic with.Ho value of 12 kJ mol(-1) and adsorption is feasible. Regeneration of CDP's ability to remove BG was also studied using three different washing solutions. NaOH (0.1 M) was not only sufficient to be used to regenerate CDP's ability to remove BG but also improved its adsorption capability.
机译:Cempedak榴莲果皮(CDP)用于从水溶液中去除艳绿(BG)染料。研究了BG在CDP上的吸附与接触时间,pH,温度,离子强度和初始浓度的关系。为了理解吸附过程及其机理,使用了吸附等温线和动力学模型。实验是在优化的2小时接触时间和环境pH下进行的。吸附研究表明,Langmuir模型最适合实验数据,最大吸附容量确定为0.203 mmol g(-1)(97.995 mg g(-1))。吸附动力学遵循伪二阶模型,并且涉及颗粒内扩散,但不作为速率限制步骤,而博伊德模型表明膜扩散可能控制了吸附过程。傅里叶变换红外光谱(FTIR)分析表明OH,C = O,C = C和NH官能团可能与BG在CDP上的吸附有关。热力学研究表明,BG在CDP上的吸附是吸热的。Ho值为12 kJ mol(-1),吸附是可行的。还使用三种不同的洗涤溶液研究了CDP去除BG的能力的再生。 NaOH(0.1 M)不仅足以再生CDP去除BG的能力,而且还提高了其吸附能力。

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